Showing posts with label boeing 737. Show all posts
Showing posts with label boeing 737. Show all posts

Sunday, 20 June 2021

Newest Boeing 737 MAX First Test Flight

 New Boeing 737 MAX lifts for first time

After the grounding of the fleet of Boeing 737 MAX, the fleet is ready to rule the skies again. The fleet was grounded after the deadly crashes of the highly modern and advanced aircraft "Boeing 737 MAX".
The new sensors added in the aircraft which made the Boeing 737 much advanced had a serious glitch in the system. In both the cases the jet's computer triggered a system that made the pilots to struggle with the control systems, which eventually took the aircraft into a steep nose dive to plumit the craft from the sky. The Lion Air flight JT610 and the Ethiopian Airlines flight ET302 killed approximately 346 people, in October 2018 and March 2019.
After making the some technical changes in the flight computer the Boeing 737 MAX is ready to leave the tarmac after a long interval.



The Boeing confirmed that the first flight of the Boeing 737 MAX 10 tookoff from Renton, Washington at 1707 GMT into the clear sky. Flying over the central part of the state and conducted a safe landing after two and half hours later in the airport of Seattle.

On the controls was Captain Jennifer Henderson, after completing the flight successfully he said "The aircraft performed very beautifully. The profile we flew allowed us to test the airplane's various vital flight control systems, flight control and handling qualities, all of which checked out exactly as we expected". 

Initially this test flight was to be conducted in 2020, but the 737MAX was grounded for another 20 months due to the ongoing COVID-19 pandemic.


Going by the projections made by the Boeing, they intend to commence the deliveries of the 737-MAX10 in 2023. Before starting of the deliveries Boeing will conduct a series of test flight to make the jet safe for the passengers and the crew. The tests conducting by the US FEDERAL AVIATION ADMINISTRATION(FAA).

In an official statement the president and CEO of Boeing Commercial Airplanes said that the 737-10 is a very important part of the the fleet of their various customers. The Boeing 737MAX-10 will give them more capacity, great fuel efficiency and the best ever per seat economy of any single-aisle airplane currently in the skies.

The jet was initially announced at the Paris Air Show in June 2017, where the company officials talked about its size and termed it as the most efficient, profitable single aisle airplane in the industry. The jet was competing with the Boeing's rival Airbus' Airbus A321neo. The Boeing 737MAX-10 has a capacity of 230 passengers. The company has been increasing the seating capacity of the 737MAX series from 737MAX-7 which had about 138-153 seats. 


This will be a short range jet as compared to the other 737MAX versions. It will be propelled by some of the Boeing's finest Leap-1B jet engine, designed by the GE Aviation and Safran Aircraft. 

So, now after the jet has the approval of the US regulatory bodies and also from the various other major civil aviation bodies. The approval was granted in November 2020, and since then Boeing has started new deliveries of the max and has also announced new contracts with several other leading carriers.

For more aviation related news and stories stay tuned to AVIATION BOY.
    

 

Wednesday, 16 June 2021

ALL ABOUT BOEING

 GROWTH OF THE BOEING

From being just a beginner in the industry to the rulers of the sky BOEING have covered a significant amount of path.


Lets take a glimpse of the Journey of BOEING



1916: William Boeing starts the Pacific Aero merchandise Co., that was renamed when its founder a year later. Boeing's 1st planes, the Model C picket seaplanes, were sold to the United States Navy for warfare I, establishing a key alliance with the United States military.

1927: Boeing creates its own airline, Boeing transport, for transporting mail with its Model 40 biplanes. The model would become the primary Boeing aeroplane to hold passengers.

1934: Boeing, suspect of noncompetitive practices, is forced to interrupt up into 3 entities: United Technologies, United Airlines and Boeing. Founder William Boeing divests his holdings within the company.

1937: Boeing delivers the primary B-17s to the United States Army air force, the enormous "Flying Fortress" bomber that contend a central role within the Allied triumph in warfare II.

1941: British Royal Air Force takes delivery of B-17s, giving them their initial style of combat.

1954: the huge jet-powered B-52 Stratofortress becomes the United States military's symbol of power within the conflict, to carry a key place within the United States Air Force up through these days.

1958: Pan Am, the leading United States airline, unveils the Boeing 707, that shortly became the primary commercially prosperous jet airplane. tv ads showed well-to-do passengers sipping wine and enjoying vibration-free travel, a symbol of the post-war United States economic boom.

1962: Boeing introduces the CH-47 Chinook chopper, employed in movement and battleground resupply conspicuously within the Vietnam War.

1969: The Boeing-built Saturn V rocket propels spaceman Neil Armstrong to the moon.

1970: The four hundred traveler 747 jumbo Jet, quite doubly as giant because the 707, is launched to dominate international aviation and freight over subsequent decades.

1970: Boeing archrival Airbus is formed originally as a joint effort of the German and French governments.

1977: 2 747s collide on the runway of the Canaries, killing 583 passengers within the deadliest plane crash in history. The accident sparked sweeping upgrades to international safety laws.

1987: Boeing is additional to the Dow Jones Industrial Average, the celebrated index of blue chip corporations.

1997: Boeing acquires American archrival McDonnell Douglas for $13.3 billion, slimming the sector of major industrial craft manufacturers to simply 2, Boeing and Airbus, and beefing up its capability as a global weapons maker.

2001: Boeing picks Chicago as its new company headquarters when the western city offers up some $60 million in tax incentives to maneuver from Seattle, the company's production base.

2011: when various delays, Boeing's newest passenger jet, the widebody Dreamliner, completes its 1st industrial flight from Narita, Japan to Hong Kong. The planes, famed for fuel potency, were later grounded because of AN heating drawback with the lithium-ion batteries.


General Specifications of Boeing Crafts 

Over the years Boeing have manufactured numerous number of commercial jets and aircrafts for military. Some aircrafts with their specifications can be seen below:

Boeing 737 MAX-8:

  • Twin‑engine, single aisle, short- to medium-range narrow-body
  • First Flight (base model) - 9April, 1967
  • Fuel Capacity - 10707Ga/40530L
  • Takeoff Runway Requirement - 8690ft/2648m
  • Range - 3550nmi/6570km
  • Seats - 210


Other variants - 737 MAX-7, 737 MAX-9, 737 MAX-10



Boeing 747-8:

  • Heavy, four‑engine, partial double deck, twin–aisle main deck, single–aisle upper deck, medium- to long-range widebody
  • First Flight (base model) - 9February, 1969
  • Fuel Capacity - 63094Ga/238836L
  • Takeoff Runway Requirement - 10450ft/3185m
  • Range - 7730nmi/14310km
  • Seats - 410
Other variants - 747-100SR, 747-200, 747-300, 747-400, 747-8



Boeing 777-300ER:

  • Heavy, twin-engine, twin aisle, medium- to long-range, ultra long-range, widebody
  • First Flight (base model) - 12June, 1994
  • Fuel Capacity -  45219Ga/171172L
  • Takeoff Runway Requirement - 10500ft/3200m
  • Range - 7,370nmi/13649km
  • Seats - 396
Other variants - 777-200LR




Boeing 787-8 Dreamliner:

  • Heavy, twin-engine, twin aisle, long-range widebody
  • First Flight (base model) - 15December, 2009
  • Fuel Capacity - 33528Ga/126917L
  • Takeoff Runway Requirement - 8530ft/2600m
  • Range - 7,305nmi/13530km
  • Seats - 248 
Other variants - 787-9 Dreamliner, 787-10 Dreamliner



For more information stay tuned to AVIATION BOY





SWISS AIR FLIGHT 111 INVESTIGATION

 WHAT BROUGHT DOWN SWISSAIR111

The Transportation Safety Board of Canada launches what will become the largest air disaster investigation in the nation's history. They only know that Swiss Air 111 experienced a cockpit fire, but what caused it remains a mystery. It would be a challenging task for the investigators to gather the remains of SWISSAIR111 from the ocean, the remain lie berried under water about 55meters(185feet). It was in a couple of 1,000,000 pieces, so that was the initial challenge and then after that. Of course, when you have so many pieces. You need to determine which are the relevant ones, and what are these pieces telling you about what happened and why? 

The search for the wreckage begins

The TSB embarks on a complex multi stage plan. First, divers are deployed to survey the wreckage. They discover that the plane is smashed into millions of pieces as far weather worsens the risk to divers increases. At this rate, the investigation will take years to complete. Stage 2 with help from the United States Navy Remote operated vehicles begin a more detailed search. The ROVs help investigators surveyed the site. But the question remains how to recover tiny pieces of twisted metal from the bottom of the sea? Out of the wreckage, the first breakthrough emerges. Swiss Air 111 black boxes, recordings of cockpit and computer data tell investigators that everything on the plane was working perfectly until the last few minutes.

The investigating team faces a setback when it is found that the last 6minutes of the flight data was not recorded on any of the flight data recorders. This made it clear that the fire had affected the crucial flight instruments and it was the cause of the black boxes not recording any data. With the failure of the black boxes, investigators are no closer to learning how or where the fire started on Swiss Air 111.  Stage 3 barges are deployed to scour the seabed for evidence. One by one, sad remnants of the airplane reached the surface. One of her engines, then the landing gear. These were among the largest pieces of Swiss air 111 to be recovered. The rest are mere fragments dredged up in a painfully slow process. Stage four and nearby military hanger provides a makeshift lab for the growing team of forensic investigators. Among them are representatives from the American NTSB, Boeing, Swiss Air and the Royal Canadian Mounted Police. pieces of Swiss Air 111 arrive by the truckload. They are organized into various categories for analysis. Soon the hanger is stacked to capacity with the biggest jigsaw puzzle in the TSB's history. 


aviation meaning, boeing 737, pilot, aviators, air traffic control, air traffic control usa, air traffic control in the usa


How did a seemingly small cockpit fire suddenly turn to catastrophe? 

the team sorts through nearly 250 kilometers of wiring retrieved from the wreckage of Swiss air 111. Here, the first real clue evidence of fire caused by electrical arcing. Scorch marks on metal revealed that the source of the fire was in the back of the cockpit, directly behind First Officer Löw. An examination of the aircraft wiring plans leads investigators to a likely suspect. The entertainment system in first class. 

The system had some major deficiencies it was getting very hot it draw a lot of power. And thereby raising the cabin temperature considerably because it was always running. The manufacturers did not install a simple off switch, in order to install appropriate cooling. The TSB investigators finally think they have the breakthrough they've been seeking. 

When Captain Zimmerman, through the cabin bus switch all power to the cabin, should have been turned off, but the entertainment system remained on overheating. 

Swiss air immediately disables the entertainment system on the rest of its fleet. But the TSB concludes that the mystery is not solved. Investigators determined that the problem with the entertainment system alone could not have brought down Swiss air 111. The search for answers must continue. 

aviation meaning, boeing 737, pilot, aviators, air traffic control, air traffic control usa, air traffic control in the usa



Stage five the TSB decides to reconstruct the MD 11 from the wreckage. A wireframe mockup they call the jig provides a spine for placing tiny pieces back where they once belonged. The reconstruction reveals that the hidden fire spread from the cockpit back into the first class galleys. Some metal showed heat damage from temperatures as high as 1100 degrees Fahrenheit. As the investigation continues, some argue that the actions of the pilots may have contributed to the disaster. Some experts charge that Zimmerman and Löw's by the book approach may have cost them their lives. Unfortunately, in this case, the way the checklist was written. It didn't identify that now start towards the divert. It started more on let's try to see if we can solve the problem. But the TSB considers the timeline investigators determined that Swiss Air 111 would not have made Halifax airport under any circumstances. There just wasn't enough time. 

Whatever caused the fire on Swiss air, it happened at a lethal speed. The mystery lingers. Second year passes, then another ambitious operation begins. 

The TSB hires a sophisticated Dutch salvage ship queen of the Netherlands. The vessel is equipped with a gigantic vacuum system, capable of dredging even the tiniest pieces of Swiss air 111 from the ocean floor. A mixture of seawater, silt and aircraft are pumped into the ships central hold. This cargo is then pumped into a specially constructed reservoir onshore nearby. When the gushing water drains away, investigators find another million pieces of the aircraft. And one of them may hold the clue to what caused the catastrophic fire. The tedious sorting once again resumes and goes on for weeks. 

Finally, after 15 months, they find what they've been seeking one faulty wire.  Next to the wire that started the arc was an insulation blanket made of some highly flammable substance. The insulation blankets which line the MD 11 are common on commercial airlines worldwide. They have passed the industry flammability tests which require materials to self extinguish after a reasonable period of time. The investigation takes an abrupt turn. Instead of seeking the cause of the fire. The TSB now focuses on the flammable materials that fueled it.  

aviation meaning, boeing 737, pilot, aviators, air traffic control, air traffic control usa, air traffic control in the usa


Now they have their answer. A wire arced in a closed space behind the cockpit. The arc ignited the insulation, which in turn let other materials, such as foams. And plastics the pilots could not sense how quickly the fire intensified, but 14 minutes after they declared Pan Pan Pan the fire disabled all electronics in the cockpit, the black boxes went dead. Forensic examination also help shed light on the desperate final minutes in the cockpit. Löw was in his seat. Captain Zimmerman was not likely fighting the fire and probably dead before impact. 

At 10:30, Löw shut down engine two investigators determined that he likely received a warning that the engine was on fire. Chillingly it proved that low was alive a minute before impact. They could not determine whether the passengers were aware of the fire, at least until the very final moments. 

The aircraft hits the water with a force of 350 Gs.

The TSB spends 4 1/2 years and 40 million U.S. dollars. The largest air disaster investigation in Canada history. Their conclusion, is 1 powerful message. Flammable materials do not belong on commercial aircraft. 

In the aftermath of the disaster, Swiss Air decides to remove the flammable insulate from its entire fleet. They also make changes to checklist procedure, reducing response time in a cockpit smoke emergency. But plagued with financial problems, the mighty airline shocks the industry when it goes bankrupt in October 2001. Flammable insulation that sets Swiss air ablaze remains in 2/3 of commercial airlines today, but not for very much longer. 

The US Federal Aviation Administration had given a deadline of 2005 to remove the material from all commercial aircraft. This major overhaul aims to ensure the Swiss air tragedy will not be repeated. 

For more stories stay tuned to AVIATION BOY.