Will we ever fly supersonically over land?
newyorker.com
newyorker.com
There was also a political part involved. The Concorde was a British-French creation, not a Boeing. Had there been a Boeing supersonic passenger plane first there would probably have been different FAA rules. Especially because military supersonic flight happens every day over US land, was never banned, and causes the same boom.
Whilst this was political to some extent the politics were very much local, as in people don’t want to hear booms.
I’d be pisses if jets flying overheard broke my windows once every five years.
Expanding that to all supersonic military aircraft and the Rockwell B-1 Lancer has a higher maximum takeoff weight than the concord. It’s a loud and heavy beast.
So I suppose an artillery shell, a jet fighter, and a Concorde should produce about the same amount of boom at the same speed of, say, 1.5 M, while flying by.
The engine sound of the aircraft, though, can add significantly to the noise in the wake of the boom cone. Those engines are not low-power or quiet.
You need both pressure level (voltage) and momentum (current) in order to stay strong over distances (shock waves diffuse over time) to break windows. Small, super fast things create large pressure differentials, big jets create more momentum.
This does cause some stability or handling issues for the aircraft.
The analogy re: voltage or amperage are spurious and just don’t apply here.
The shockwave generated by a body shaped like an acute cone is a (somewhat less acute) cone with the same apex. Inside the shock wave, the air gradually turns around to move parallel to the body, like so [0]. Each streamline that enters the shock structure keeps turning around, so each bit of air keeps feeling a force even after it passes through the original cone-shaped shock. In the case of a cone-shaped body, the interaction happens to create a single "straight" wave, but it's still generated by the entire surface of the cone, not just the sharp point of it.
As a rule of thumb, the magnitude of the sonic boom is proportional to the weight of the plane. That is because most of the interaction between the plane and the air is from the wing, it needs to continuously deflect down enough air to generate a lifting force. So the total boom has one contribution from the cross-section of the fuselage, and another from the wings, and the latter is determined by the weight.
[0] https://www.researchgate.net/profile/Richard-Benay/publicati...
They are wildly, fundamentally different in behavior.
You’ll notice that supersonic aircraft have different airfoil shapes, different airframe shapes, and wildly different engine configurations because they don’t work the same way.
There is of course air behind the Mach cone, but it is much lower pressure, will often completely separate (airflow wise) from the airfoil shape in ways you would not expect, and the shockwaves/speed of propagation can cause bizarre pressure, lift, and drag issues. You can end up with massive vacuum where you previously had pressure, or pressure where you preciously had vacuum. Transonic flight or high angle of attack flight at supersonic speeds of course produces rapidly changing variations of all these effects.
[https://arc.aiaa.org/doi/abs/10.2514/8.1394?journalCode=jans]
Unlike subsonic flight, the air can’t “get out of the way” in time, leading to potentially catastrophic issues without careful design. Supersonic flight is better categorized as ‘shoving through slow air’ than flight.
What you’re referring to is not wrong - just doesn’t reflect the magnitude of the actual differences
Animals panic when they hear the boom: they tend to stampede, fall off cliffs, break legs, trample each other, lambs get separated, break through hedges and into traffic.
The booms were severe enough to occassionally shatter the Royal Doulton in the house, much to my mother's disgust.
That said, I find it hard to believe that plane travel can be eradicated for e.g. diplomacy. And frankly, if frequent contract between the powerful different countries is needed to avoid e.g. world wars, it's is worth it.
In the short term, any carbon we can capture needs to go in back in ground and stay there. But once we have good good greenhouse gas levels, much of carbon capture tech can be reused to make biofuels. I guess we can reward ourselves with lots of supersonic air travel then.
FTR: Years go by between everytime I travel by plane so I don't feel I have anything to defend, I just think it is good to keep the big picture in mind.
But climate-shaming specifically air travel while at the same time driving a non-electric car or using air conditioning without having solar panels is very hypocritical because both of those and many other things are a far bigger part of the total emissions.
> Hypocrisy is the practice of engaging in the same behavior or activity for which one criticizes another
I never said cars. Cars are terrible. I would not complained if passenger-only cars were banned everywhere.
> Similar for your suggestion that we should take ships over the ocean, because cruise ships are much more polluting per passenger mile than modern airliners.
There are alternatives like wind power + giant batteries. The fact that weight doesn't matter for ships so much (container ships are more efficient than rail, scaling up is equivalent to shrinking the viscosity of water) opens a lot of doors.
Track and right-of-way is a scarce resource with large amounts of embedded energy. The sky, not so much.
The problem most people ignore is that train marginal-increases max-out at some number of trains per day, before you need an additional set of tracks.
And that happens at a much lower number than most people assume, especially if you're planning on sharing that track with other routes. And even worse if you have to use or cross a freight track.
So not only does efficiency have a min bounds, but also a local-max bounds, where you need a large enough marginal increase to justify the additional rails.
Whereas the airline equivalent is whether to schedule an additional flight. Which is easier to commit to than whether a new track is justified.
Except many world's biggest airports, like Heathrow, are operating at peak capacity and building another runway at heathrow is expensive, controvertial, involves relocating people's homes and is still a political football
So it's more appropriate to compare it to part of the station cost, along the lines of another boarding area & track, increasing arrivals and departures.
Multi-track railways are common near major cities. They are not that expensive, because adding another set of tracks increases the width of the corridor only marginally.
The airline equivalent of a new set of tracks is building a new runway. Because that's often impossible, landing slots at busy airports have become very valuable. For example, airlines have paid tens of millions for a daily landing slot at Heathrow.
About a quarter of all railway passengers in Czechia take the suburban trains around Prague.
We sorely need extra sets of tracks from all directions, because the current tracks are overloaded. Especially the faster trains from other regions do not mix well with the regional trains that stop every 2 km or so.
But it is almost impossible to build those extra sets of tracks in a densely populated major city like Prague. Lots of NIMBYs, the needed land would be very expensive, many buildings would have to be torn down, plus the centre is a protected zone (historical buildings) and the protecting authorities fight tooth and nail against anything that changes the look and feel of the inner city.
As a result, we are stuck with old infrastructure even if new one is sorely needed. There might be a way, namely, to build all the new tracks underground - but that would be very, very expensive.
edit: By that I mean something like illustrated here https://ca.wikipedia.org/wiki/L%C3%ADnia_9_del_metro_de_Barc...
Make them 15 to 16 meters in diameter to be usable by any train, or use 2 of them side by side. Problem mostly solved.
Our subway system was rather expensive to build and maintain, doing this with trains would probably be too expensive even for a fairly rich city like Prague.
There are some rudimentary plans for railway tunnels under the very center of the city, but the expected cost is eye-watering.
We're in a phase of low interest rates, resulting in easy money politics. Burn some billions before others do ;->
You wouldn't produce any carbon, because you'd likely never make the trip!
I guess thank god for 9/11 boosting security theater. Don't like all the other patriot act garbage, but the degree to which air travel is so awful really helps here.
It doesn’t seem that all of the unpleasant security theater is enough to significantly deter people from flying.
That's already a thorny subject given that most governments also subsidize food sources that are vastly inefficient and resource-intensive even in cases where reasonable alternatives exist. Meat/dairy producers are still the primary recipients of subsidies in the US and many other countries, at least in Europe.
This number distinguishes between fruit/vegetables and other products, although the article apparently suggests that the use of corn/soy in meat production makes this figure more relevant:
> According to recent studies, the U.S. government spends up to $38 billion each year to subsidize the meat and dairy industries, with less than one percent of that sum allocated to aiding the production of fruits and vegetables.
https://jia.sipa.columbia.edu/removing-meat-subsidy-our-cogn...
Is your preferred solution to let people die in droves to a mass extinction ?
Climate change is not the only, nor the major cause in the current extinction, but it contributes. In a way, this is unfortunate: it would be easier to have only one problem.
The relevant body for scientific information is not the IPCC, but the IPBES [2]. Like the IPCC, it releases reports summarizing the situation and its causes [3].
[1]: https://en.wikipedia.org/wiki/Holocene_extinction
[2]: https://en.wikipedia.org/wiki/Intergovernmental_Science-Poli...
[3]: https://en.wikipedia.org/wiki/Global_Assessment_Report_on_Bi...
[1]: https://www.google.com/maps/@21.1715988,-86.8077681,1041m/da...
People judge these things in terms of how much co2 is emitted by industry, companies, individuals etc. The particular mechanism of emissions is not that relevant. Air ambulance flights are treated differently to private jets carrying bankers.
Turboprops also fly lower, meaning they’re much more affected by en route weather that turbojets can often climb over. (Low and mid twenties [thousands of feet] is where much of the uncomfortable weather is. Storms that rise into the mid-30s are diverted around by most airplanes.)
Turboprops have their place, but so do jets in air carrier ops.
Wow. I read that one plane trip can increase your carbon footprint by a greater magnitude than all your typical actions to reduce it.
Does anyone know where to find some data?
EDIT: Here's some data https://www.bbc.com/news/science-environment-49349566
https://theicct.org/blogs/staff/planes-trains-and-automobile...
Also, planes have other problems:
* cars can be powered by carbon-free energy. There's not much current prospect for planes.
* planes also do great harm from non-CO2 emissions: "The climate effect of non-CO2 emissions from aviation is much greater than the equivalent from other modes of transport, as these non-CO2 greenhouse gases formed at higher altitudes persist for longer than at the surface and also have a stronger warming potential"
Quick Googling doesn't reveal any obvious authoritative answers (but a ton of guessing and unsubstantiated claims). The most authoritative/unbiased source seems to be this Wikipedia article:
https://en.wikipedia.org/wiki/Energy_efficiency_in_transport
But the head-to-head comparisons are mostly gaps when it comes to trains, and the sections on trains and planes are in completely different families of units that makes comparison extremely non-trivial. :(
There's not much generic into about it because every rail route proposal is different, even between the same destinations. Depends a lot on geography and what's already there.
You basically need to do a full Life Cycle Analysis (LCA) for each route.
Sometimes they're included in the EIS for a proposed project. That's prob the best place to start.
But there's a reason most of the rail routes that keep getting proposed in the US are regional. Track and right-of-way is expensive, in both dollars and energy. Even moreso with high speed, where you need grade-seperated crossings and long, wide turns.
Most people think track is shareable or reusable, but the real world limits to track capacity (trains per day) makes economies of scale difficult to implement.
I posted it elsewhere, but the practical limit for non-high-speed rail is 300-400 miles, before airplanes start to make more sense.
High speed is difficult to even estimate, since we don't have much here to base it on.
And when you compare energy, you have to take into account that Rail is already electric, powered directly by grid without batteries or any other efficiency loss in between.
Airplanes use fuel that takes a lot of energy to refine and deliver, and will at best use hydrogen in 15 years which is 40% efficient to produce, plus losses in compression, delivery, engine, etc.
Doing it because China is, isn't really a reason.
You can take into account electrifying rail, but it doesn't really change much. This all gets taken into account.
>other efficiency loss in between.
The grid has plenty of inefficiencies, especially if we have to start designing beyond capacity to account for intermittent sources. But electricity's main inefficiency is in its creation.
LCAs take all of this into account. It's the whole purpose of doing one. Embedded energy involved in manufacture, refining, transport, everything, is all added up based on things like location and present and/or future inputs.
Although I like trains, I wouldn't want to live in such society.
E.g. energy consumption per-passenger-mile for a fully occupied Japanese bullet train while moving at maximum speed, versus for a fully occupied Boeing 737 at cruising altitude?
Obviously there are a million other factors, like takeoffs and landings, and trains stopping, as well as fuel vs electric, but wondering about even just the most basic operation.
(2680 miles) / (300 kilometers per hour) = 14.3768064 hours
That's coast to coast in ~ 1/2 day.
Ships and blimps represent a much larger decrease in travel time over airplanes than rail. They perhaps pose a to be solved, but rail doesn't.
>"TGV called V150 holds the record for the highest speed on any national rail system - it hit a whopping 357.2 mph "
Only with the many day duration to traverse oceans eihtou planes do I get worried.
I’d still consider a say 48h trip from SoCal to NYC provided I could work over wifi, but otherwise it’s really a nonstarter.
If you make it a fast train, at 350km/h, it will beat the plane on any trip up to 1700km.
Most trips are short, so no, most trips can be done by train and people still spend less time on them than by plane.
Even more than just the distance, though, is the fact that there would be no practical way to have direct rail lines to every major city in the US.
Trains are useful, but there is no way they could replace air travel in the US.
If trains could go 250km/h on average, that 5000km trip would take 20 hours - that's plausible for an overnight trip, leave 6pm, arrive 10am. A flight over this is distance is probably a much more stressful red eye.
Sure this is quite speculative, but perhaps less so than hyperloop dreams, or supersonic aircraft that somehow have no environmental impact.
I can't imagine how long would it take to tunnel through the Rockies. Look at the map, they are far wider than the Alps. Getting through the Rockies is like getting from Denmark to Croatia.
Think BIGGRRRR! (Aggressively so, instead of sissying around!)
edit: also not to forget about 'Nuclear Tunnel Boring Machines/Subterrene' https://havacuppahemlock1.blogspot.com/2015/06/nuclear-power...
cf. "Trans-Planetary Subway Systems
A Burgeoning Capability
by Robert M. Salter
February 1978"
Again it’s difficult, but possible if a replacement for air travel was considered a necessity.
If there was no air travel, I would just travel a lot less. If you want to argue that the environmental cost of air travel is too great to allow it to happen is one thing, but done act like it wouldn’t make the travel experience a lot worse.
internet foo
Found this. As I suspected, hockey stick graph.
https://news.gallup.com/poll/1579/airlines.aspx
Half the people in the US don't fly at all. 25% fly 1-2 times a year. People that don't fly at all, and people that fly 1-2 times year. Probably wouldn't be much impacted if they had to take a high speed train instead of a plane.
> All overland passenger transport should be rail.
Then it was claimed that this is impossible. My argument is saying it’s possible to have rail replace rail, for example if air travel was severely restricted.
Perhaps people/families have spread themselves all over the continent because in the past energy has been 'too cheap' (i.e., didn't price in externalities).
With carbon pricing people may make different decisions in how far they want to travel from their 'home town', and what that would mean for seeing family.
>95% of the population of the US (and CA) are people who moved across an ocean and had basically zero expectation of seeing their families once they left. The only communication would be letters, telegraphs, and later trans-oceanic telephone calls.
Given the realities of climate change, and what it's cost us with regards to damage to the planet, expectations need to adjust.
Living in a poor, rural county with poor schools and few jobs can really mess things up.
Someone I know is getting divorced.
She was a very high earner who moved to a low-cost of living, low wage area to be with her husbands family.
She had previously earned very high wages, but took a significant pay cut to live with in-laws.
As the divorce is concluding, she realizing that the terms of the divorce prohibit her from taking the kids out of state.
Which means until her kids are 18, she’s effectively trapped in a market where her MS in Engineering gets her a job at Walmart.
She had previously worked for a major firm in New York, and then worked for a the local government until she had to resign.
So she’s basically screwed.
Plenty of people have skills and credentials that can only be used with relocation. A MA in Journalism isn’t very helpful outside big cities.
"Travel" or "movement"?
I am the first generation to be born in the country I live in. When my (grand)parents left, they left under the assumption that there would be no, or maybe very little, chance of going back to the Old Country. They took a boat over the course of many weeks to traverse an ocean; an era before cheap air travel.
When people move in the future, to hopefully have a better life than where they current are, it may be that they may not be able to go back (as easily) to where they came from.
The fact that we can now travel back and forth cheaply over great distances could simply be a temporary blip in human history, and we should perhaps consider this era could be ending. You can still move, but it will be more 'permanent' going forward, and travel is will be less frequent/easy/cheap/etc.
Under the current regime of 'cheap' travel in which the externalities of climate change are probably not taken into account.
to be fair, even for short trips trains require a minimum passenger flux before it's more efficient than planes. So even strictly talking about carbon emissions, trains are a net loss for most trajectories, but a large gain for most passengers.
Arriving, baggage claim rarely takes more than 30 minutes. (Delta “guarantees” 20 minutes on domestic flights.) With no checked bags, it’s the 10 minute walk through the airport and then plus/minus ground transport differences vs the train.
I can’t imagine that most people are spotting the train a 6 hour head-start, unless the live upstairs from the train station and are extremely nervous about missing their flight.
With planes, airports are way off the city centre, I think that there are few airports (here in Europe) serving large cities that can be reached in less than 1 hour from the city centre, and that applies to both A and B, to this you add, unless you use a private means of transportation (car-taxi), a half an hour for the timetable of the bus or train you need to take to/from the airport, as it won't necessarily be synchronized with your flight departure/arrival.
[1] https://openstreetmap.de/karte.html?zoom=11&lat=53.61524&lon...
visiting
[2] https://en.wikipedia.org/wiki/Hamburg_Messe_und_Congress
you'd take
[3] https://geofox.hvv.de/jsf/home.seam?execute=true&date=05.07....
I see no problem here.
(edit: WHAT?)
https://news.ycombinator.com/item?id=19557848
Maybe they will start to organize a few more of these trains, the level of stress was so much lower on (overnight) trains when compared to planes when moving in Europe.
however, it's going to happen regardless, since this way of living is not sustainable. The only choice that is ours is whether we prefer to anticipate this change and build a decent alternative, or whether we prefer to have it inflicted on us.
And that's not taking into account the cost of the road networks we build and maintain to allow high volumes of vehicular traffic.
https://yaleclimateconnections.org/2015/09/evolving-climate-...
Well, why would you? Then you'd have to take into account the airports and the transportation networks to get to them...
We’d also see a closure of many roadside stops since there are no longer people around to use those facilities.
[0] https://en.wikipedia.org/wiki/Vehicle_weight#Importance
[1] https://web.archive.org/web/20150709151027/http://www.nvfnor...
I don't believe it, but it is possible.
Facts and logic are optional, but at least a quantitative assertion that's falsifiable would be a start.
But how do they fare against trains, especially since trains can run on electricity? The mpg quoted in your article (21.6) also seems really low.
… in a fossil-fuel burning automobile. Do things changes with the rise of EVs?
I'm not following your logic. Also I don't know how you randomly oppose specific things.
>randomly oppose specific technologies on the grounds that yellow_led, personally, thinks they use too much fuel
I think the assumption is that we mostly agree on the first item, but the second one is supposed to be a means to the first. Which yellow_led and others think is a big mistake.
>I don't know how you randomly oppose specific things.
Random means arbitrary here, I think. Without sound logical reasoning.
When Tesla announced superchargers, they were all about solar panels and cars powered by sunlight, but for the serious rollout they had to go with the more easily scalable, cheaper option, so very few superchargers have solar panels after all.
Dyson did some cool computer modelling around Helmholtz acoustic cavities to create quieter fans. I think there's a lot of interesting stuff we can re-visit today because of improved computer power around noise pollution -
“At Dyson we make hundreds of incremental changes rather than one leap forward at a time,” said Schneider. “That means we produce and test hundreds of prototypes for each project. 640 prototypes from handmade models to 3D printed designs were made during the development of the Cool fan.”
https://www.theguardian.com/technology/2014/mar/06/dyson-sil...
The summer in non-pandemic times) is a constant parade of large passenger jets flying over. The jets are high up and in the evening you hear the rumble as the aircraft highlighted by the sun fly over while the ground is in evening shadows.
Even a dozen US military Osprey aircraft fly over a few weeks ago.
I wouldn't want a dozen large supersonic passenger aircraft going over all the time.
That said they should be at cruising altitude by there. If you can hear them at 36k feet, it must be fairly quiet where you live!
I live close to the path of the Heathrow approach, and planes tend to fly over me at about 5k feet, and I have to say that it's pretty rare I even hear them.
Often I can hear the jets at night from inside my house. That's if there isn't any wind.
That’s 22ft longer than Concorde with half the px.
https://www.britishairways.com/en-gb/information/about-ba/hi...
I remember the first time I paid for the HSR option from Amsterdam to Brussels, way easier
The EU's push for short-haul flight bans [3] makes a lot of sense though, especially when high-speed (and sometimes electrified) rail is an option.
[1] https://ourworldindata.org/co2-emissions-from-aviation
We'll be fine.
The benefits of faster travel really show on longer distances (London to Sydney for example). But over land, there just aren’t many common routes where the several hour savings would be worth it.
The big challenges relate to risk. What happens to the vehicle when a major failure happens at high speed? What about sudden pressure loss at high altitude? Or mechanical failure or weather which causes a diversion (how much ground do you cover just turning around?).
I find it hard to see legitimate overall benefits.
Frankly, I think we could make greater overall time benefits by optimizing airport and boarding improvements.
The same thing that happens in any other plane.
> … or weather which causes a diversion (how much ground do you cover just turning around?).
This is an extremely weird concern. There’s so much wrong with it I’m not even sure where to start: planes can slow down, sharp turns due to weather mid-route are not even really a thing, I’m not even sure why covering extra ground is such a bad thing anyway.
https://en.wikipedia.org/wiki/List_of_aircraft_structural_fa...
The faster you are traveling (which really matters as a factor of the drag you are experiencing), the more serious any event is which changes the shape of your vehicle. Even non structural failures, such as an engine cowling coming off mid-flight can strike other parts of the aircraft, resulting in damage and changes to the structure.
Tolerances for these events are much lower the faster you're going, meaning the outcome is more likely to be severe if you're traveling much faster than we currently do with passenger aircraft.
Military fighters are built with higher tolerances and structural strength (and come in heavier, requiring more fuel and reducing range). Commercial aircraft are just impractical to operate safely at such high speeds.
With respect to diversions and changes of route, you have to consider several things.
Faster, heavier aircraft need longer runways to land. That limits your alternate landing choices. Diversions may cost you more fuel since they may be much greater distances away.
And you cannot simply make a "sharp turn" at high speed. Your passengers (and the airframe on a large craft) are not prepared for 4G turns. They aren't even designed for 2G turns.
Ask yourself this, can you turn your car as sharply at highway speed as you can in the parking lot? Sure you can slow down and then turn, but that takes time. That would not be considered "sharp". So while you're decelerating and turning, you are eating up great distances. It would be easy to overshoot a nearby location; thus you would need to plan ahead, take big slow turns, etc. Do you have enough extra fuel for that? Are you able/allowed to pass through all airspaces conveniently, or will that require extra planning and maneuvering?
The complexity of flying larger and/or faster aircraft is much more than one might think.
Yes, an engine falling off will be more impactful to a plane traveling at supersonic speeds. But these types of incidents are an extremely minor fraction of overall failures, and particularly during cruise at altitude (e.g., when the risk of bird strikes is minimal).
Engineering steps can be taken to minimize risks like this further since the consequences of failure are higher.
> Commercial aircraft are just impractical to operate safely at such high speeds.
This argument was made when the first jetliners were being rolled out too. It carries about as much weight now as it did then.
> Faster, heavier aircraft need longer runways to land. That limits your alternate landing choices. Diversions may cost you more fuel since they may be much greater distances away.
This hasn't stopped faster, heavier aircraft from becoming commercial successes so far.
A diversion is already extremely expensive for a myriad of reasons. Schedules, aircrew, and sometimes planes have to be shuffled around. Stranded passengers often need accommodation and/or alternative transport arranged. Airfare credits are often handed out. Incurring slightly higher fuel costs from having to divert a bit farther is just not that significant of a factor here, and one that is easily compensated for by adjusting ticket prices.
Bumping the cost of an uncommon, already-expensive event by a few percentage points just doesn't move the needle much.
> And you cannot simply make a "sharp turn" at high speed. Your passengers (and the airframe on a large craft) are not prepared for 4G turns. They aren't even designed for 2G turns.
That's my point. Nobody is making sharp turns in airliners anyway. Routes are determined with weather accounted for in advance, and if a diversion around unplanned weather mid-flight is needed, airliners make long, sweeping turns to avoid it already.
That's the whole point of so called high-altitude/high-atmospheric platforms as an alternative to low orbiting satellites. (Think stationary blimp with many antennae/transponder on its belly for internet, or something)
What are you smoking!?
There have been ten total cases of structural failure in the past twenty years of aviation. Two of those involved spacecraft (Space Shuttle Columbia and VSS Enterprise). One of them was a terrorist bombing (Metrojet 9268). One was a fighter jet (F-15).
So six left. In all of those six, there were essentially 100% casualties. So how exactly would a supersonic jet be "worse"?
Not clear to me how big an effect climate change will have unless fuel taxes are really ramped up--which is of course possible.