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

Wednesday, September 12, 2012

Express Air new livery


Eastern Indonesian niche carrier Expressair appears to be adding another 737-200 to its fleet, this time with a new livery. The aircraft is identified as PK-TXK, previously PK-CJJ with Sriwijaya Air, and is currently undergoing an overhaul at AeroNusantara Indonesia (ANI).

Expressair currently operates 737-200s, 737-300s, 737-500s, and Do-328s.

Friday, June 1, 2012

Sriwijaya Air 737-400 runway excursion at Pontianak

Sriwijaya Air Boeing 737-4YO PK-CJV just had a runway excursion upon landing at Pontianak Airport. Initial reports indicate all crew and passengers are save, and aircraft is "in one piece". Aircraft was doing SJ188 Jakarta-Pontianak (scheduled departure 1035LT, scheduled arrival 1200LT). Accident occured at around 1230 local time, extent of damage unknown at this stage. The crew have so far been identified as a local instructor captain and a foreign junior pilot undergoing line training, with a a local first officer acting as safety pilot.

PK-CJV after evacuation at PNK
Pontianak Airport is now closed as per the following NOTAM:
  • B0726/12 NOTAMN
  • Q) WIIF/QMRLC/IV/NBO/A/000/999/0008S10924E005
  • A) WIOOB) 1206010600 
  • C) 1206011200
  • E) RWY 15/33 CLSD DUE TO BLOCKED BY ACFT
  • CREATED: 01 Jun 2012 06:01:00 SOURCE: WRRRYNYX
  • (From http://www.notams.faa.gov)


Weather conditions at around 1230 local time is as follows:
WIOO 010530Z 23022KT 0600 FEW009CB BKN007 29/25 Q1008 RMK CB OVER THE FIELD
  • Pontianak Supadio Airport, Date 1(June), 0530UTC.
  • Wind: 230 at 22 knots
  • Visibility: 600 metres 
  • Cloud: a few clouds at 900 feet with cumulonimbus 
  • Cloud: broken at 700 feet
  • Temperature: 29 C 
  • Dewpoint: 25 C
  • Humidity: 86%
  • Pressure: 1008 hPa
  • Remarks: Cumulonimbus over airfield


Weather conditions at around 1300 local time is as follows:
WIOO 010600Z 3000 TSRA FEW010CB BKN008 24/24 Q1007 RMK CB TO NE
  • Pontianak Supadio Airport, Date 1(June), 0600UTC.
  • Wind: No Information
  • Visibility: 3000 metres 
  • Weather: thunderstorm with rain 
  • Cloud: a few clouds at 1000 feet with cumulonimbus 
  • Cloud: broken at 800 feet
  • Temperature: 24 C 
  • Dewpoint: 24 C
  • Humidity: 100%
  • Pressure: 1007 hPa
  • Remarks: Cumulonimbus to the northeast
No wind information suggest that heavy localized weather pattern may be a factor.

Updated 0708UTC. Added Flight Number, Phase of Flight, Flight Schedule, Time of Accident.
Updated 0725UTC. Corrected minor details.
Updated 1355UTC. Crew composition update.

Tuesday, May 29, 2012

Why both hardcore A320 and B738 fans hate me!


I loathe Airbus versus Boeing debates. Yes, I hate it with a passion. In online forums, by the time you get to a dozen replies, the hardcore fans (ie: blind believers) start hijacking the topic with marketing gimmicks and junk and both sides try to drown out the facts (because it simply doesn't suit them).

One day, I decided, I had enough! I did a fuel burn comparison between the 737-800(w) and the A320-200 (Both CFM56-5Bs and IAE V2500-A5s). When I post them on 737 vs 320 debates, the comparison would either kill the discussion (because the fanatics have no room to wriggle), or it ends up being a slag-fest of outrageous claims.

Let's look at the comparisons:

Max Capacity Fuel Burn:

Simple, A320 wins on the trip burn, but 737-800 can get more seats in so the fuel burn per seat is lower in this aspect.

180 seat and 165 seat capacity or load fuel burn:

Once you go above 500NM, the IAE powered 320s, win. The CFM powered 320s, starts to win above 600NM.

100 seat load fuel burn

This shows that whilst the A320 would win over 600NM (again), its heavier airframe does penalize fuel burn for the shorter trips.


20-ton payload fuel burn

I did this because airlines do not solely look at cost per seat. Cargo, is an important source of revenue on passenger flights. So a Payload based fuel burn comparison gives an idea on how much profit one can make.

Notice that the IAE powered A320s, now start to win at a mere 300NM trips, whilst the CFM powered ones (again), need 600NM to start getting the edge on the 737-800W.

Time Comparison
Self explanatory

SO WHICH ONE IS BETTER?
Answer: IT DEPENDS.
If I have an airline operations where my routes are predominantly 350NM or less, in terms of fuel burn alone, I'd be called a fool to start chosing the A320 with CFM56s. If my routes are predominantly over 500NM, again, I'd be called a fool if I choose the 737-800W.

But, we know that it is not that simple. After all, we still see 737-800Ws being churned out from Seattle, and the A320 with CFM engines are still selling well.

If fuel is cheap, by all means, go for the 737-800. If fuel is expensive, the A320 with IAEs do look attractive. The good news is, fuel price is an important factor, but is not the only important factor to consider. Maintenance cost is another major issue. The CFM56s are dirt cheap to maintain in comparison to the IAE V2500s albeit more reliable and durable, but the airframe maintenance costs are very similar between the A320 and the 738. This is also reportedly true for the price of the engines.

Of course, there are a myriad of other factors to consider too. At the end of the day, which one has the edge, could be determined by something as simple as who sneezed at the wrong time during the price negotiations!

Thursday, May 24, 2012

Kill the drag!


A Taliban drag queen being escorted by Afghan forces to face justice!

No, the drag queen is just a joke, I'm talking about "winglets" and why is there such a variety?

In crew talk here, a winglet refer to two things.
1. That wingtip thingy-magic that's supposed to make our flights cheaper by saving fuel.
2. Male F/As that act like drag queens (ever seen one with his arms out to his sides and both hands pointing upwards when greeting you?).

It's no brainer, I'm not talking about killing male F/As that act like drag queens (even though I don't want to be locked up in a hotel room with one). I'm talking about our basic need to save fuel!

I'm not going to talk about the history of the aerospace engineers conjuring up funny equations. I'm also going to talk on the business side. The truth in the history of the winglet that we know today, is that no one cared about drag reduction wingtip devices until Iran decided to get people to think about fuel savings (if there's one pariah we need to thank with today's improved fuel efficiency technology, we reluctantly have to thank the Ayatollah).

Let's start with a little aerodynamics though. We don't put these things up just because they look pretty.

Where does the drag come from?
Lift for an aircraft is created because the lower side of the wing has higher pressure than the top. All sounds nice and dandy, but what about on the wingtip where both the upper and lower sides meet.

Tip Vortex by Citizenhom (Creative Commons)

Air is like a fluid, it always wants to move from high pressure to low pressure. So, the high pressure air near the wingtip, spills over to the lower pressure air, hence air from the lower side moves to the upper side of the wing, and as it moves forward, it creates a vortex behind it.

This creates drag... the vortex sucks its energy from the airplane, causing it to be less efficient.

Photo by NASA

As planes go higher and faster, this drag, increases. Scientists and businessmen in the industry agree to do one thing... 

KILL THE DRAG

Thanks to rising fuel prices since Iran fell, the urge to save fuel consumption continue. The old days of flying fast is long gone as it takes a lot of energy to punch an airplane through the air at high speed. Flying slower reduces the energy needed, hence lower fuel consumption. Unfortunately, lower speed means you've reduced the aircraft's total drag, but increasing the percentage of wing-tip vortex drag out of the total drag.

You can fight this drag by various means:
1. Increase the wing span whilst maintaining the aspect ratio. This reduces the lift-induced drag (including the wingtip vortices), but the question is, just how wide do you want the wingspan to be? There's a limit to this, both economic and structural constraints.
2. Optimize wing loading distribution by concentrating the lift nearer the body of the aircraft, so that you can afford minimum pressure differential at the wingtip, but this has manufacturing and maintenance complexities.
3. Put up a barrier!

Wingtip devices, are method number 3.

1. Containment method.
Ever seen a downward facing wingtip? This is made to contain the air from spilling over to the side. This is effective for slow speed aircraft, but for high-speed aircraft such as commercial jet, most of the spillover happens behind the wing, and the vortices are much much larger than the downward wingtip.

2. Wing-tip Fence like you find on the A300-600, A310-300, A32X family (except A320-100) and A380

Photo by: Joe Roland/V2 Photography
  • Method: Putting a small vertical fin at the wingtip, reduces the vortex effect. The small size focuses on the small radius high speed wingtip vortex which is the major component of wingtip vortex drag.
  • Benefits: Drag reduction at low weight penalty therefore still suitable for short flights. Small size does not affect crosswind landing/take off limits. Minimum interference drag too!
  • Problems: Not effective for speeds significantly higher than wing's optimum speed as the vortex size will render the fence useless. However, the Airbus use supercritical wings which makes its optimum speed on the higher end of the operating envelope.

3. The Standard Winglet like you find on the 747-400, A330 and 340

Photo by: Joe Roland/V2 Photography
  • Method: Adds aspect ratio without significantly adding the wingspan. Just add the span and hammer the tips upwards (sarcasm). The cant angle (angle of the wingtip going up) and the toe angle differs from aircraft to aircraft. The rotating vortex going up is stopped by the winglet, the cant angle will capture this to push the wing up, and the toe angle pushes the flow backwards as a form of, flow induced thrust. As long as the "induced thrust" is higher than the remaining induced drag, this method can be very effective.
  • Benefits: Big boost in aerodynamic efficiency and increases high altitude cruise stall margin. Enables the aircraft to fly higher.
  • Problems: Additional weight is something to watch out for. Interference drag exists (nothing stopping the lower airflow spilling over), and the boundary layer drag hitting a sharp angle will create another vortex.

4. Winglet-Fillet Combo of the MD-11


  • Method: Standard winglet added with a lower wingtip fence below the winglet.
  • Benefits: As per standard winglet but with lower interference drag.
  • Problems: I'm never clear on the penalties caused by this, but many suspect it was never really perfected as it's sole major user in the past, the MD-11, didn't really sell as well as we all expected (but that's another story).

5. Blended Winglet a la 737NG and soon the 320NEO

Photo by: Joe Roland/V2 Photography
  • Method: Same as the standard winglet but is not "stabbed into" the wing, instead, it is curved to eliminate the interference and boundary layer drag. This leaves literally no drag penalties for high speed cruise that dogged the standard winglet and winglet-fillet combo. And oh, yes, it looks good (to the certain extent that it tempted Airbus)
  • Benefits: Self-described in the method.
  • Problems: Weight is an obvious one, especially when deployed on "small" aircraft such as the 737NG. Crosswind limits are affected too, because you're basically adding two big sails on the end of the wings. The curve also require wingspan increases before you even go to the winglet. This eats gate space.

6. Raked Wingtips a la 767-400, 777-200LR/-300ER, 787-8

There's a pair of raked wingtip somewhere in this photo
(photo by: Joe Roland/V2 Photography)
Designers have long thought on how to reduce drag for more than the 3.5 % (wingtip fence and standard winglet), 3.75% (the winglet fillet combo) and 4.5% of the blended winglet. (Note. these numbers are just rough and I forgot where the numbers came from!) They broke the 5% barrier with the raked wingtips.
  • Method: Higher sweep angle at the wingtip than the rest of the wing.
  • Benefits: Increases aspect ratio & reduce lift induced drag, by spreading the wingtip longer with the higher sweep angle. This has the same effecft as the winglet and blended winglet without reducing the crosswind landing and take off limits. It is also surprisingly, not heavy!
  • Problems: Gobbles down gatespace like no other wingtip device because it really does increase the wingspan, this is why the 787-3 was designed with a winglet and not a raked wingtip.

But that's not all! Don't forget the other ideas:

7. Non-planar wingtip
This is a collection of various ideas. The A350XWB will use this by combining the blended winglet and raked wingtip idea. Another non-planar wingtip is the spiroid winglet. Aviation Partners (who designed the blended winglet for the 737NG) is researching this on some bizjets, and have reported reduction in fuel consumption by over 10%, however, it does look strange!

8. The MAX's hybrid wingtip

Lucky that looks don't always match aerodynamics
(image from Boeing)
How do you expand a wingtip fence, to become some form of a blended winglet without the weight, but also reduce the interference and boundary layer drag common to the winglet and winglet-fillet combo? Simple, you get a winglet-fillet combo, and hammer it to pieces till it's all bent with no sharp corners! The improved performance over the blended winglet, is around 1.5%, and you don't get the gate space growth associated with the raked wingtip. The only problem is, it looks ugly!

ENOUGH WITH AERODYNAMICS! What's in it for the passengers?
Let's start with what you don't want... 
  • Additional advertising space on the winglets (not available on raked wingtip). 
  • Lower costs. Let's admit it, fuel is just too damn expensive now, so reducing fuel burn by drag reduction, is making flights cheaper for us.

BUYER BEWARE! You may not get the results you expected!
I want to focus on the battle of the millenium, the A320 vs 737 war, which the upcoming battle is going to be the NEO and the MAX. I'm well aware of the touted benefits of the Blended Winglet. However the marketing material is so effective that we often forget the reality. We're now seeing 737NGs with those winglets flying short routes.

Here's the bad news from the realists. Short routes with winglets cost more than without! On short routes, climb becomes a greater portion of the total flying time, so does flight time spent at low levels, and it is in these conditions that the winglet's weight can end up as a penalty (climb), or its parasitic drag due to increased aircraft surface area (low level).

I looked at the trip performance numbers of the 737NG with and without winglet. Anything 300NM or less, you'd be stupid using the winglet. Above 600NM, the benefits start to come in. The Airbus A320 however, isn't a loser against the 737NG with the blended winglet, but the comparison between the two, does accentuate one thing: WEIGHT RULES AT SHORT DISTANCES! The A320's heavier airframe lose out on flights below 300NM, but beyond 600NM, it's all up to the aerodynamics and engines, and even with a mere wingtip fence and it's amazing supercritical wings, the 320 (with the IAE V2500-A5s or CFM56-5Bs) beats the 737NG on a per ton payload basis, consistently.

Before adding winglets to your 737NG or A320, consider
the composition of the mission profile
(photo by: Joe Roland/V2 Photography)
Airlines must therefore, when faced with the option to have wingtip devices, take a careful look. How long is their average mission profile? Are the rotation segregable or not between the ultra short-haul and the rest of the aircraft type operations? Does the added weight of the wingtip devices affect the landing weight limitations based on the mission profile to the extent of penalizing payload or not?

The questions to answer goes on and on as fuel prices go up and up.

However, operations department may be churning operating cost numbers behind the scenes, but the airline as a whole must not forget that the profit consists of two components: Revenue and Cost. Costs can be as low as possible, but revenue is also important. That is why, depending on the mission profile, getting a bigger and more aerodynamically efficient wingtip device for your aircraft, may not always be the answer. Operations department must be more commercially aware.

But why am I talking about this when the new aircraft with options to have a wingtip device or not is only the 737NG? Simple, the A320 and its upcoming NEO will have the option of a wingtip fence or a "Sharklet"...

(image from Airbus)

Wednesday, May 9, 2012

4-foot gash to write off BA B734 G-DOCU?

4 to 7 foot gash on G-DOCU (source: unknown)

On 30th April 2012, a British Airways 737-436, G-DOCU, had just completed  performing flight BA2688 from London Gatwick to Genoa Cristoforo Colombo when it collided with a ground service equipment. The aircraft was immediately grounded and British Airways sent a team to Genoa to assess the damage, repair possibilities and aircraft's future.



G-DOCU approaching Gatwick in 2010
Photo by: Martin Stephen / Airliners.net

On a personal note, I am quite surprised that this news didn't make it in any of the aviation news sites, but is being discussed in various aviation forums such as Airliners.net and PPRuNe (click the links to go direct to the topics)






Thursday, May 3, 2012

737MAX announcement: Has Boeing and Airbus run out of ideas?

Boeing has just announced the new design features of the upcoming 737MAX. While I wasn't expecting much, other than the focus being on the new engines and the challenges surrounding putting a larger fan on an aircraft with its short and stumpy landing gear, but I ended up shaking my head in disbelief of the disappointing kind.

New rendering of the 737Max (image from Boeing)

I was unimpressed when Airbus released the NEO, with it's so-called Sharklets. To me, it's nothing but a redesigned blended winglet like Aviation Partner's blended winglet for the 737NG. Yes, the new engine sounds good, but the sharklets? Seriously, I thought Airbus had run out of new ideas decided to copy Boeing... that is, until today's 737MAX announcement.

A320NEO... and we thought Airbus gave up and decided to copy Boeing!
(image from Airbus)

Look, the 737MAX is already overstretching the 60s 737 technology to new ridiculous bounds... but I mean really, it really does look like Boeing has run out of ideas. I mean, look at it: 
737MAX winglets: MD-11 winglets made curvier or
Airbus Wingtip fence bent into a curve?
(image by Boeing & Southwest)
The winglets, it's like an Airbus wingtip fence being hammered till its bent! And then:
Nose blister anyone? (image from Boeing)
Nose blister. Yes, I know it's for the extended nose gear to cater for the MAX's bigger engines, but can't Boeing really engineer a flushed nosegear housing? It looks like a mini A330-200F nosewheel blister on a mini-scale (which befits the smaller size of the 737).

Have both Boeing and Airbus really run out of ideas that they have to start copying each other?

No, I'm just kidding. The MAX's new wingtip is like the MD-11, only made curvier.



Going back to humour, while the A320 NEO is simply an A320 with 737NG winglets, the 737MAX can be basically summed up as a 737 body and wing with:
  • MD-11 winglets
  • Embraer 170/190 tailcone
  • A310 fly-by-wire spoiler system
  • A320NEO engine (in form of the CFM Leap-X)
  • A330-200F nosewheel housing

Hardcore Airbus and Boeing fans are going to have a hard time throwing bricks at each other with the NEO and the MAX, as one can cynically accuse the other of copying due to lack of imagination. The reality is, both Airbus and Boeing do try to push for the best technologies that can be safely put on an aircraft.  But, the development of the MAX and NEO does prove one thing:

There is more than one way to skin a cat...
albeit there isn't much to pick from!

The marketing department of Boeing and Airbus can claim whatever they like when it comes to which one has the best performance. In reality, users know that both make damn competitive narrowbody aircraft, which shouldn't change with the NEO and MAX. Claim all they like, eventually, the certified performance numbers will be revealed in the FCOM2 for the NEO and FPPM for the MAX. If the 320 (with the newer CFM56-3B or IAE V2500-A5 engines) and 737NG certified flight performance numbers are to go by, the edge of one over the other can be as simple as who sneezed at the wrong time during the negotiation process.

As an MD-11 hater, I however, would instead say, "the MD-11 has come back to haunt the skies of the future, in the shape of the MAX's winglets!" Let's hope that the MAX with the MD-11esque winglets don't have the same performance shortfalls as the initial MD-11s...
The MD-11 winglets didn't prevent the performance shortfalls,
will the MAX winglet do better?

Tuesday, April 24, 2012

Sriwijaya's 1st 737-800 finally arrives as 2-class service launch nears

Sriwijaya's first 737-800 finally arrived in Jakarta in the early hours of Sunday 22nd April 2012. The aircraft was delivered from Cairo, Egypt, with Midwest Airlines as the previous operator. The delivery route was CAI-DXB, where the aircraft overnighted, then onto DXB-MLE-CGK.
MSN 28591 (ex SU-MWD) arrives in Jakarta CGK
to join Sriwijaya Air as PK-CLA
The aircraft  flew on 11 March 1999, and owned by GECAS. It has a colourful history, originally starting with Istanbul Airlines as TC-IAH, and transferred to Pegasus Airlines of Turkey a year later as TC-APY. During its stint at Pegasus the aircraft also saw service for Khalifa Airways under wet lease, and finally left Turkey on 30 May 2007 and joined Futura as EC-KFB until the latter folded on 9 September 2008. The aircraft saw service briefly with Axis Airways as F-GZZA from 30 March 2009 until 7 Dec 2009 when that airline too ceased operations. On 10 June 2010 the aircraft joined the troubled Midwest Airlines of Egypt as SU-MWD, before finally finding a new home with Sriwijaya Air, with a new registration PK-CLA.

SU-MWD/PK-CLA enjoying the first
day in Jakarta basking in the sun
The delivery flight have been delayed for a while, due to paperwork for flight clearances on both the Indonesian end and the Egyptian end. But all the wait is now over. The aircraft is due for a C-Check where it will also be painted in Sriwijaya Air's new colour scheme, and cabin to be configured with 8 Business Class and 168 Economy.





All of Sriwijaya Air's 737-800s will
operate in the new colour scheme
Sriwijaya Air's launch of the new 2-class service is now overdue to delivery delays of SU-MWD and the recent arrival of an ex United/Continental 737-500W currently undergoing cabin reconfiguration, repainting, and C-Check. The 2-class service launch has been revised to (15 May 2012. All 737-800s and 737-500Ws will be reconfigured with 8 Business seats and the rest of the cabin in economy. Several aircraft in service have already been configured ahead of the new service launch. According to the website CH-Aviation, Sriwijaya Air reportedly has also leased 2 737-800s from TUIfly in Germany but the delivery dates are not yet known as both aircraft earmarked for Sriwijaya are still flying with TUIfly.

Several Sriwijaya aircraft have already been fitted with 8 business
class seats prior to the 2-class service launch.
The Indonesian airline industry continues to grow but as capacity boosts are accelerating, we are seeing increased differentiation on the service front. The airlines realize they cannot continue to rely on competing similar schedules and prices as fuel price continue to rise. While Garuda have focused on the premium sectors and reactivating its low-cost arm Citilink, low fare giant Lion Air's past failed experiments have resulted in creation of its premium sector carrier, originally dubbed Space Jet and currently reported to be called Batik Air. Sriwijaya Air as so far enjoyed the "middle ground" between the premium carriers and the low fare / cost carriers, but it is a place it shares with Batavia Air. Batavia Air itself have launched widebody service to Saudi Arabia and select domestic destinations with mixed results, and have recently announced it will postpone the start of the service into Tokyo Haneda citing fuel prices as the reason.

Rather than rushing into its next strategy, Sriwijaya have over the past two years formulated a plan to continue dominating the middle ground. Now that the aircraft it needs for the expansion under the new strategy begins to arrive, it's going to be an interesting ride for this "traditional carrier."

Saturday, March 10, 2012

Koito seat saga continues with United (Continental) 737NGs

We expect that most new 737NG deliveries out of Seattle would have the new Boeing Sky Interior, right? Well, we got them, complete with the colour LED sidewall and ceiling lighting that are supposed to "enhance the Sense of Spaciousness", 777-style overhead bins, etc, etc. Well, I'm not going to bother with explaining the Sky Interior, just go and see it here:

Boeing 737NG Sky Interior
(Photo by: Boeing)
Besides, Airbus has delivered colour LED Mood Lighting and touchscheen cabin controls for the Flight Attendant before Boeing did for the 737.

United/Continental 737-900ER with Sky Interior
(photo by: Boeing)
The brochure sure look nice, to enhance the passenger experience, for leading airlines, we expect to see other gizmos such as PTVs and power socket. I'm not going to complain about Lion Air not having that, it's not their business model (not yet anyways), but on Continental/United? Yes promised that. Let's see how it looks:

We see the new sculpted window, the colour LED ceiling and sidewall lights, the 777-style overhead bins.


Oh yes gotta love the blue LED colour... BUT WAIT! Where's the PTV and power outlet? Why is it not there?

Where are the PTVs and power outlets?
(photo by: NYCaviation)
If you ask the Airline Passenger Experience (APEX) writers, you get one simple answer: KOITO.

In December 2011, I thought the Koito saga had ended. We all remember and was shocked by Koito aircraft seat scandal that happened in the last 2 years, when they admitted to falsify seat test records for certification. Some screamed "murder", and Koito divested it's aircraft seat unit to save the rest of the company. APEX's Mary Kirby in March last year (when she was still at FlightGlobal) warned in her video blog that all seat manufacturers are scrambling to meet orders from airlines trying to replace their Koito seats immediately.

One victim of this, is Continental. As Continental scrambled to replace the Koito seats for their 737NGs, they selected BE Aerospace seats, and they got them fitted in time for the ones with the new Sky Interiors. Except for 1 problem, whatever seats BE Aerospace could deliver in the scramble order, didn't have certification for power sockets and PTV installations.

Reading NYCaviation's "United Sky Interior Surprise", BE Aerospace said it would take them 18 months for the seats that were delivered to United/Continental 737s with the Sky Interiors to be certified for PTV and power socket.

But don't worry, certification is ongoing and should be complete by end of 2012, and then retrofits can start.

I guess I was wrong when I thought the Koito saga had ended.

Thanks to Will Horton (@winglets747) for his tweet and Mary Kirby (@APEXmary) for her stories on Koito in the past.

Monday, January 2, 2012

The last incident of 2011?

UX1900 / EC-JHL on the mud in CDG
Click for full sized image on Airliners.net

On 31 December 2011, Air Europa Flight UX1900 flown by EC-JHL (737-85P) landed normally at Paris CDG, and then, somehow, ended up on the mud outside the runway.

Two questions popped in my mind:
  • Was this the last accident/incident in 2011?
  • Was 2011 the year of 737-slipping (operationally and commercially) ?


Sunday, January 1, 2012

5 years since Adam Air 574...

Rest in peace to those on board KI574... a tragedy that was so mysterious, so baffling, everyone thought it was either an extremely rare technical defect, or something supernatural.

Unfortunately, the truth was somewhat very basic... human error, and a type of human error whose extent of damage and destruction has never before seen in the industry caused by pure and simple greed.

Aircrash Investigations S7E7
"The Plane that Vanished"

So, five years on, have we, the public, received what we deserve? Have we got "a safe and reliable means of air transportation?" Things have improved, but there is still a long way to go.


See my involvement in the episode. May we learn from those mistakes!


Edited 7May2012 - Revised Video Link.