(www.heartaerospace.com)
I wonder, if this can get approved or certified somehow now, if then modifications and improvements are relatively easy, as long as many aspects like the pilot interface stays the same. Battery technology improves constantly after all.
As an example, going from the current 200 km range to 400 could make it very useful in numerous regions certainly.
I was wondering how they're gonna deal with alternate airports and "fuel" reserves, but it seems they also have generators on board (supposedly used in case of emergency / unplanned detours).
I wonder if there is a possible future where some sort of commercial long haul flights could be done by a fully electric plane. I've never gotten a great answer on this, and maybe we don't have an answer for certain since battery chemistry is some sense is still early days
Perhaps if solid state batteries become cost effective to produce at scale that would change the feasibility, but someone else would have to chime in there.
It's fun to look at the arithmetic behind this to pull out the assumptions. To lift a 25000 lb mass 1100 ft in the air requires just over 10kWh, but that's assuming no air resistance or friction, so let's triple the energy needed to 30 KWh.
Let's add another 10 kWh for forward distance covered (assuming it was mostly gliding). Then let's pad it up to 50kWh for anything else. If they say that was $5 in electricity that implies an electricity price of $0.10/kWh, which is possible with utility scale solar.
I'd guess the actual flight time was only 10 of the 27 minutes, 30 kWh used over 10 minutes is 300kW of peak power.
300kW seems very low compared to equivalent jet powered planes, which output an order of magnitude more power for a 30 seater plane. Even if the electric drivetrain is far more efficient than a jet engine it stretches credulity.
Which of my numbers is off?
Finally, I think you might be still high on the power cost. $.10/kwh is retail cost in the PNW, they might be, um, bullshitting a little and have purchased power at a very good rate at a particular time just so they could say $5. They didn't say every flight would be $5. So energy could have been 3x more than you estimated.
I'd love to see something that can do around 250mi. It would be nice to electrify transit in the Texas Triangle if we end up never being able to actually build useful HSR.
I wish them luck on continuing to try!
Booze Cruise aka "Winetasting" for the tech crowd
Fly sustainable, guzzle some fermented bio grapes, ...
Your DEN to COS suggestion would probably be quite popular for skiers coming in that want to avoid renting a car and would enjoy the electric hop to avoid a 2hr drive.
The real winning route would be two airports separated by ~100miles that still have a 3+hr drive, or two small regional airports where security time is negligible (that's certainly NOT O'hare, in my experience at least lol) Flights leaving GRB to northern Michigan would be perfect for this though since the alternative is to drive around Lake Michigan.
ORD to MKE is reasonable as part of a X -> ORD -> MKE one stop; at least when I was using MKE, I'd always need a stop (Midwest was too expensive for me) and ORD was an option, although I think I always went through DFW or PHX.
See also: Boston and NYC to Cape Cod and the Hamptons.
The electric/green angle helps with these kinds of routes too.
It's about feeding the existing network. Millions of people in the US live in places a 2+hr drive to the nearest major airport, but have plenty of smaller municipal fields nearby. Electric aviation could finally make it profitable and cheap enough to run those routes. It also opens the door to true commuter aviation becoming a thing, when you can offer short flights for the cost comparable to a train ticket, and operate out of small fields with small planes multiple times a day and no need for the whole TSA experience.
If its >2 hour drive to the airport this plane probably isn't going to take you there on pure-electric power, that's my point. If you drive 65MPH for two hours, you've gone further than this thing can fly (on pure battery).
https://investors.beta.team/news-events/press-releases/detai...
that could make it much more convenient and appealing as a travel method
By comparison, a regular regional jet probably has around 40 MWh of energy in jet fuel.
It would really suck to have to go through security after your first flight whenever you are connecting.
Even if the batteries could be made entirely inert, the ability to deliver a plane sized slug of kinetic energy to a building of your choice retains most of the danger.
Even if that could be avoided, a plane must remain operational enough throughout all flights to avoid falling out of the sky.
It would take a large bomb to take out a whole bus load of passengers, a very small one to put safety critical systems of a plane out of action.
As much as I would appreciate this happening, I don't think electric planes are going to make it happen.
Nit: a lithium ion battery fire isn't a lithium fire, it's the electrolyte. Lithium ion batteries don't use elemental lithium. Thankfully.
Gasoline on the other hand …
Plus, depending on the battery chemistry, that material could also create a serious fire; it is a lot of stored energy either way.
So, I would not wait for it
You better start working on them now if you want them to be ready when they'll make economical sense, which might be in a not so distant future
Even if the initial cost of an electric plane is higher than a combustion equivalent, the cost of the aircraft itself is only 5% of its lifetime cost. So an electric aircraft's purchase price could be twice as much and still represent a cost savings for an airline. And that's not even counting other advantages such as reduced maintenance needs for EVs.
And for medium haul they make sense if you can get beamed power working.
Napkin math:
(27 minute flight) * (25000 lbm TOGW) * (Earth gravity) / (~10 average L/D) * (160 KTAS average) / (70% propulsive efficiency) / (97% coulombic efficiency) * ($50/MWh) = $30
(Add residual kinetic energy upon landing too)
Side note: Heart also has a weight issue here they'll need to overcome if they want to certify under FAR Part 23 (as their 19-pax spec implies); TOGW limit for that is 19,000 lbm.
Are you literally paid for agreeing to receive the energy?
I'm not sure I understood this sentence?
On an electric grid, Supply and Demand must meet. When demand is low, you either reduce supply or increase demand and sometimes it's easier to increase demand.
Also, if you're supplying electricity, you may have reason to supply it even when the wholesale cost is negative. If you have production incentives not included in the wholesale price, you can be profitable at negative wholesale prices. (Things like green incentives, or base load incentives, or long term supply price guarantees)
If significantly reducing your output takes time or causes operational difficulties, it may be sensible to deliver at negative prices as you taper off. If you have a fuel shipment inbound and nowhere to store it, the negative wholesale price may be less expensive than cost to deal with the storage logistics.
Sounds like a great deal right? But now you’re on the hook for receiving and storing that oil. That costs money, it’s not free. That’s why the price went negative - the seller was trying to offload and there were no takers at $0.
Further, noise restrictions will probably limit VTOL's to airports, never underestimate the NIMBY's. Note that demo videos of eVTOL's almost always have background music rather than ambient sound.
VTOL have other advantages of course in terms of operational flexibility, but where there's existing airfields, fixed electric would be more efficient
Also, at the size/scale of this aircraft (thirty passengers) any type of VTOL wouldd be even less practical
But a way worse record when compared to the fixed-wing C-130.
Both comparisons are per 100k flight hours.
Some of that risk can possibly be mitigated with a rotating engine, but fixed wing, similar to the Bell Valor. Possibly, because AFAIK, the Valor is the only plane like this and it's just a PoC.
They could also use electric tugs to and from the runway, not just at the terminal.
"Largest" is just straight-up a false claim. [Solar Impulse](https://en.wikipedia.org/wiki/Solar_Impulse) and [Helios](https://en.wikipedia.org/wiki/AeroVironment_Helios_Prototype...) were electric and had over double the wingspan, just to name a few of the ~dozen examples.
Heart's engineers should be proud of this genuinely impressive accomplishment, but they need to rein in whoever is writing their PR pieces.
Largest in terms of takeoff weight. Wingspan is a pretty meaningless metric for "largest aircraft". By that logic the planes you linked are larger than a 737.