Malaysia Airlines Flight 370 [Part 1/5]
Malaysia Airlines Flight 370
Source: https://en.wikipedia.org/wiki/Malaysia_Airlines_Flight_370
The crew of the Boeing 777-200ER, registered as 9M-MRO, last communicated with air traffic control (ATC) around 38 minutes after takeoff when the flight was over the South China Sea. The aircraft was lost from ATC's secondary surveillance radar screens minutes later, but was tracked by the Malaysian military's primary radar system for another hour, deviating westward from its planned flight path. It left radar range 200 nautical miles (370 km; 230 mi) west-northwest of Penang Island in northwestern Peninsular Malaysia.
With all 227 passengers and 12 crew aboard presumed dead, the disappearance of Flight 370 was the deadliest incident involving a Boeing 777, the deadliest of 2014, and the deadliest in Malaysia Airlines' history until it was surpassed in all three regards by Malaysia Airlines Flight 17 on 17 July 2014. Relying mostly on the analysis of data from the Inmarsat satellite with which the aircraft last communicated, the Australian Transport Safety Bureau (ATSB) initially proposed that a hypoxia event was the most likely cause given the available evidence, although no consensus has been reached among investigators concerning this theory. At various stages of the investigation, possible hijacking scenarios were considered, including crew involvement, and suspicion of the aircraft's cargo manifest; many disappearance theories regarding the flight have also been reported by the media.
The search for the missing aircraft became the most expensive search in the history of aviation. It focused initially on the South China Sea and Andaman Sea, before a novel analysis of the aircraft's automated communications with an Inmarsat satellite indicated that the aircraft had travelled far southward over the southern Indian Ocean. Several pieces of debris washed ashore in the western Indian Ocean during 2015 and 2016; many of these were confirmed to have originated from Flight 370. After a three-year search across 120,000 km2 (46,000 sq mi) of ocean failed to locate the aircraft, the Joint Agency Coordination Centre heading the operation suspended its activities in January 2017. A second search launched in January 2018 by private contractor Ocean Infinity also ended without success after six months. The Malaysian Ministry of Transport's final report from July 2018 was inconclusive. It highlighted Malaysian ATC's fruitless attempts to communicate with the aircraft shortly after its disappearance.
In the absence of a definitive cause of disappearance, air transport industry safety recommendations and regulations citing Flight 370 have been implemented to prevent a repetition of the circumstances associated with the loss. These include increased battery life on underwater locator beacons, lengthening of recording times on flight data recorders and cockpit voice recorders, and new standards for aircraft position reporting over open ocean.
Map showing the scheduled flightpath and the surrounding region
Flight 370 last made voice contact with ATC at 01:19 MYT, 8 March (17:19 UTC, 7 March) when it was over the South China Sea, less than an hour after takeoff. It disappeared from ATC radar screens at 01:22 MYT, but was still tracked on military radar as it turned sharply away from its original northeastern course to head west and cross the Malay Peninsula, continuing that course until leaving the range of the military radar at 02:22 while over the Andaman Sea, 200 nautical miles (370 km; 230 mi) northwest of Penang Island, in northwestern Malaysia.[5][6]
The multinational search effort for the aircraft, which was to become the most expensive aviation search in history,[7][8][9] began in the Gulf of Thailand and the South China Sea,[10] where the aircraft's signal was last detected on secondary surveillance radar, and was soon extended to the Strait of Malacca and Andaman Sea. Analysis of satellite communications between the aircraft and Inmarsat's satellite communications network concluded that the flight continued until at least 08:19 (nearly an hour after Malaysia Airlines publicly announced the aircraft's loss) and flew south into the southern Indian Ocean, although the precise location cannot be determined. Australia assumed charge of the search on 17 March, when the search effort began to emphasise the southern Indian Ocean. On 24 March, the Malaysian government noted that the final location determined by the satellite communication was far from any possible landing sites, and concluded, "Flight MH370 ended in the southern Indian Ocean."[11]
From October 2016 to January 2017, a comprehensive survey of 120,000 km2 (46,000 mi2) of sea floor about 1,800 km (1,100 mi; 970 nmi) southwest of Perth, Western Australia, yielded no evidence of the aircraft. Several pieces of marine debris found on the coast of Africa and on Indian Ocean islands off the coast of Africa—the first of which was discovered on 29 July 2015 on Réunion—have been confirmed as pieces of Flight 370.[12][13][14][15] The bulk of the aircraft has not been located, prompting many theories about its disappearance.
In January 2018, a search by private US marine exploration company Ocean Infinity began in the search zone around 35°36′S 92°48′E / 35.6°S 92.8°E, the most likely crash site according to the drift study published in 2017.[16][17][18] In a previous search attempt, Malaysia had established a Joint Investigation Team (JIT) to investigate the incident, working with foreign aviation authorities and experts. Malaysia released a final report concerning Flight 370 on 17 October 2017.[19] Neither the crew nor the aircraft's communication systems relayed a distress signal, indications of bad weather, or technical problems before the aircraft vanished.[20]
Two Iranian passengers travelling on stolen passports were investigated but eliminated as suspects. Malaysian police identified the captain as the prime suspect if human intervention was the cause of the disappearance, after clearing all others on the flight of suspicion over possible motives. Power was lost to the aircraft's satellite data unit (SDU) at some point between 01:07 and 02:03; the SDU logged onto Inmarsat's satellite communication network at 02:25, which was three minutes after the aircraft had left the range of radar. Based on analysis of the satellite communications, the aircraft was postulated to have turned south after passing north of Sumatra and then to have flown for six hours with little deviation in its track, ending when its fuel was exhausted.[21]
With the loss of all 239 lives on board, Flight 370 is the second-deadliest incident involving a Boeing 777 and the second-deadliest incident of Malaysia Airlines' history, second to Flight 17 in both categories. Malaysia Airlines was struggling financially, a problem that was exacerbated by a decrease of ticket sales after the disappearance of Flight 370 and the downing of Flight 17; the airline was renationalised by the end of 2014. The Malaysian government received significant criticism, especially from China, for failing to disclose information promptly during the early weeks of the search. Flight 370's disappearance brought to public attention the limits of aircraft tracking and flight recorders, including the limited battery life of underwater locator beacons (an issue that had been raised about four years earlier following the loss of Air France Flight 447 but had never been resolved). In response to Flight 370's disappearance, the International Civil Aviation Organization adopted new standards for aircraft position reporting over open ocean, extended recording time for cockpit voice recorders, and, starting from 2020, new aircraft designs have been required to have a means of recovering the flight recorders, or the information they contain, before they sink into the water.[22]
CockpitEconomy class seats
Flight 370 was operated with a Boeing 777-2H6ER,[c] serial number 28420, registered as 9M-MRO. The aircraft was delivered new to Malaysia Airlines on 31 May 2002.[24]: 39 The aircraft was powered by two Rolls-Royce Trent 892 engines and configured to carry 282 passengers in total capacity.[25][24]: 39 It had accumulated 53,471.6 hours and 7,526 cycles (takeoffs and landings) in service[26]: 22 and had not previously been involved in any major incidents,[27] though a minor incident while taxiing at Shanghai Pudong International Airport in August 2012 resulted in a broken wing tip.[28][29] Its last maintenance "A check" was carried out on 23 February 2014.[30] The aircraft was in compliance with all applicable Airworthiness Directives for the airframe and engines. A replenishment of the crew member oxygen system was performed on 7 March 2014, a routine maintenance task; an examination of this procedure found nothing unusual.[26]: 27 Ten years after MH370's disappearance, however, leaked documents have shown that MH370 was given supplemental fuel and crew member oxygen supplies just before takeoff.[31]
The Boeing 777 was introduced in 1994 and has an excellent safety record.[32][33] Since its first commercial flight in June 1995, the type has suffered only six other hull losses:
the crash of British Airways Flight 38 in 2008;
a cockpit fire in a parked EgyptAir Flight 667 at Cairo International Airport in 2011;[34][35]
the crash of Asiana Airlines Flight 214 in 2013, in which three people died;
Malaysia Airlines Flight 17, which was shot down over Ukraine, killing all 298 people aboard in July 2014;[36][37]
Emirates Flight 521, which crashed and burned out while landing at Dubai International Airport in August 2016 killing one person;[38]
and in November 2017, the seventh Boeing 777 hull loss occurred when a Singapore Airlines 777-200ER was written off after catching fire and burning out at Singapore Changi Airport.[39]
Passengers and crew[edit]
The aircraft was carrying 12 Malaysian crew members and 227 passengers from 14 different nations.[44] On the day of the disappearance, Malaysia Airlines released the names and nationalities of the passengers and crew, based on the flight manifest.[40] The passenger list was later modified to include two Iranian passengers travelling on stolen passports.[43]
All 12 crew members—two pilots and 10 cabin crew—were Malaysian citizens.[40]
The pilot in command was 52-year-old Captain Zaharie Ahmad Shah from Penang.[45] He joined Malaysia Airlines as a cadet pilot in 1981, and after training and receiving his commercial pilot's license, he became a second officer with the airline in 1983. He was promoted to captain of the Boeing 737-400 in 1991, captain of the Airbus A330-300 in 1996, and captain of the Boeing 777-200 in 1998. He had been a type-rating instructor and a type-rating examiner since 2007. Zaharie had a total of 18,365 hours of flying experience.[26]: 13 [46][47]
The co-pilot was 26-year-old First Officer Fariq Abdul Hamid. He joined Malaysia Airlines as a cadet pilot in 2007; after becoming a second officer of the Boeing 737–400, he was promoted to first officer of the Boeing 737–400 in 2010 and then transitioned to the Airbus A330-300 in 2012. In November 2013, he began training as first officer of the Boeing 777–200 aircraft. Flight 370 was his final training flight, and he was scheduled to be examined on his next flight. Fariq had accumulated 2,763 hours of flying experience.[26]: 14 [48][49]
Of the 227 passengers, 153 were Chinese citizens,[44] including a group of 19 artists with six family members and four staff returning from a calligraphy exhibition of their work in Kuala Lumpur; 38 passengers were Malaysian. The remaining passengers were from 12 different countries.[40][50] Twenty passengers, 12 of whom were from Malaysia and eight from China, were employees of Freescale Semiconductor.[50][51][52]
Based on a 2007 agreement with Malaysia Airlines, Tzu Chi (an international Buddhist organisation) immediately sent specially trained teams to Beijing and Malaysia following the disappearance of MH370 in 2014 to give emotional assistance to passengers' families.[53][54] The airline also sent its own team of caregivers and volunteers[55] and agreed to bear the expense of bringing family members of the passengers to Kuala Lumpur and providing them with accommodation, medical care, and counselling.[56] Altogether, 115 family members of the Chinese passengers flew to Kuala Lumpur.[57] Some other family members chose to remain in China, fearing they would feel too isolated in Malaysia.[58]
Flight and disappearance[edit]
Known flight path taken by Flight 370 (red), derived from primary (military) and secondary (ATC) radar data
Flight 370 was a scheduled flight in the early morning of Saturday, 8 March 2014, from Kuala Lumpur, Malaysia, to Beijing, China. It was one of two daily flights operated by Malaysia Airlines from its hub at Kuala Lumpur International Airport to Beijing Capital International Airport—scheduled to depart at 00:35 local time (MYT; UTC+08:00) and arrive at 06:30 local time (CST; UTC+08:00).[59][60] On board were two pilots, 10 cabin crew, 227 passengers, and 14,296 kg (31,517 lb) of cargo.[26]: 1, 12, 30
The planned flight duration was 5 hours and 34 minutes, which would consume an estimated 37,200 kg (82,000 lb) of jet fuel. The aircraft carried 49,100 kilograms (108,200 lb) of fuel, including reserves, allowing an endurance of 7 hours and 31 minutes. The extra fuel was enough to divert to alternate airports—Jinan Yaoqiang International Airport and Hangzhou Xiaoshan International Airport—which would require 4,800 kg (10,600 lb) or 10,700 kg (23,600 lb), respectively, to reach from Beijing.[26]: 1, 30
At 00:42 MYT, Flight 370 took off from runway 32R,[26]: 1 and was cleared by air traffic control (ATC) to climb to flight level 180[g]—approximately 18,000 feet (5,500 m)—on a direct path to navigational waypoint IGARI (located at 6°56′12″N 103°35′6″E / 6.93667°N 103.58500°E). Voice analysis has determined that the first officer communicated with ATC while the flight was on the ground and that the Captain communicated with ATC after departure.[26]: 21 Shortly after departure, the flight was transferred from the airport's ATC to Lumpur Radar on frequency 132.6 MHz. ATC over peninsular Malaysia and adjacent waters is provided by the Kuala Lumpur Area Control Centre (ACC); Lumpur Radar is the name of the frequency used for en route air traffic.[61] At 00:46, Lumpur Radar cleared Flight 370 to flight level 350[g]—approximately 35,000 ft (10,700 m). At 01:01, Flight 370's crew reported to Lumpur Radar that they had reached flight level 350, which they confirmed again at 01:08.[26]: 1–2 [62]
External videos ATC conversations with Flight 370 Audio recordings of conversations between ATC and Flight 370 from pre-departure to final contact (00:25–01:19).
The aircraft's final transmission before its disappearance from radar was an automated position report, sent using the Aircraft Communications Addressing and Reporting System (ACARS) protocol at 01:06 MYT.[63]: 2 [64][65]: 36 Among the data provided in this message was the total fuel remaining: 43,800 kg (96,600 lb).[66]: 9 The last verbal signal to air traffic control occurred at 01:19:30, when Captain Zaharie acknowledged a transition from Lumpur Radar to Ho Chi Minh ACC:[h][26]: 2, 21 [62][67]
Lumpur Radar: "Malaysian three seven zero, contact Ho Chi Minh one two zero decimal nine. Good night."
Flight 370: "Good night. Malaysian three seven zero."
The crew was expected to check in with Ho Chi Minh Area Control Centre as the aircraft entered Vietnamese airspace, shortly after the loss of radar and radio contact.[68][69] Vietnamese controllers asked nearby aircraft to attempt to reach Flight 370 on the international air distress frequency. Still, none were able to establish confirmed communication. A report published in the early days of the search quoted one pilot describing faint “mumbling” and static, but this account was never verified and does not appear in the official investigation record.[70] Calls made to the cockpit at 02:39 and 07:13 went unanswered, though the aircraft's satellite data unit acknowledged them.[63]
Data from the Malaysian military's primary radar show Flight 370 (green) crossing the Strait of Malacca and Andaman Sea to where it was last detected by radar. The left of the two segments of the flight track follows air route N571 between waypoints VAMPI and MEKAR; the white circle appears to highlight a section where the aircraft was not tracked by radar.
At 01:20:31 MYT, Flight 370 was observed on radar at the Kuala Lumpur ACC as it passed the navigational waypoint IGARI (6°56′12″N 103°35′6″E / 6.93667°N 103.58500°E) in the Gulf of Thailand; five seconds later, the Mode-S symbol disappeared from radar screens.[26]: 2 At 01:21:13, Flight 370 disappeared from the radar screen at Kuala Lumpur ACC and was lost at about the same time on radar at Ho Chi Minh ACC, which reported that the aircraft was at the nearby waypoint BITOD.[26]: 2 [62] Air traffic control uses secondary radar, which relies on a signal emitted by a transponder on each aircraft; therefore, the ADS-B transponder was no longer functioning on Flight 370 after 01:21. The final transponder data indicated that the aircraft was flying at its assigned cruise altitude of flight level 350[g] and was travelling at 471 knots (872 km/h; 542 mph) true airspeed.[71] There were few clouds around this point, and there was no rain or lightning nearby.[26]: 33–36 Later analysis estimated that Flight 370 had 41,500 kg (91,500 lb) of fuel when it disappeared from secondary radar.[26]: 30
At the time that the transponder stopped functioning, the Malaysian military's primary radar showed Flight 370 turning right, but then beginning a left turn to a southwesterly direction.[26]: 3 From 01:30:35 until 01:35, military radar showed Flight 370 at 35,700 ft (10,900 m)[i] on a 231° magnetic heading, with a ground speed of 496 knots (919 km/h; 571 mph). Flight 370 continued across the Malay Peninsula, fluctuating between 31,000 and 33,000 ft (9,400 and 10,100 m) in altitude.[26]: 3 A civilian primary radar at Sultan Ismail Petra Airport with a 60 nmi (110 km; 69 mi) range made four detections of an unidentified aircraft between 01:30:37 and 01:52:35; the tracks of the unidentified aircraft are "consistent with those of the military data".[j][26]: 3–4 At 01:52, Flight 370 was detected passing just south of the island of Penang. From there, the aircraft flew across the Strait of Malacca, passing close to the waypoint VAMPI, and Pulau Perak at 02:03, after which it flew along air route N571 to waypoints MEKAR, NILAM, and possibly IGOGU.[63]: 3, 38 The last known radar detection, from a point near the limits of Malaysian military radar, was at 02:22, 10 nmi (19 km; 12 mi) after passing waypoint MEKAR[26]: 3, 7 (which is 237 nmi (439 km; 273 mi) from Penang) and 247.3 nmi (458.0 km; 284.6 mi) northwest of Penang airport at an altitude of 29,500 ft (9,000 m).[72][73]
Countries were reluctant to release information collected from military radar because of sensitivity about revealing their capabilities. Indonesia has an early-warning radar system, but its ATC radar did not register any aircraft with the transponder code used by Flight 370, despite the aircraft possibly having flown near, or over, the northern tip of Sumatra.[26]: 4 [62] Indonesian military radar tracked Flight 370 earlier when en route to waypoint IGARI before the transponder is thought to have been turned off, but did not provide information on whether it was detected afterwards.[26]: 4 [74] Thailand and Vietnam also detected Flight 370 on radar before the transponder stopped working. The radar position symbols for the transponder code used by Flight 370 vanished after the transponder is thought to have been turned off.[26]: 4–5 Vietnam's deputy minister of transport Pham Quy Tieu stated that Vietnam had noticed MH370 turning back toward the west and that its operators had twice informed Malaysian authorities the same day on 8 March.[75] Thai military radar detected an aircraft that might have been Flight 370, but it is not known at what time the last radar contact was made, and the signal did not include identifying data.[76] Also, the flight was not detected by Australia's conventional system[77] or its long-range JORN over-the-horizon radar system, which has an official range of 3,000 km (1,900 mi); the latter was not in operation on the night of the disappearance.[78]
Satellite communication resumes[edit]
Sometime after the final ACARS transmission at 01:06, the satellite communication system of the aircraft went offline, and remained offline during the aircraft's initial deviation from its scheduled flight path. However, for an unknown reason, at 02:25 MYT, when the aircraft was somewhere over the Andaman Sea, the satellite communication system booted back up and sent a "log-on request" message—the first message since the ACARS transmission at 01:06—which was relayed by satellite to a ground station, both operated by satellite telecommunications company Inmarsat. After logging on to the network, the satellite data unit on the aircraft responded to hourly status requests from Inmarsat for the next six hours, as well as two ground-to-aircraft telephone calls, at 02:39 and 07:13, both unanswered by anyone in the cockpit.[63]: 18 [65] The final status request and aircraft acknowledgement occurred at 08:10, about 1 hour and 40 minutes after the flight was scheduled to arrive in Beijing. The aircraft sent a log-on request at 08:19:29, which was followed, after a response from the ground station, by a "log-on acknowledgement" message at 08:19:37. This log-on acknowledgement is the last piece of data received from Flight 370. The aircraft did not respond to a status request from Inmarsat at 09:15.[63][65][79][80]
The consensus among investigators is that Flight 370 crashed somewhere in the southern Indian Ocean sometime between 08:19 and 09:15 on 8 March due to fuel exhaustion. The exact time and location of the crash remain uncertain. However, using the aircraft's final communication (the log-on acknowledgement), a rough crash location was triangulated.[81]
Response by air traffic control[edit]
Flight Information Regions in the vicinity of where Flight 370 disappeared from secondary radar. Kuala Lumpur ACC provides ATC services for two routes, located within FIR Singapore, between Malaysia and Vietnam. (Air routes are depicted as roughly 5 nmi / 8–10 km wide, but vary in width, with some as wide as 20 nmi / 35–40 km.)
At 01:38 MYT, Ho Chi Minh Area Control Centre (ACC) contacted Kuala Lumpur Area Control Centre to query the whereabouts of Flight 370 and informed Kuala Lumpur that ACC had not established verbal communication with Flight 370, which was last detected by radar at waypoint BITOD. The two centres exchanged four more calls during the next 20 minutes with no new information.[62][82]
At 02:03, Kuala Lumpur ACC relayed to Ho Chi Minh ACC information received from Malaysia Airlines' operations centre that Flight 370 was in Cambodian airspace. Ho Chi Minh ACC contacted Kuala Lumpur ACC twice in the following eight minutes asking for confirmation that Flight 370 was in Cambodian airspace.[62] At 02:15, the watch supervisor at Kuala Lumpur ACC queried Malaysia Airlines' operations centre, which said that it could exchange signals with Flight 370 and that Flight 370 was in Cambodian airspace.[82] Kuala Lumpur ACC contacted Ho Chi Minh ACC to ask whether the planned flight path for Flight 370 passed through Cambodian airspace. Ho Chi Minh ACC responded that Flight 370 was not supposed to enter Cambodian airspace and that they had already contacted Phnom Penh ACC (which controls Cambodian airspace), which had no communication with Flight 370.[62] Kuala Lumpur ACC contacted Malaysia Airlines' operations centre at 02:34, inquiring about the communication status with Flight 370, and were informed that Flight 370 was in a normal condition based on a signal download and that it was located at 14°54′N 109°15′E / 14.900°N 109.250°E.[82] Later, another Malaysia Airlines aircraft (Flight 386 bound for Shanghai) attempted, at the request of Ho Chi Minh ACC, to contact Flight 370 on the Lumpur Radar frequency – the frequency on which Flight 370 last made contact with Malaysian air traffic control – and on emergency frequencies. The attempt was unsuccessful.[62][83]
At 03:30, Malaysia Airlines' operations centre informed Kuala Lumpur ACC that the locations it had provided earlier were "based on flight projection and not reliable for aircraft positioning." Over the next hour, Kuala Lumpur ACC contacted Ho Chi Minh ACC, asking whether they had signalled Chinese air traffic control. At 05:09, Singapore ACC was queried for information about Flight 370. At 05:20, an undisclosed official contacted Kuala Lumpur ACC requesting information about Flight 370; he opined that, based on known information, "MH370 never left Malaysian airspace."[62]
The watch supervisor at Kuala Lumpur ACC activated the Kuala Lumpur Aeronautical Rescue Coordination Centre (ARCC) at 05:30, more than four hours after communication was lost with Flight 370.[82] The ARCC is a command post at an Area Control Centre that coordinates search-and-rescue activities when an aircraft is lost.
Malaysia Airlines issued a media statement at 07:24 MYT on 8 March, one hour after the scheduled arrival time of the flight at Beijing, stating that communication with the flight had been lost by Malaysian ATC at 02:40 and that the government had initiated search-and-rescue operations.[84] Unbeknownst to investigators or Malaysia Airlines at the time, the aircraft was still airborne at the time of this initial media statement, and search-and-rescue operations were commenced while it was still in flight over the Indian Ocean (although the search-and-rescue operations initially focused on the South China Sea, not the Indian Ocean).[citation needed] The time when contact was lost was later corrected to 01:21.[84] Neither the crew nor the aircraft's communication systems relayed a distress signal, indications of bad weather, or technical problems before the aircraft vanished from radar screens.[85]
On 24 March, Malaysian prime minister Najib Razak appeared before media at 22:00 local time to give a statement regarding Flight 370, during which he announced that he had been briefed by the Air Accidents Investigation Branch that it and Inmarsat (the satellite data provider) had concluded that the airliner's last position before it disappeared was in the southern Indian Ocean. As no places exist where it could have landed, the aircraft must therefore have crashed into the sea.[86]
Just before Najib spoke at 22:00 MYT, an emergency meeting was called in Beijing for relatives of Flight 370 passengers.[86] Malaysia Airlines announced that Flight 370 was assumed lost with no survivors. It notified most of the families in person or via telephone, and some received an SMS (in English and Chinese) informing them that the aircraft likely had crashed with no survivors.[11][86][87][88]
On 29 January 2015, the director general of the Department of Civil Aviation Malaysia, Azharuddin Abdul Rahman, announced that the status of Flight 370 would be changed to an "accident", in accordance with the Chicago Convention on International Civil Aviation, and that all passengers and crew are confirmed to have lost their lives.[89]
If the official assumption is confirmed, Flight 370 was, at the time of its disappearance, the deadliest aviation incident in the history of Malaysian Airlines, surpassing the 1977 hijacking and crash of Malaysian Airline System Flight 653 that killed all 100 passengers and crew aboard, and the deadliest involving a Boeing 777, surpassing Asiana Airlines Flight 214 (three fatalities).[90][91] In both of those categories, Flight 370 was surpassed 131 days later by Malaysia Airlines Flight 17, another Boeing 777-200ER, which was shot down on 17 July 2014, killing all 298 people aboard.[36]
The news media reported several sightings of an aircraft fitting the description of the missing Boeing 777. For example, on 19 March 2014, CNN reported that witnesses including fishermen, an oil rig worker, and people on the Kudahuvadhoo island in the Maldives saw the missing airliner; this was later identified as a Maldivian aircraft.[92] A fisherman claimed to have seen an unusually low-flying aircraft off the coast of Kota Bharu in Malaysia, while an oil-rig worker 186 miles (299 km) southeast of Vung Tau in Vietnam claimed he saw a "burning object" in the sky that morning, a claim credible enough for the Vietnamese authorities to send a search-and-rescue mission, and Indonesian fishermen reported witnessing an aircraft crash near the Malacca Straits.[93] Two days later, the Malaysia-based The Star reported that a Malaysian woman "claimed that she saw the stricken Malaysia Airlines plane partly submerged in the waters off the Andaman Islands" on the day the jet disappeared.[94]
Three months later, the Phuket Gazette reported that a British woman sailing in the Indian Ocean claimed to have seen an aircraft on fire.[95][96]
A P-8 Poseidon patrol aircraft of the US Navy departs Perth Airport on 22 March 2014 to search for MH370.
ADV Ocean Shield deploys the Bluefin-21 autonomous underwater vehicle, which conducted the seafloor sonar survey from 14 April to 28 May 2014.[citation needed]
A search-and-rescue effort was launched in southeast Asia soon after the disappearance of Flight 370. Following the initial analysis of communications between the aircraft and a satellite, the surface search was moved to the southern Indian Ocean one week after the aircraft's disappearance. Between 18 March and 28 April, 19 vessels and 345 sorties by military aircraft searched over 4,600,000 km2 (1,800,000 sq mi).[97] The final phase of the search was a bathymetric survey and sonar search of the sea floor, about 1,800 kilometres (970 nmi; 1,100 mi) southwest of Perth, Western Australia.[98] With effect from 30 March 2014, the search was coordinated by the Joint Agency Coordination Centre (JACC), an Australian government agency that was established specifically to manage the effort to locate and recover Flight 370, and which primarily involved the Malaysian, Chinese, and Australian governments.[99]
On 17 January 2017, the official search for Flight 370—which had proven to be the most expensive search operation in aviation history[100][101]—was suspended after yielding no evidence of the aircraft other than some marine debris on the coast of Africa.[102][103][104][105] The final ATSB report, published on 17 October 2017, stated that the underwater search for the aircraft, as of 30 June 2017, had cost a total of US$155 million (~$194 million in 2024). The underwater search accounted for 86% of this amount, bathymetry 10%, and programme management 4%. Malaysia had supported 58% of the total cost, Australia 32%, and China 10%.[106] The report also concluded that the location where the aircraft went down had been narrowed to an area of 25,000 km2 (9,700 sq mi) by using satellite images and debris drift analysis.[107][108]
In January 2018, the private American marine-exploration company Ocean Infinity resumed the search for MH370 in the narrowed 25,000 km2 area, using the Norwegian ship Seabed Constructor.[109][110][111][112] The search area was significantly extended during the course of the search, and by the end of May 2018, the vessel had searched a total area of more than 112,000 km2 (43,000 sq mi) using eight autonomous underwater vehicles (AUVs).[113][114] The contract with the Malaysian government ended soon afterward, and the search was concluded without success on 9 June 2018.[115]
The initial search area in Southeast Asia
The Kuala Lumpur Aeronautical Rescue Coordination Centre (ARCC) was activated at 05:30 MYT—four hours after communication was lost with the aircraft—to coordinate search and rescue efforts.[82] Search efforts began in the Gulf of Thailand and the South China Sea. On the second day of the search, Malaysian officials said that radar recordings indicated that Flight 370 may have turned around before vanishing from radar screens;[50] the search zone was expanded to include part of the Strait of Malacca.[116] On 12 March, the chief of the Royal Malaysian Air Force announced that an unidentified aircraft—believed to be Flight 370—had travelled across the Malay peninsula and was last sighted on military radar 370 km (200 nmi; 230 mi) northwest of the island of Penang; search efforts were subsequently increased in the Andaman Sea and Bay of Bengal.[73]
Records of signals sent between the aircraft and a communications satellite over the Indian Ocean revealed that the aircraft had continued flying for almost six hours after its final detection by Malaysian military radar. Initial analysis of these communications determined that Flight 370 was along one of two arcs—equidistant from the satellite—when its last signal was sent. On 15 March, the same day upon which the analysis was disclosed publicly, authorities announced that they would abandon search efforts in the South China Sea, Gulf of Thailand, and Strait of Malacca in order to focus their efforts on the two corridors. The northern arc—from northern Thailand to Kazakhstan—was soon discounted, for the aircraft would have had to pass through heavily militarised airspace, and those countries claimed that their military radar would have detected an unidentified aircraft entering their airspace.[117][118][119]
Southern Indian Ocean[edit]
The shifting search zones for Flight 370 in the Southern Indian Ocean. The inset shows the path taken by the vessel ADV Ocean Shield operating a towed pinger locator, acoustic detections, and the sonar search. The underwater phase (both the wide area search and priority area) is shown in pink.
The emphasis of the search was shifted to the southern Indian Ocean west of Australia and within Australia's aeronautical and maritime Search and Rescue regions that extend to 75°E longitude.[120][121] Accordingly, on 17 March, Australia agreed to manage the search in the southern locus from Sumatra to the southern Indian Ocean.[122][123]
From 18 to 27 March 2014, the search effort focused on a 315,000 km2 (122,000 sq mi) area about 2,600 km (1,400 nmi; 1,600 mi) southwest of Perth.[124] The search area, which Australian prime minister Tony Abbott called "as close to nowhere as it's possible to be", is renowned for its strong winds, inhospitable climate, hostile seas, and deep ocean floors.[125][126] Satellite imagery of the region was analysed;[127] several objects of interest and two possible debris fields were identified on images made between 16 and 26 March. None of these possible objects were found by aircraft or ships.[128]
Revised estimates of the radar track and the aircraft's remaining fuel led to a move of the search 1,100 km (590 nmi; 680 mi) northeast of the previous area on 28 March,[129][130][131] which was followed by another shift on 4 April.[132][133] Between 2 and 17 April, an effort was made to detect the underwater locator beacons (ULBs, informally known as "pingers") attached to the aircraft's flight recorders, because the beacons' batteries were expected to expire around 7 April.[134][135] Australian naval cutter ADV Ocean Shield, equipped with a towed pinger locator (TPL), joined China's Haixun 01, equipped with a hand-held hydrophone, and the Royal Navy's HMS Echo, equipped with a hull-mounted hydrophone, in the search.[63]: 11–12 [108]: 36 [134][136][137] Operators considered the effort to have little chance of success[138] given the vast search area and the fact that a TPL can only search up to 130 km2 (50 mi2) per day.[138]
Between 4 and 8 April, several acoustic detections were made that were close to the frequency and rhythm of the sound emitted by the flight recorders' ULBs; analysis of the acoustic detections determined that, although unlikely, the detections could have come from a damaged ULB.[63]: 13 A sonar search of the seafloor near the detections was carried out between 14 April and 28 May but yielded no sign of Flight 370.[63]: 14 In a March 2015 report, it was revealed that the battery of the ULB attached to Flight 370's flight data recorder may have expired in December 2012 and thus may not have been as capable of sending signals as would an unexpired battery.[139][140]
In late June 2014, details of the next phase of the search were announced;[141] officials have called this phase the "underwater search" despite the previous seafloor sonar survey.[142] Continued refinement of the analysis of Flight 370's satellite communications identified a "wide area search" along the "7th arc"[k] where Flight 370 was located when it last communicated with the satellite. The priority search area was in the southern extent of the wide area search.[143] Some of the equipment used for the underwater search is most effective when towed 200 m (650 ft) above the seafloor at the end of a 9.7 km (6 mi) cable.[144] Available bathymetric data for this region was of poor resolution, thus necessitating a bathymetric survey of the search area before the underwater phase began.[145] Commencing in May, the survey charted around 208,000 km2 (80,000 sq mi) of seafloor until 17 December 2014, when it was suspended so that the ship conducting the survey could be mobilised in the underwater search.[146]
The governments of Malaysia, China, and Australia made a joint commitment to thoroughly search 120,000 km2 (46,000 sq mi) of seafloor.[147] This phase of the search, which began on 6 October 2014,[143] used three vessels equipped with towed deep-water vehicles that use side-scan sonar, multi-beam echo sounders, and video cameras to locate and identify aircraft debris.[148] A fourth vessel participated in the search between January and May 2015, using an AUV to search areas that could not be effectively searched using equipment on the other vessels.[149][150][151] Following the discovery of the flaperon on Réunion, the Australian Transport Safety Bureau (ATSB) reviewed its drift calculations for debris from the aircraft and, according to the JACC, was satisfied that the search area was still the most likely crash site.[152] Reverse drift modelling of the debris, to determine its origin after 16 months, also supported the underwater search area, although this method is very imprecise over long periods.[152] On 17 January 2017, the three countries jointly announced the suspension of the search for Flight 370.[102][153]
By October 2017, twenty pieces of debris believed to be from 9M-MRO had been recovered from beaches in the western Indian Ocean;[154] 18 of the items were "identified as being very likely or almost certain to originate from MH370", while the other two were "assessed as probably from the accident aircraft."[108]: 106 On 16 August 2017, the ATSB released two reports: the analysis of satellite imagery collected on 23 March 2014, two weeks after MH370 disappeared, classifying 12 objects in the ocean as "probably man-made";[155] and a drift study of the recovered objects by the CSIRO, identifying the crash area "with unprecedented precision and certainty" at 35°36′S 92°48′E / 35.6°S 92.8°E, northeast of the main 120,000 km2 (46,000 mi2) underwater search zone.[156][157]
Boeing 777 flaperon
Location of flaperon discovery relative to Flight 370's flight path and the main search area
Currents within the Indian Ocean
The first item of debris to be positively identified as originating from Flight 370 was the right flaperon (a trailing edge control surface).[158][159][160] It was discovered in late July 2015 on a beach in Saint-André on Réunion, an island in the western Indian Ocean, about 4,000 km (2,200 nmi; 2,500 mi) west of the underwater search area.[161] The item was transported from Réunion (an overseas department of France) to Toulouse, where it was examined by France's civil aviation accident investigation agency, the Bureau of Enquiry and Analysis for Civil Aviation Safety (BEA), and a French defence ministry laboratory.[161] Malaysia sent its own investigators to both Réunion and Toulouse.[161][162] On 3 September 2015, French officials announced that serial numbers found on internal components of the flaperon linked it "with certainty" to Flight 370.[163] These serial numbers were retrieved using a borescope.[164][165][166][167]
After the discovery, French police conducted a search of the waters around Réunion for additional debris.[161][168][169] This found a damaged suitcase that was initially linked to Flight 370,[170] but officials have since doubted this connection.[171] The location of the discovery was consistent with models of debris dispersal 16 months after an origin in the search area then in progress off the west coast of Australia.[152][161][172][173] A Chinese water bottle and an Indonesian cleaning product were also found in the same area.[174][175]
In August 2015, France carried out an aerial search for possible marine debris around the island, covering an area of 120 by 40 km (75 by 25 mi) along the east coast of Réunion.[169] Foot patrols were also planned to search for debris along the beaches.[176] Malaysia asked authorities in neighbouring states to be on the alert for marine debris that might have come from an aircraft.[177] On 14 August, it was announced that no debris that could be traced to Flight 370 had been found at sea off Réunion, but that some items had been found on land.[178] Air and sea searches for debris ended on 17 August.[179]
The flaperon was covered in Lepas anatifera barnacles, which grow in certain patterns and only while underwater. Researchers have analysed the barnacles on the flaperon in an attempt to deduce its path to Réunion.[180]
Parts from the right stabiliser and right wing[edit]
In late February 2016, an object bearing a stencilled label of "NO STEP" was found off the coast of Mozambique; early photographic analysis suggested that it could have come from the aircraft's horizontal stabiliser or from the leading edges of the wings.[12] The part was found by Blaine Gibson[181] on a sandbank in the Bazaruto Archipelago off the coast of Vilanculos[182] in southern Mozambique, around 2,000 km (1,200 mi) southwest of where the flaperon had been found the previous July.[183][184] The fragment was sent to Australia, where experts identified it as almost certainly a horizontal stabiliser panel from 9M-MRO.[185][186]
In December 2015, Liam Lotter had found a grey piece of debris on a beach in southern Mozambique, but only after reading in March 2016 about Gibson's find—some 300 km (190 mi) from his own—did his family alert authorities.[181] The piece was flown to Australia for analysis. It carried a stencilled code 676EB, which identified it as part of a Boeing 777 flap track fairing,[12][187] and the style of lettering matched that of stencils used by Malaysia Airlines, making it almost certain that the part came from 9M-MRO.[12][13][14][15][181][188]
The locations where the objects were found are consistent with the drift model performed by CSIRO,[13] further corroborating that the parts could have come from Flight 370.
On 7 March 2016, more debris, possibly from the aircraft, was found on the island of Réunion. Malaysia's deputy transport minister Ab Aziz Kaprawi said that "an unidentified grey item with a blue border" might be linked to Flight 370. Both Malaysian and Australian authorities, coordinating the search in the South Indian Ocean, sent teams to verify whether the debris was from the missing aircraft.[189][190]
On 21 March 2016, South African archaeologist Neels Kruger found a grey piece of debris on a beach near Mossel Bay, South Africa, that had an unmistakable partial logo of Rolls-Royce, the manufacturer of the missing aircraft's engines.[191] The Malaysian ministry of transport acknowledged that the piece could be that of an engine cowling.[192] An additional piece of possible debris, suggested to have come from the interior of the aircraft, was found on the island of Rodrigues, Mauritius, in late March.[193] On 11 May 2016, Australian authorities determined that the two pieces of debris were "almost certainly" from Flight 370.[194]
Flap and further search[edit]
On 24 June 2016, Australian transport minister Darren Chester said that a piece of aircraft debris had been found on Pemba Island, off the coast of Tanzania.[195] It was handed over to the authorities so that experts from Malaysia could determine its origin.[196] On 20 July, the Australian government released photographs of the piece, which was believed to be an outboard flap from one of the aircraft's wings.[197] Malaysia's transport ministry confirmed on 15 September that the debris was indeed from the missing aircraft.[198]
On 21 November 2016, families of the victims announced that they would carry out a search for debris in December on the island of Madagascar.[199] On 30 November 2018, five pieces of debris recovered between December 2016 and August 2018 on the Malagasy coast, and believed by victims' relatives to be from MH370, were handed to Malaysian transport minister Anthony Loke.[200]
Texas A&M University mathematics professor Goong Chen has argued that the aircraft may have entered the sea vertically; any other angle of entry would make the aircraft splinter into many pieces, which would have been found already.[201][202]
On 17 October 2017, Dutch-based Fugro and American company Ocean Infinity offered to resume the search for the aircraft.[203] In January 2018, Ocean Infinity announced that it was planning to resume the search in the narrowed 25,000 km2 (9,700 sq mi) area. The search attempt was approved by the Malaysian government, provided that payment would be made only if the wreckage were found.[109][110] Ocean Infinity chartered the Norwegian ship Seabed Constructor to perform the search.[112]
In late January, it was reported that the AIS tracking system had detected the vessel reaching the search zone on 21 January. The vessel then started moving to 35°36′S 92°48′E / 35.6°S 92.8°E, the most likely crash site according to the drift study by the Commonwealth Scientific and Industrial Research Organisation (CSIRO).[16] The planned search area of "site 1", where the search began, was 33,012 km2 (12,746 sq mi), while the extended search area covered a further 48,500 km2 (18,700 sq mi).[111] In April, a report by Ocean Infinity revealed that "site 4", farther northeast along the 7th arc,[k] had been added to the search plan.[207] By the end of May 2018, the vessel had searched a total area of over 112,000 km2 (43,000 sq mi), using eight AUVs;[113][114] all areas of "site 1" (including areas beyond that originally planned for "site 1"), "site 2", and "site 3" had been searched.[208] The final phase of the search was conducted in "site 4" in May 2018,[208] "before the weather limits Ocean Infinity's ability to continue working" any more that year.[209] Malaysia's new transport minister Loke Siew Fook announced on 23 May 2018 that the search for MH370 would conclude at the end of the month.[210] Ocean Infinity confirmed on 31 May that its contract with the Malaysian government had ended,[211][212] and it was reported on 9 June 2018 that the Ocean Infinity search had come to an end.[115] Ocean-floor mapping data collected during the search has been donated to the Nippon Foundation–GEBCO Seabed 2030 Project, to be incorporated into the global map of the ocean floor.[213][214]
In March 2019, in the wake of the fifth anniversary of the disappearance, the Malaysian government stated that it was willing to look at any "credible leads or specific proposals" regarding a new search.[215] Ocean Infinity stated that it was ready to resume the search on the same no-find, no-fee basis, believing that it would benefit from the experience that it had gained from its search for the wreck of Argentinian submarine ARA San Juan and bulk carrier ship Stellar Daisy. Ocean Infinity believed that the most probable location was still somewhere along the 7th arc around the area identified previously and upon which its 2018 search was based.[216]
In March 2022, Ocean Infinity committed to resuming its search in 2023 or 2024 pending approval by the Malaysian government.[217] In 2023 Ocean Infinity was reviewing data from their previous 2018 search to ensure nothing was missed. CEO Oliver Plunkett hoped to resume the search in mid-2023 using Ocean Infinity's new Armada vessel. The transportation minister of Malaysia, Wee Ka Siong, requested credible new evidence from Ocean Infinity in order to resume the search, which Plunkett was allegedly in possession of.[218] Claims of yet-to-be-identified new evidence incited victims' families to further push for another search.[219]
In March 2024, days before the tenth anniversary of the disappearance, Malaysia said it would consult with Australia about collaborating on another expedition by the Ocean Infinity team.[220][221][222]
On 2 May 2024, Ocean Infinity sent a proposal for a new underwater search to Anthony Loke, the Malaysian Minister of Transport.[223] On 20 December 2024, the Malaysian Government announced that it would resume the search for the aircraft and that it would be carried out by Ocean Infinity to cover a 15,000 square km area in the southern Indian Ocean. It was expected to cost $70m (£56m), but, as with the 2018 search, this search would be on a "no find, no fee" basis.[224]
On 25 February 2025, Minister of Transport Loke confirmed that Ocean Infinity had resumed the search for the missing aircraft in a new 5,800-sq-mile (15,000-km2) ocean area, before a contract had been finalised.[225] A contract was signed on 25 March, on the terms announced the previous year (Ocean Infinity was conducting the search on a “no find, no fee” basis, with the company to be paid $70m if wreckage was discovered).[225][226] On 3 April 2025, Loke announced that Ocean Infinity had suspended its search due to seasonal weather conditions but that "they will resume the search at the end of this year".[227]
On 3 December 2025, the Malaysian Transport Ministry issued an official statement confirming that search operations for the aircraft would resume late that month, for a total of 55 days. The search would be conducted as conditions permit, "in targeted areas assessed to have the highest probability of locating the aircraft, in line with the service agreement signed between the Malaysian government and Ocean Infinity on 25 March".[226][228][229] The search resumed on 31 December, with the Armada 86 05 being assisted by two autonomous underwater vehicles; they reached the search area from the port of Fremantle, Western Australia.[230] It concluded on 23 January 2026 without success.[231]
International participation[edit]
Malaysia quickly assembled a Joint Investigation Team (JIT), consisting of specialists from Malaysia, China, the United Kingdom, the United States, and France,[63]: 1 [232] which was led in accordance with ICAO standards by "an independent investigator in charge".[233][234][235] The team consisted of an airworthiness group, an operations group, and a medical and human factors group. The airworthiness group were tasked with examining issues relating to maintenance records, structures, and systems of the aircraft; the operations group were to review the flight recorders, operations, and meteorology; and the medical and human factors group would investigate psychological, pathological, and survival factors.[236] Malaysia also announced, on 6 April 2014, that it had set up three ministerial committees: a Next of Kin Committee, a committee to organise the formation of the JIT, and a committee responsible for the Malaysian assets deployed in the search effort.[236] The criminal investigation was led by the Royal Malaysia Police,[89]: 9 assisted by Interpol and other relevant international law enforcement authorities.[237][238]
On 17 March, Australia took control of co-ordinating the search, rescue, and recovery operations. For the next six weeks, the Australian Maritime Safety Authority (AMSA) and ATSB worked to determine the search area, correlating information with the JIT and other government and academic sources, while the Joint Agency Coordination Centre (JACC) coordinated the search efforts. Following the fourth phase of the search, the ATSB took responsibility for defining the search area. In May, a search strategy working group was established by the ATSB to determine the most likely position of the aircraft at the 00:19 UTC (08:19 MYT) satellite transmission. The working group included aircraft and satellite experts from: Air Accidents Investigation Branch (UK), Boeing (US), Defence Science and Technology Group[l] (Australia), Department of Civil Aviation (Malaysia), Inmarsat (UK), National Transportation Safety Board (US), and Thales (France).[63]: 1 [240][241]
As of October 2018, France was the only country that was continuing the investigation (by means of its Air Transport Gendarmerie), with the intention of verifying all of the technical data transmitted, particularly those provided by Inmarsat.[242][243]
In 2024, researchers at Cardiff University in the United Kingdom conducted a study on underwater hydrophone signals generated by aircraft crashes in the ocean. The researchers claimed that these signals could be key to detecting the final resting place of MH370, potentially bringing the UK back into the search efforts.[244]
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