Ural Airlines is preparing to fly a stranded Airbus A320 out of a field
simpleflying.com
simpleflying.com
If its insufficiently flat wouldn't it make more sense to smooth out those parts of the field, rather than "paving" the whole field with steel mats?
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The road gets warm in the winter, even at -40C, if there is a lot of traffic. Snow is smushed, it is warmed by the tires, due to friction, and even sublimation happens.
If there is enough traffic, frozen ground can become thawed. Especally at a mere -10C. The dirt road in front of my house confirms this in winter, with potholes and wet spots, and not from salt.
Landing events have even more friction. And many aircraft are far heavier than cars.
Rare teaffic would be fine I guess, but a mildly busy airfield might be different.
Flattening frozen ground seems significantly more difficult than just laying down panels.
[1] https://www.independent.co.uk/travel/news-and-advice/antarct...
However, where the weight itself is an issue, Indian Airlines (now Air India) ordered some A320s with beefier landing gear precisely to operate something that heavy off of less than great paved runways.
Ural's not going to have much in the way of manufacturer support though so their options are a bit limited.
And "normal" C-130s and C17's can land too (I've been on both to McMurdo...)
But this is a packed snow runway. Williams Field is for ski-equipped aircraft only, I believe.
Incidentally, my grandfather was a radio and cryptographic technician who was primarily forward deployed to such minimally-prepared, temporary fields while graders were still leveling the ground.
Some information here:
https://web.archive.org/web/20170606073832/http://www.thinkd...
It left once I pulled into my driveway.
Concorde used to miss my roof by a very short amount when it would land on the runway, and everything would jiggle off my shelves.
https://aviaforum.ru/threads/metallicheskie-vzljotnye-polosy...
It's the axis intercept that's most bothersome.
Real quote from my grandmother: "I'm not afraid of flying or anything. I just wish they didn't have to get so close to the ground before landing!"
These books describe every possible failure and respective diagnostic and repair procedures. Multiple planes of this type have been broken on purpose in different modes to figure out what can be bent where and by how much before it becomes a problem. Planes roll out to the soft ground and ingest foreign objects every year, the kind of strain increased rolling resistance does to the airframe is nothing new, there are well defined procedures to getting the plane back on deck.
1) There's plenty of reasons their planes could go bad without landing in fields. If they want to make sure this particular plane is fit to fly, they can.
2) Iran has been doing that for decades now.
Difference in if that was '99 Corolla or '95 F40
"This plane ran off the runway in any icy landing in Minneapolis back in '06" "This plane was decommissioned and sat idle in the desert for 15 months between owners" "This plane was used to evacuate US government workers from Afghanistan" ... Although I wonder how many would just be something boring like "this plane was delivered 2 years ago and has been in routine, problem-free service since".
"An international celebrity once lost their pet chinchilla on this aircraft."
https://news.ycombinator.com/item?id=37691057
I would suggest you _not_ read it if you _don't_ want to learn how they will frequently have planes completely dissembled and repaired right under the eyes of waiting passengers. They even cover up company logos and plane identificaiton numbers so people like yourself don't feel unsafe in a recently repaired plane.
Planes you fly in will have many repairs. Standard repairs. One-off repairs. Completely custom engineered repairs.
An entire book of all the modifications from stock that has accumulated over the decades accompanies each plane.
Airplanes and cars are regulated as differently as cars and watermelons. If an airliner literally encountered phantom electrical issues it would be grounded immediately, and they’d be fixed — that’s the point of all the civilian infrastructure, like the FAA, that we’ve built up around air travel. I know, it’s not perfect, there are mistakes and sometimes corruption, but for the most part it works. Many parts of every airplane in the sky have been replaced multiple times. It’s the only way they work.
I have found an article https://www.reuters.com/business/aerospace-defense/aircraft-... about AerCap receiving 645 million dollars for 17 (or 18?) aircraft used by Aeroflot, but Ural Airlines being independent of Aeroflot, I don't think this plane is part of that agreement.
Not necessarily - I'm no aviator but from my understanding even if there are non-functioning systems the airplane can still fly: https://www.aviationsafetymagazine.com/features/inoperative-...
Here's an example of where that went wrong: https://youtu.be/iMMQ6-OfnL0?t=729
Although I do agree that the aviation industry takes safety very seriously.
The manufacturer tells you how many flight cycles the airframe is certified for because they know how much stress cabin pressurization, takeoff, and landing have on the airframe and how long it will take to start developing cracks due to metal fatigue.
In fact they even have specified procedures for hard landings, gear failure landings, excessive G-load events, etc. Such things require specific inspections of specific areas, have specified tolerances for torsion/deformation, and in some cases they reduce the airframe's remaining service life. For example with high-G load event the mechanics must measure the angle of the wings and if there is more than X permanent deflection of the wing the wings must be repaired/replaced.
Emergency landing an airliner in a field is absolutely one of the scenarios covered by both airframe and engine manufacturers. They will have specific maintenance items to check for that along with advice on taking off from the field. I don't know about Airbus but Boeing even offers test pilots and emergency maintenance mechanics for such scenarios. If the airline pays Boeing will checkout the plain, make required repairs, and have their best pilots fly it back to your maintenance depot.
[1] https://www.reuters.com/business/aerospace-defense/delta-say...
https://aviation.stackexchange.com/questions/39237/why-do-so...
I want video... from the cockpit!
A. Lighten the load as they're already doing.
B. Prep the runway surface with steel matting and wait until the time of year when the soil is hardest. (January)
C. Field (literally) replace the main gear with double bogie assemblies borrowed from Air India.[1] The single bogie gear risk collapse or sufficient rolling resistance preventing attainment of V1.
D. A rejected takeoff (RTO) contingency plan. Firstly, the runway surface should be twice as long as anticipated. Secondly, firefighters should be available to extinguish brake fires to prevent any wildfire or airframe damage.
References:
1. https://www.airliners.net/photo/Indian-Airlines/Airbus-A320-...
Letting air out of the tires and going now isn't a viable solution because they're going to land on a regular runway. They'll wait for winter when the ground is harder.
And they better plan for EMAS at the end of the usable length of this or that plane is likely to skid off into the woods.
Interesting read: Improving Construction and Performance of a Runway in Nuiqsut, Alaska. ASCE. 2021. https://ascelibrary.org/doi/10.1061/9780784483589.026
Plus, the ground is frozen 1 m deep by January. It's hard enough for one take-off roll.
Edit: [0] - thx to commenter below for the reminder it was big bertha (aka the 747 Dreamlifter) and not just a 747. Been almost a decade and I forgot.
https://simpleflying.com/boeing-747-dreamlifter-wrong-airpor...
Good luck to the pilot though -- if it doesn't work the result could be fatal!
<https://www.aviacionline.com/2023/09/mission-accomplished-ca...>
> Following an on-site engine replacement, the jetliner took off from Saturn
> Boulevard, a road which had previously been an aircraft runway at Michoud.
> The aircraft was subsequently repaired and returned to service until it finally
> retired in 2016.
From the linked Wikipedia page, which explains why the takeoff wasn't as wild as it first seemed.
A mile of roadway costs ~ $1M to pave: https://www.roadbotics.com/2019/12/18/how-much-does-it-cost-...
Unless they pave 1 mile of runway to accommodate this, I anticipate this going pretty poorly. A quick search prices A320s at around $100M, seems worth the effort.
Give it another month, then we're talking.
> The original construction of the runway was done over two years and accomplished using a laser cutter to level the blue ice near the station [...] Finally, two snow groomers with tillers grind a small layer of ice to create a top layer of crushed snow and ice that gives the runway the necessary friction for aircraft to operate.
https://www.flightradar24.com/blog/troll-research-station-ho...
2) snow will also cover the surface, and it's not slippery.
But when it hits, it happens quickly. Every year people dogsled on a lake outside Whitehorse, Yukon in November. Often it's pure liquid on November 20th, and yet they will dogsled on it before the last day of the month.
https://en.wikipedia.org/wiki/Novosibirsk#Climate
My summary on flying the plane on Stackexchange: https://aviation.stackexchange.com/questions/101015/how-can-...
Or to put it differently, the only treadmill an airplane could take off on would be the length of a runway.
That's effectively an aircraft carrier's launch catapult.
Of course you could imagine a situation that's not analogous to the car at all, in which we just dictate that however fast the treadmill needs to move to exert a force on the jet equal to that of the engines, it will move that fast. That means we've defined the situation in just a way that by definition, the airplane will not be able to move forwards. What most people don't realize, though, is that doing this is not like stopping the car on the highway. In fact the force exerted by the ground on the wheels during takeoff is so small that to effectively stop the plane, you'd have to spin the treadmill fast enough to destroy the wheels and carriage. And maybe even that wouldn't do it!
The second paragraph checks out: with a realistic plane on an unrealistic treadmill either the wheels will fall off or the treadmill will produce enough airspeed to lift off the plane vertically up.
They certainly do. First, they need it to get the pointy end airplane pointed in the right direction. Then, they need it until they are going fast enough for the rudder to work.
(Might a glassy-ice surface, created with pumped water, under durable winter freeze conditions be ideal? Does a jet need – or even necessarily want – any ground traction to take off?)
in that region, maybe they get enough snow that they don't need to truck in water....
Ground traction is, however, quite useful in aborting a take-off.
One person proposed coating the runway with linseed oil to keep the ice from forming. Desperate, the AF tried it.
It did keep the ice off. However, the first jet that rolled onto the runway and came to a stop, slowly but surely slid off the runway. Then they had an even more expensive operation to remove the oil.
Some traction is needed until the airplane is moving fast enough so the control surfaces work. Otherwise, off the side of the runway you go.
1. pilots aren't trained to do that
2. the engine response to changing throttle positions is pretty slow. Imagine trying drive a car when you turn the wheel, and ten seconds later the car starts to turn
3. the pilot is already very busy during takeoff
(I kid, I kid...)
Traction is needed to fight crosswind.
sorta related:
I still suspect someone at Airbus AIRTAC is probably shitting themselves over this because some day this will come back for maintenance...
https://aircraft.airbus.com/en/customer-care/aog-and-aircraf...
There are very good reasons things didn't go that way. But, as is often the case, the original vision had a very pure and strong idea in it that has been somewhat lost. It's still alive in helicopters, and some other air vehicles, but it'd be cool if future aircraft were more robust in this way.
You need to disassemble the plane afterwards (a routine operation, gliders are built that way) or possibly even have a powered airplane land nearby and aero-tow you back up if the field is good enough for that. :-)
The modern equivalent to a Wright plane would be something like a paramotor: https://www.youtube.com/watch?v=rvQ9DjJNal0
Both are just following laws and rules in their respective jurisdiction.
And with western countries confiscating assets belonging to private citizens just because they have Russian citizenship (with only tangential relationship to Russian government and zero influence on Ukrainian war), EU/US are not exactly in a place to get on high horse.
Get a couple of steamrollers on the scene, flatten out a couple miles of dirt and wait until the weather cements any would be debris onto the ground.
1. Lift plane up real high with helicopters
2. Start up engines
3. Detach
4. Either fly home or ride to Valhalla
/sRussians are likely the people who have the most experience with that so far, and they opted for other solutions despite throwing spaceflight-money at the problem:
https://www.buran-energia.com/documentation/documentation-ak...
Maybe with modern technology and computer-controlled flight it could be made safe, but getting into that would completely defeat the point, which is to find a cheap way to move the plane.
If would be in the need of a good Valhalla track, I would volunteer for the airstart of a civilian pax hauler brought airbourne by a pack of Mi-26s
Glide restarts of engines are possible (if not core locked) but it also isn't something done very often.
IMO the bigger problem would be needing multiple helicopters pulling together - wind or the jet's engines might pull the helicopters enough that they'd crash into each other, & you'd definitely want to start the engines before freefall..