posted in Technology
First test flight of largest all-electric aircraft used just $5 of electricity
arstechnica.com/gadgets/2026/08/first-test-flight-of-largest-all-electric-aircraft-used-just-5-of-electricity/posted in Technology
First test flight of largest all-electric aircraft used just $5 of electricity
arstechnica.com/gadgets/2026/08/first-test-flight-of-largest-all-electric-aircraft-used-just-5-of-electricity/Replying to @FoxtrotDeltaTango@sh.itjust.works
i just got back from a week in bali. we rent a mini ev 2 person car to get around and in the span for the whole trip we literally spend $0 because we charge them off the wall plug of the villa we stay at
but if we want to be pedantic the car is Wuling airev and iirc it has 17 kwh of battery. that is quite enough for us for the whole week, we only need to charge it once at 60%. so lets say its around 7 kwh. in Indonesia a kwh cost around $0.1. so for a whole week it only need less than a dollar for ‘gas’
An experimental plane to help develop a future hybrid still another experimental phase away that will still be limited to regional travel due to autonomy issues. Still pretty awesome, but still some time away.
I really hope this will catch on for once, it could be a great solution for all those people who insist they have to do domestic flights… (in countries like Germany which aren’t that big comparatively speaking)
Replying to @FireWire400@lemmy.world
Yeah unfortunately this is only viable for extremely short flights 100-200 miles as the article says. Batteries are just too heavy and planes needs too much power for anything more.
These would be the perfect private jet for the ultra rich who take a jet to work a few minutes away, or to go shopping, but for commercial flights they’re basically not an option until we have a huge breakthrough in battery tech. We need the mythical “coming next year” for the last 20 years “solid state batteries”.
IIRC take off and landing is using a huge portion of the fuel needed in regular planes. If you can use this new technology to do those manoeuvres, it would also be a big win for general flights.
Yes and hopefullybreduce pollution and noise levels around airports
Yeah that’s it. It’s not a matter of “catching on”, it’s a matter of better battery tech emerging which is more affordable.
Personally I think high speed rail is a better bet. All the tech already exists and the weight of the batteries is less problematic.
Replying to @FoxtrotDeltaTango@sh.itjust.works
I can understand a hybrid train because of certain sections of track electrification issues and the fact that diesel electric is how even trains that run entirely on diesel operate so you’re essentially just toting around a generator to operate your already electric engine. I understand hybrid cars with regenerative braking and range extension. I don’t really understand hybrid planes.
Like I can imagine electric is more efficient for takeoff because electric engines produce more initial power generally than what fossil can match per engine size(a big part of both hybrid trains and cars both using batteries for initial acceleration) and then you cruise with jet fuel. I’m just having a hard time imagining it is worth it from a defossil fuel perspective or from a straight efficiency perspective.
Combustion engines have maximum fuel efficiency at a specific RPM. A Hybrid has the advantage that you can run that engine at maximum efficiency 100% of the time and using the generated electrical energy to generate motion. The gains by being able to keep the ICE at peak efficiency are more than the loss you take from the conversion. That’s the same principle as in hybrid cars - look up Technology Connections video where he analyzes the behavior of his hybrid car. It is for sure preferable to than just the ICE directly, losing a lot of efficiency and therefor fuel because of differences in needed power output. Combining this into a plugin-hybrid makes - as you said - the takeoff use no jet fuel at all.
This will not eliminate the need for jet fuel, but even a reduction is preferable to the status quo. Until we get batteries that are light enough while keeping energy density at least as high as now (preferably higher), purely electric long-range flight is not an option that’s available.
Replying to @Wildmimic@anarchist.nexus
I don’t think you’ll ever get there for flight personally. Just need to accept synthetic aviation fuel as the only real option for energy density (both volume and weight) and accept certain modalities being absolutely priced out of air transport.
I guess my main issue is you’re now flying around with those takeoff batteries and extra engine components. Is that really ever going to be worth it for anything but those short hop flights this is designed for? And if not why are we even investing in this because those short hop flights frankly need to be eliminated for trains anyway.
But why you dont believe it? OP gave a detailed rebukal of your initial post, and then your answer is “I just don’t believe, just accept that …”
Replying to @son_of_darkness@lemmy.world
You want to know why I don’t believe we’ll get batteries with enough energy density for sustained long haul flight? I was responding to their last sentence. Ya know, acknowledging that batteries more dense than hydrocarbons isn’t really on the radar so for that aspect of things synthetic aviation fuel is pretty much what you gotta accept to go for zero carbon. I had already agreed with them that it’s more efficient in takeoff in my initial post. They just expanded on why. I frankly am perplexed at what you think I’m dismissing since we largely agree.
To be fair, you probably don’t need to achieve the same energy density as hydrocarbons for the vast majority of flights. Yeah, non stop flights from canberra to stockholm or similar distances will probably (at least in our lifetime) always depend on high density fuel. But I can definitely see a near future where 100% of flights on the same continent can be run 100% electric. The energy conversion to electricity is most efficient in power plants and solar, so making sure that as many flights as possible are powered by those sources is for sure something that is preferable to anything we are doing today.
Also, those batteries - after having outlived their usefulness for aviation because of capacity loss - have still a long live in front of them as energy storage for the energy net itself, where a loss of 20% capacity isn’t a dealbreaker. Since the largest issue nowadays isn’t generation of power, but storage of the same for covering nights, building high capacity batteries is a good thing regardless of initial usage.
Edit: WHY the fuck aren’t airports already plastered full of solar cells?
There’s a whole world of use cases between no electric and full electric. Take off and landing is one of the profiles where electrification might be useful, if not for efficiency then for reducing noise and pollution levels around airports.
This article is idiotic.
$5 cost. 25,000 pounds. BUT OVER WHAT FUCKING DISTANCE?
$5 gets me 23 miles in my Delica. It gets me 100 miles on my motorcycle. It gets me 30 miles in my Porsche 914. But the article says nothing about distance.
I’m guessing it mostly flew in circles, since it’s a test flight that happened “at Plattsburgh International Airport” instead of between two locations. 27 minute flight, whatever that’s worth.
$10 an hour still seems really good though right? I’m not sure how much Airlines pay currently for fuel though.
Only article I could find was this: flyinginsight.com/…/how-much-does-it-cost-to-fuel…
On average, a 737 or A320 consumes between 2,500 and 3,000 litres of fuel per hour
Take a typical two-hour flight, such as Amsterdam to Barcelona. The total fuel burn would be approximately 5,500 litres. At a reference price of $0.59 per litre, that translates to around $3,200 in fuel costs.
So that’s $10 an hour down from $1600 an hour? Seems decent.
Yeah except this is a tiny little plane and a 737 is huge. So those comparisons don’t make much sense.
The X1 demonstrator is more comparable in weight and power to an EMB 120 Brasilia, a 30-seat turboprop. Forum chatter seems to indicate those burn around 1000 lbs per hour, or $335/hr in fuel using the $0.59/liter price you mentioned.
Dropping down to $10 is still pretty decent lol
Literally the first sentence:
The first flight of the largest battery-electric aircraft to take to the skies lasted nearly half an hour while costing just $5 of electricity.
Can your Porsche 914 fly for half an hour on $5 of fuel ?
Off a cliff yeah
It would have to be a very high cliff.
Point to me in your quote where it talks about distance.
23 miles lol. For $5 I get about 125miles in my Atto3
With horse power and cargo capacity an airplane has I really doubt it
Replying to @patruelis@lemmy.world
That seems like really bad efficiency, or really expensive power. I used to have a Nissan Leaf that would do over 5 miles to the kW. Even with rather substantial battery degradation, I could get 80 miles to a charge, and a full charge would run me about $1.25 at the local utility rates.
The first flight of the largest battery-electric aircraft to take to the skies lasted nearly half an hour while costing just $5 of electricity. That aviation feat comes at a time when jet fuel prices have skyrocketed because of the US war with Iran.
Did you reply to the wrong comment because you’re quoting time, not distance?