Sales of electric cars up by 43% in 2020
theguardian.com
theguardian.com
This is no way market driven demand, BYD is a very interesting company to look into. It is my understanding that Warren buffet has a large share in this company.
My believe is China sees oil dependence as a long term strategic weakness. In the event of a navel blockade it will be much harder for them to get the oil they need to run the economy. If a large part of the consumer sector is driven by electric powered by local sources (coal, hydro, nuclear) they can keep the logistic channels open. As a side benefit they get to fund a sector hoping to have the same success as they did with solar panels.
The article might have pointed this out but it was paid past a certain point on my device.
The good thing is that they can make decisions like this.
The bad thing is that they can make decisions like this.
It's good for other nations who can benefit from their trailblazing, but bad for the nation itself because they're basically fucked in the future when the bill comes due.
Centralization is long-term the worst kind of governance, inevitably becoming as self-serving as kingdoms and monopolies. The bigger it is, the worse it gets and the sooner it gets there.
Decentralized decision making is ultimately conservative, risk adverse: it is never great -- a lot of people will be wrong, so things will never go as good as they might. But it is seldom terrible: even when context shifts and the underlying conditions everyone was betting on change, the wide diversity of bets means that at least some people won't have been completely wrong, maybe for stupid reasons, but it can prevent a complete catastrophe.
(The difficulty, of course, lies in socializing the losses and gains, so that you can benefit from decentralized decision making without it ultimately reverting to a de facto central committee through successive rounds of winnowing those who guess wrong, until the small number of people who had so far guessed right can begin guessing wrong at scale.)
From the point of view of Western individualism, yes. However, a strong autocracy relies on building a strong collective identity through education and the cultural institutions. That identity isolates the individual from his personal beliefs and justifies his suffering, for the purpose of collectively achieving "macro" goals.
A major mistake is to judge non-Western socio-economic systems through the lens of the Western intellectual tradition.
As you said, autocracies are efficient for hard problems, and we're going to face the hardest very soon
After that point (which might be in lets say 10-20 years) there can still be a veeery long downward slope (the soviet union lasted for 69 years).
I would be very interested in what other people think about this (and these timelines)
You think that democracies are long-term efficient?
Democracies don’t have corruption?
Democracies don’t become self-serving?
I mean, I prefer to live in a democracy because of individual freedoms but it’s not terribly well-organized.
What system has lifted the most people out of poverty? It ain't American.
The cogs in our governance (everyone else) are pretty rusty, though.
Efficient in achieving a particular goal, sure, but the wisdom of crowds (and the market) is a thing, too. When the autocracy decides X will be the next big thing, and it isn't, all that efficiency from the previous correct bets gets wiped away by the inefficiency of one wrong dictate from the top.
Modern China, so far, has only really experienced a fairly homogeneous historical phase, which is one primarily driven by economic growth. They haven't been forced to deal with major societal issues, in my opinion it's simply too early to judge just how robust that government and state is going to be in the long-run.
Anyway, the argument against the effectiveness of autocracy is essentially the same as the argument of planned production vs markets for price discovery.
The more you concentrate decision making on complex topics, the less the body making the decision has access to all the nuance and detail that are needed to make the correct decision. This usually gets even worse when the people bringing the (potentially upsetting) detail and nuance need also to maintain good relationships with the autocrat or face serious consequences.
You saw this relationship between Trump and Fauci recently - if you're trying to say something that the person in charge doesn't like, then you are sidelined to the detriment of society. That's classic autocratic behaviour. But in this case the consequences for Fauci were constrained by the fact that it was happening in a mainly free society, and the society was able to correct itself after 4 years without having to murder a huge proportion of its population. The ability to do that is a massive benefit for a free society.
There have been horrible famines killing many millions of people because the (smart, well-educated) person in charge thought they knew what was best. That is not efficient.
Needing to build consensus is something that generally has to happen in a free society can slow you down, but it also exposes you to other views, and allows your mistakes and prejudices to be challenged. This allows you to make better, more effective decisions.
But I also don't think you can make sweeping generalizations about these things - they are statistical phenomenons, governed by a myriad of interactions. You'll find some things work better in a system that statistically would predict a worse outcome.
Unless you close your eyes for ideological reasons and pretend they don't exist. :)
China is an extreme outlier in that respect. What they've done the last 40 years is unparallelled and very hard to explain.
It's not communism. It's also not democracy.
They picked dictatorial government and matched it with unbridled capitalism which distills to two rules IMHO:
1. Make as much money as you want. 2. NEVER speak bad about the government/system.
It's working so far.
Their next big challenge is in the making now; de-population due to the one child policy of the past.
They will require massive immigration which will be de-stabilizing. Interesting times indeed ...
I've wondered about this. Is there a way that democracy could compete, possibly by reflecting "the will of the people" quickly and accurately?
Or would that always fundamentally be a popularity contest?
Or will democracy require something akin to "martial law" to quickly decide and act on urgent matters?
After the pandemic hit the West - Europe started locking down mid-March, Trump banned EU flights on 12th - Germany (a democracy of 80 million people) passed a financial aid package on 23rd of March; US (a democracy of 300 million people) followed on the 25th.
So it's quite clear that democracies can react quickly, provided there's broad consensus of what the problem is and how to solve it; of course, things slow down when there's no consensus and conflicting views, but arguably that's a feature, not a bug.
But at least in the economic sphere, it seems that democracy doesn't have that much power, capitalism seems to call most of the shots.
At least with autocracy, there's more unity, so there's somewhat bigger chance to restrain capitalism.
As much as I like China stimulating electric cars, there are a lot of issues they're handling poorly or are being downright evil about (Uyghurs, for example).
It's interesting to compare/contrast the incentives created in each system but in light of the last 20 years of decision making, it's hard to claim America aced it.
Now mind you, autocracy doesn’t necessarily mean despotic dictatorship. Self serving unbounded capitalism can be one as well.
Putin's autocracy deterioration has happened even during his lifetime.
This is why centralized socialist states and autocracies don't produce world champion companies in the long run.
Lets not pretend the last 70 years have been all sunshine and roses with democracy being spread by force around the world.
But being evil towards voters rarely makes sense in a democracy.
Good luck trying to drive through a remote rural area in winter with an electric vehicle.
You will realize pretty soon why battery-powered vehicles are not the universal solution that some people claim they are.
> Sales of BEVs almost tripled in the UK, while those of PHEVs almost doubled, giving the vehicles a combined market share of 10.7%. Other non-plug-in hybrids took 18% of the market, but overall car sales were down 29%.
Here is another interesting chart about Germany
https://insideevs.com/news/447542/tesla-sales-growth-germany...
It's not solely China.
It’s also important to keep in mind that the numbers for electric vehicles often include plug-in hybrids. They’re a neat idea in theory, but in practice, they often serve as a hybrid car and never get plugged in. The gains from those vehicles are somewhat limited, except that they are included in the subsidies for electric cars in Germany.
Edit: Adding some numbers from https://www.zeit.de/mobilitaet/2020-09/plug-in-hybrid-studie... (sorry, german)
43% of the private owners use the charging option, 18% of the company owned cars. However, due to tax incentives, 63% of all cars registered per year are company owned cars.
The incentives are that you get a substantial tax break if you register a plug-in (or electric) car - leading to the odd result that 40% of all Porsche Panameras registered are plug-in hybrid cars.
All demand is driven by the fiscal and regulatory framework, that's part of what defines the market
That's like saying that petrol cars aren't "market driven demand" because there is a regulatory framework in place that lets you spew out CO2 and particles without paying fines
If anything growth in China has slowed down because of that.
Europe is actually the place that has put the most pressure on companies, because their new regulation required a fleet efficiency that.
China does legitimately want to not have cities be a hellhole to live in and supporting EV made sense. Also because China hopes to be able to export EV, getting into the ICE car game would have been harder.
It's very hard to compete with traditional car industry - the brands are very well established. However traditional brands moves rather slow on EV because all kinds of their own issues. EV is the perfect opportunity for Chinese to jump in the market and take the first mover advantage.
When there's any big change in any industry, the market would be shuffled, and there's always opportunity for China to take. It's as simple as that for the current world.
I believe the same thing could also be said on semi-conductors industry soon. There were very few attempts earlier and ended up pretty ugly, because it was just not economic feasible to compete with Intel or Qualcomm a decade ago - if it's only 60% effective with the higher cost and same price nobody would buy it. But recently Apple released M1 and make everyone in industry start to reconsider alternative architectures - which may eventually led China to be an important player in the next decade.
Seems highly unlikely. Today's TSMC is even harder to compete with than yesterday's Intel/Qualcomm or even long ago's IBM.
Toyota is in a good position with their fleet emissions because they've been selling hybrids for so long. They're not under as much pressure to start selling BEVs in high volumes.
The answer is: there are enough customers interested in buying an electric cars but both the available product range and production count limited their ability to do so. With the offerings of electric cars improving, the consumers are happily buying into them.
(Edit) Battery Electric Vehicle
Nobody is forcing anyone to sell BEVs, what is forced is efficiency. Full BEV is only one way to achieve that goal. Look at Hyundai Ioniq hybrid - a perfectly capable midsize family car, affordable, introduced to the market in 2017. It will meet emission standards all the way until 2029.
Volkswagen must sell BEVs to meet its fleet emissions standards. Unfortunately for them, they missed their 2020 target so they will be paying a fine:
https://www.reuters.com/article/us-volkswagen-emissions-idUS...
Volkswagen doesn't want to waste money on fines so they've made a big commitment to EVs. They've become the biggest BEV maker in Europe and in time they'll be the biggest BEV maker world wide, which isn't that surprising. Volkswagen owns 12 automotive brands and they're the world's biggest car company.
However, what I do see in Germany, are more and more electric cars in car sharing, rentals and company fleets. Upper middle class is going pretty electric as well to appear cool/caring about climate. Several Teslas in front of my building now since the new upper middle class apartments went up across the street. Several Audi e-Trons in the area as well. What's curiously missing is the ID.3 somehow - I expected to see many more at this point.
Volkswagen and many other well-known manufacturers are pushing out really decent electric models. I see a ton of Renault Zoes cruising around, electric Smarts as well. They simply fit well into the European market which is dominated by dense cities and short commutes (<100km).
However, in 5-10 years we should start to see a mature market for good quality used EVs, making them much more accessible. At that point, better reliability, better driving experience, much lower operating costs, etc will make EVs the obvious choice for many, if not most, buyers.
The average price paid for new US cars was $40K [0]. There are now plenty of models below that without subsidy, including Chevy Bolt, Nissan Leaf, VW ID4, Kia Niro, Hyundai Kona and even the low end of the Tesla 3. That's just the upfront price, of course TCO is lower than a same price ICE car because fuel and maintenance are lower.
[0] https://www.carscoops.com/2021/01/average-new-car-prices-in-...
> Renault Zoes
In Berlin, Renault Zoes were (maybe still are?) _free_[0] to get for small businesses. I know multiple freelancers who took advantage of that deal. Yes, that might not be the "average person", but it's probably not insignificant either.
[0]: https://efahrer.chip.de/news/elektroauto-gratis-leasen-so-ko...
Automakers must sell increasing numbers of full electric and/or hybrid vehicles in order to meet their emissions targets, otherwise they face potentially huge fines.
Serious question & not meant to be snarky: does any of this really matter when thinking about the future of electric vehicles?
Europe had better watch out.
The US can defend their market with tariffs so everyone there drives a truck. But the longer they do that then the more out of touch they will become. It is going to be fun to see how this works out.
Tesla make great products but they are not a great market fit for Europe. There's so much scope for innovation but even now the Europe BEV efforts are ICE cars with the engine swapped out, therefore not cool.
You should check out what VW has been doing lately - the ID.3 is an EV-only platform and is selling quite well in Europe - much more impressive than their past efforts.
They do things like this:
https://www.washingtonpost.com/science/2018/09/04/china-blam...
If they have a goal or idea they can paint with a really large brush and hit a few birds with a really big stone. It's both a strength and ofc a weakness.
Over here where actual market matters more we will often act much slower, which is a strength and a weakness. =)
Didn't they have rolling blackouts in China earlier this month, due to a trade-spat with Australia + their reliance on their (our) coal?
Edit: Nevermind - I see that’s the company name, not a ticker.
No other EV has had major battery issues yet, so there really hasn't been time to develop a viable 3rd party battery replacement industry.
Even the actual car manufacturers tend to quote insane prices for full battery replacements because they really don't have a process in place on how to handle it yet.
When the battery replacement cost outvalues the cars price, it is uneconomical to repair.
The value of the car is only what someone would pay for it. If you're planning to keep it, then that value is only an insurance number.
A car is potentially worth a lot more if you keep it, especially if the car is low maintenance. With electric cars you trade some value up front (they are typically more expensive) to reduce the maintenance over the long term. But you will still have maintenance like replacing batteries when they go. You saved the cost of filling it up with gas and changing oil for going electric. So the smart move would be to treat your car like you're still sort of filling it with gas and changing oil and put that money towards the cost of new batteries when the time comes.
Every car has maintenance costs. With electric you just sort of push it down the road a ways when it comes to the battery.
You could get a new car... sure.. but now you have a car payment, or you may have thrown a bunch of cash at the problem. But if there's nothing wrong with your car except maintenance then put that money into the maintenance. Otherwise you're just pretending to care about the environment with your electric car that you probably tell yourself is cheaper (due to gas and oil changes) and better for the environment.
https://twitter.com/TeslaMiles
https://insideevs.com/news/339110/highest-mileage-tesla-now-...
https://futurism.com/the-byte/tesla-record-mileage-900000-ki...
Right now I could buy a car for £1000. It won't be great but it would be good enough to get somebody too and from work and the shops. That won't be feasible when a new battery costs £5000 or more.
There was also some talk about Teslas being able to send power back to the house with the new HPWC - not sure if that ever happened.
What I think will be the hard part of including cars into the grid is the warranty issues. I.e. if a battery gets so much usage from the grid that it somehow gets broken or worn out, who should take that cost/ risk?
Just put some solar panels on your roof
A good generator cost 5k or more. I have a 75 kWh battery sitting in my garage. Bummer the tech isn’t right to reverse the flow. My understanding is Tesla don’t have the right part to reverse the AC flow.
Basically things that regularly need changing, although the hand brake cable is probably the exception to that.
Most reliable car I've ever owned.
https://answers.yahoo.com/question/index?qid=20080401174600A...
I'd wager a guess that you'd be looking at well north of $30k for putting in a brand new engine in a Tesla-bracket BMW of semi-recent vintage.
I think right now it’s 13k? So maybe a tad more than a BMW engine but falling fast.
I buy and sell cars as a side gig, and there are plenty of models which people like me would not touch with a barge pole because of issues like this - many of them German - and you'll find many for sale as spares or repairs, and find that secondhand engine supply is low (as many have blown up), and therefore expensive. Look at a diesel vauxhall insignia, for instance. Hand grenade engine, no chance of getting one secondhand (and even if it did, its got the pin pulled).
This doesn't seem to be just an "early adopter effect" as the "neophilia" of "early adopters" you would think would trend the other way to a shorter first owner life.
If the increased first owner life of EVs remains as more "normal" people buy in, that implies there may be a major shift in the secondary/used markets and that may be fascinating to watch. It might possibly be a hugely surprising (to some) secondary effect of an EV transition. There's a lot of jobs in the used market, and such a big shift could disrupt those jobs quite a bit.
(I've got a 2012 Chevy Volt myself and don't feel a lot of pressure to replace it any time before the 15-year warranty on the drive chain/battery. I probably wouldn't replace the battery, as the small bit of pressure I do feel is that it is about time to get rid of the compromise of having an ICE generator backup I hardly/never use and move to a full proper EV.)
However from my 17 Volt to my 18 Tesla 3 I am now only considering BEVs, I really cannot reason myself back into a petrol powered car. With motorcycles there is no real alternative if you want to travel. For the most part they are still in "Leaf" tech with only dipping their toes into liquid cooling the pack and or motor. Worse is that most are useless for commuting as they don't have storage space or wind protection; protection which would improve their aerodynamics.
Late 2021 promises to have a much wider selection and 2022 should be a watershed year for EVs. Car wise I would love a good four seat convertible option. To me the EV power and open air travel were just meant to go together, too bad VW doesn't see fit to bring back the Beetle in that form as both previous incarnations were ideal for EV
I guess it's possible one could make a replacement battery pack which has an internal cooling loop, but it would be quite limited in how much heat it could get rid of through the battery case body without external radiators.
Of course better batteries might heat up less when used or charged, due to lower internal resistance, but that still leaves really hot or freezing days.
[1]: https://electricrevs.com/2019/01/31/does-the-new-62-kwh-leaf...
The main problem(s) with the leaf are
- it charges to 100% every time (unless you dig into a menu, turn on analytics and switch to 80%) I never knew a leaf driver that figured this out.
- the battery size is very small, so you need a full charge to get anywhere reliably and/or drain it very low.
- to put any kind of mileage on the car, you need to cycle the battery MANY times. (one cycle might be a day's driving on the leaf, but one cycle on a tesla is a week's driving or more)
I think the leaf would be a perfect car with up to 20 miles of daily driving.
(I owned the same car as OP)
A heater for freezing days would be pretty simple.
Going to be an interesting decade.
1. Regulation by governments. A few states and countries are mandating zero emissions (ie electric) vehicles by 2035.
2. Car manufacturer strategy. Since they know they can’t sell ICE vehicles past 2035 in some jurisdictions, it’s better to make the transition to electric quicker. Audi, for example, doesn’t plan to refresh its ICE vehicles past 2023. Even if you wanted to buy a new ICE Audi in 2025, you couldn’t.
3. Prices for consumers. The increase in manufacturing volumes of batteries will make them cheaper. They’ve dropped 20% per year over the last decade thanks to increased volumes. In a few years, the sticker price on electric vehicles will become lower without any subsidies. Their total cost of ownership is already lower. This will further increase growth.
4. Charging infrastructure. Currently the second biggest stumbling block (after sticker price). It’s not economically feasible to build charging networks or infra in apartment complexes when electric vehicles are niche. But as they grow in popularity, it becomes more viable, further increasing their popularity.
So yes, normally you can’t expect growth like this to last. But it possibly will because the attractiveness of electric cars increases in proportion to their popularity.
Interesting flipside corollaries to points 3 and 4: my opinion is I expect we may see something of a "singularity" slope in the transition sooner than I think a lot of people expect as ICE supply chains (which are quite complex webs) get disrupted and gas infrastructure goes away. Disruptions to the first may cause quick spikes in ICE vehicle costs and maintenance costs from increasing prices for consumers and decreasing supply of ICE-specific auto parts. As for the second issue, gas pumps are already seen as a high maintenance cost rarely profitable loss leader for grocery stores and convenience stores. How long do you think the pumps will be serviced/maintained/made available as demand drops? I certainly expect it might snowball surprisingly quickly whether or not overall oil costs remain at historic lows.
The cake is a lie!
But soon electric infrastructure will be mainstream.
While time is counting against combustion cars.
In the UK from 2030 onwards all new cars must be hybrid or fully electric. And the sale of new hybrids is to be outlawed from 2035.
Yeah, but we knew that when we bought a 2011 Leaf. But no one was going to build the infrastructure if no one bought electric cars, so... (And, fact is, we rarely charge it away from home, so charging infrastructure has been a thing a half dozen times in ten years.)
Ten years later, we look forward to the vast improvements in EVs when we eventually replace it.
It haven' t made it a replacement for fiat currencies in the following 2 years.
EVs are still too expensive for the majority of people that _need_ to buy a car and their growth will put pressure on the charging infrastructure, which is insufficient right now or inexistent in large areas all over the World, for example here in Italy outside of the 2-3 larger cities, owning a 100% EV is a luxury.
I'm also not sure production capacity can sustain that kind of growth in the near future.
In Europe regulations about emissions are driving up the EV sales for company fleets, but the overall car sales are going down. There are 40 million registered cars in Italy and in Q4 2020 only 8.5 thousands were new electric cars.
We have a long way before EVs replace ICEs.
We also have problems all across Norway with electrical capacity not being enough to install chargers in these garages. So upgrades to the grid has been necessary lots of places.
We only recently got a grid upgrade in my apartment complex to allow installation of chargers.
We have a shared garage with other people in our building. One family bought an electric car and wanted a charger in the garage, but despite the whole HOA agreeing, it's apparently too hard to get metered electricity down there.
Electric vehicles are exempt from all this plus you don’t pay road fees and electricity is cheap.
Also, Norway has just about 5 million inhabitants.
It's great that cleaner cars are getting adopted faster. The absolute number gap is still very big, the infrastructure challenges are also very big (remember BetterPlace?) and current optimism is very irrational.
I agree with you. I want a car that drives and nothing else.
If you're in an urban area, consider an ebike for a light electric vehicle without unnecessary frills that you can store in your home.
https://abcnews.go.com/US/cars-us-now-required-backup-camera...
Given the track record of Teslas crashing into stationary obstacles, I'm not sure if they even use cameras for emergency breaking, or if it's just the radar based stuff every other car maker uses as well.
Proof: Poland is 800gCO₂/kWh [1]. With an average electric car (i.e. my hyundai ioniq), you average 11kWh/100km, or .11kWh/km. Taking emissions into account, that gives us 88gCO₂/km.
A VW golf is 120gCO₂/km [2]
[1]: https://www.electricitymap.org/map [2]: https://www.fleetnews.co.uk/cars/Car-CO2-and-fuel-economy-mp...
From a regular EV I would expect around 16.5kWh.
You have to compare the complete lifecycles, including production and recycling of the car.
At some point it's probably cheaper to buy another used 8yo EV than continuing to maintain an 18yo EV.
The fine dust is actually a much more serious problem in the city than combustion engine emissions as the latter are passed through particle filters and the catalyst.
Poland is actually planning to build nuclear power plants while Germany is permitting the shutdown of coal-powered plants plus building 17 new gas plants.
Thus, Poland’s electricity will eventually be cheaper than Germany’s.
Brown coal has been declining in Poland faster than anticipated:
https://wysokienapiecie.pl/wp-content/uploads/2020/03/polish...
It is being replaced by imported hard coal, but that's still some improvement.
There are also plans for offshore wind, because I believe they finally found a crony that would like to pick this up and make money on government projects.
There are plans for nuclear, but let's just say that there have been for years now and they didn't even manage to pick a site, even though there's a half-finished concrete reactor hull(block?) from the communist era available.
That number went down to 80k by 2020, but they still vote in concert, so any governing party has to tread lightly.
Nowadays it's just that there's a lot of old infrastructure - both power plants and residential heating and noone wants to step up and replace it, because that would mean additional costs - we're a stingy folk.
As a result the coal industry is currently being subsidised to the tune of 9bln PLN (€2bln) annually.
As for air quality: during the winter it's just awful - mostly because of homeowners who burn coal dust and garbage for heating.
I live in Wrocław and bought an air purifier in September, but already had to replace the HEPA filter that was supposed to last a year, because a week of PM2.5 over 200ug/m3 was enough to clog it entirely.
One of the biggest consumers of coal within the EU is actually Germany which have a rising reliance on fossil fuels due to them shutting down nuclear power plants.
Just an anecdote that gasoline is not always available during crises. We did have electricity at home but neighboring buildings and neighborhoods had outages for a week or more.
With that said, many places on the coast have improved a lot by building power lines underground. We never even lost power in the last storm I went through a few years ago.
I'd be happy to pick up a cheap(<$15k) EV for work commutes(range of 30 miles is fine), but it would be supplementing my gas vehicle(hybrid or conventional).
The math may change as gas prices spike over the next year. I think that will really drive EV adoption. Time will tell though. So far, I see EVs appealing to a certain type of consumer(pro-technology and/or affluent).
Also: People coming in with their Ford F-one-million with an umpteen-gallon fuel capacity and hogging all the fuel.
https://www.rac.co.uk/drive/advice/know-how/does-fuel-go-off....
A group of survivors could scavenge a lot of solar panels, bit good luck restarting an oil refinery.
If you have lot of open space with sun exposure, true.
For the average small yard, it's easier to buy a 55gal drum of gasoline and a manual pump if you can anticipate the need.
Growing up in hurricane country, it's something some people did. Buy a drum in the summer and store it. If it wasn't needed, just use it up after November (end of hurricane season).
Just keep your car charged between 50% and 80% when you are at home and it should be enough to reach the hospital or a safe place during a blackout.
Europe is a big place, though. There's a lot of people living in the countryside and with much less reliable utilities compared to urban areas. Power outages do occur here too and they're even frequent in some areas. :)
Plenty of countries don't have that reliable electricity.
If the outage is extended, there are plenty of DC fast chargers near enough to me that its unlikely that both me and them would face an extended outage, just like how in a gas car you might have to drive a few gas stations over to find one with power. If I had solar installed, I would be able to recharge during the day if I am somewhat careful in driving as the estimated surplus power for area I have for solar is ~7-20 miles a day.
I don’t think power reliability should be a concern... except for when the big one strikes. But in that case all the freeway overpasses will collapse, so an ICE car won’t help you anyway.
In the Bay Area, it's regularly an occurrence where people in the Santa Cruz Mountains will not have power for 2 days to a week. With little to no notice too.
You come home with a low battery to refill it at home, you might not be able to get very far. Hopefully you just drive with 50+ miles ready all the time.
That said I also remember a hurricane (Harvey?) which shut down refineries, making gasoline scarce. So it's pick your poison.
If they were buying today I'm sure many would recommend some type of electric powerwall to store energy but I'm doubtful in the situations you need it the most it would be there. And the whole point of getting a generator is not to provide you with electricity for the time you lost it for three hours - but for the one in ten year storm that leaves you without power for a week.
Rolling blackouts wouldn't really cause an issue, and when I've experienced blackouts, it's never been a problem. When the power is on, the car would charge back to the limit I set (I usually keep it at 80% charged to preserve the battery, which is still nearly 250 miles of range). When the power is out, it's anyway very rare that I drive hundreds of miles in a day and actually need to charge — and as other posters have mentioned, you could hit up a charging station that isn't in a blackout at that point.
When I owned a gas car, getting below 50%, or even below 25%, was completely normal. So I can see how if you're used to gas cars, it would seem worrying that there might be a blackout: how do you "refill" if you're low? But the truth of electric car ownership, at least in my experience, is you basically never go below 50% charge in daily use. So the idea that you'd likely get stuck at some point because the power went out just isn't really a concern.
IMO assuming you have home charging (either a garage in a house, or if your apartment building offers chargers) — which to be fair is a reasonably big if — electric is much, much more convenient than gas. You never have to stop at a gas station equivalent in your day-to-day life, since you just plug the car in when you get home, like you'd charge a phone overnight. You barely need to do any maintenance, because the moving parts are so simple. And electricity is much cheaper than gas.
For people without access to home charging, I think EVs are currently more annoying than gas cars. But not because of blackouts: it's just because charging to full is considerably slower than filling a tank of gas. If you're not able to have it charge at home while you're asleep, regularly hitting up charging stations and waiting is annoying.
Maybe.
When I was commuting, my daily driver gas car got 36 MPG. My commute used 0.72 gallons. At $3.55/gallon, the trip cost $2.56 or about 9.9 cents/mile.
At the same time I had a Fiat 500e. The same commute consumed 11kWh.
So the breakeven point (between my two cars) is $0.24/kWh in electric cost.
Looking at my PG&E bill, peak time (4pm-9pm) cost is $0.35/kWh and part-peak (9pm-midnight) is $0.34/kWh. These are winter time prices, they are much higher in the summer (but I only have my current bill handy).
So if I had to ever charge the electric car during peak or part-peak times, it is quite a bit more expensive than gas.
Now, of course, I only charge it at night (PG&E price $0.17/kWh) so it is a bit cheaper. Just need to be careful to set the timer so charging never starts before midnight.
My EV consumes around 15kW/100km, which by cost is equivalent of around 2 litres per 100km (117MPG)
And some people live a block or less from a free charger so no waiting around really.
During COVID lockdowns I was wondering if the national guard would be deployed to gas stations to enforce limits on driving by limiting gas purchases. If we want to just make up scenarios, this is the kind of scenario you could avoid by having an EV with your own solar and backup batteries.
Note that with a gas car, you can't fill it up at home ever, for any reason (unless you have a well and refinery I guess).
Or a drum of gasoline and a hand pump which is very practical. If you live anywhere where outages and natural disaster are a thing, it's good to plan ahead.
I believe the reliability problem is worst in California and is less of a problem in other states and countries. (But offset in part by the large number of charging stations in metro areas, at least in SFBA.)
That said, a replacement doesn't need to be as reliable as its predecessor, it only needs to be reliable enough. Cell phones, for example, will go down a few hours after a power outage, whereas POTS phones were engineered to stay up (and provide power to corded phones) during power outages and weather events. Cell phones are more convenient.
EVs have two nice properties: faster acceleration than gas cars (which some view as a safety feature), and they're cheaper to fuel than gas cars. This can tip the balance in favor of an EV for day-to-day use.
If you are prepping, I think it still makes sense to have at least one conventional gas-powered car. Just make sure to keep the tank at least 3/4s full; gas pumps tend to go down during blackouts.
If you're really prepping, also have a fucking bicycle. You provide the fuel and they're cheap to maintain.
The irony is that the only time it's actually safe to ride a bicycle in an average American city is during a post-apocalyptic event when there are no cars on the road =)
The main difference is that the cell network doesn't power the handset but modern cell phones use so little power than a $50 consumer UPS would recharge a cell phone many times over.
Keeping phone networks up during power outages is very important for public safety.
Personally, PHEV makes a lot more sense to me than full EV. My particular model (Ford C-Max Energi) has pretty low EV only capacity (20ish miles, if you stay under 60 mph and relatively flat), and the battery interferes with cargo space, but if you got the capacity up to about 50 miles, that would do a lot of people's (non-covid) daily commute with a single charge (either overnight at home, or during the day at work; but you wouldn't need both). And when you need to go farther, 500+ miles per tank, 5 minute fillup.
On the US southeastern coast, the big concern is hurricanes. Gas stations are far from 100% dependable in regional emergencies both before and immediately after the event. Electricity tends to only be a problem afterward.
But then so can you and charge your EV with it.
In any case, a typical EV would have about 50KWH of battery; more than enough to power a house for a while. The more EVs there are, the more stored KWH of energy will be around in any area if a blackout happens. Much more useful than oversized SUVs burning up all the remaining fuel in your area while fuel logistics are being disrupted.
For your parents, an EV and vehicle to grid technology could have seen them through those 3 days. More, if you drive it to some fast charging access point in between to top it up for 10$. It's perfect especially for remote setups. Add some solar panels to the mix and you are basically not dependent on the grid.
It has 200kWh battery so that should give even more juice to power a house.
I wouldn't be surprised if some would buy ridiculously oversized EVs just to alleviate that fear.
I think I will always hold onto a reliable ICE car for the rest of my days.
If you're looking for the "I can go EVERYWHERE" type, then your options are a bit limited at the moment (Rivian, Cybertruck, Bollinger).
For regular "I want better traction and pull a trailer" 4x4 you've got a bunch of options, mostly PHEV though.
note: i have grid tied 5KWH solar system at home so electricity costs are zero
You need a gas tank and a battery, electric motors and internal combustion engines, and so on. I don't know how hybrid cars compare in terms of purchase price and maintenance costs, but on paper they are a much more complicated system.
The electric motor allows superior city driving due to the nice fact that you have regenerative breaking and much more efficient low speed operation where an ICE would not be able to run at its most efficient RPMs. While the gas engine gives a lot of convivence that you might otherwise lose.
The downside is now you have two drivetrains that need to integrate into a very limited space, with limited weight as the whole goal was to make an more efficient car. Its also non-trivial to make a good transmission let alone one that has two inputs, or even an integrated electric motor.
Batteries in a hybrid are also pushed much harder in a way. Batteries are often rated over 20hr discharge cycles as you can generally get more power out of a battery by discharging it slowly. Asking 1A from a 100Ahr battery vs 1A from a 1A battery is very different in terms of effective capacity as well as the longevity of the cell. Given that batteries are so heavy and you need two drivetrains you can only add so much battery capacity. The end result is that its easy for the batteries to age faster in a hybrid.
A surmountable issue is heat, batteries don't play well outside a range of limited range of temperatures. Too cold and they will have less effective capacity, too hot and they can be damaged or degrade faster. This issue can be overcome, but is just another way there is more complexity than Tesla's 'the floor is a battery approach'.
Hybrids are cool, but they are hard to make right is the tldr.
Tesla Model 3 Is 2020's Best-Selling EV in China, Company Achieves 11% Market Share
https://www.tesmanian.com/blogs/tesmanian-blog/tesla-became-...
If you look at revenue in that market it is a far larger number.
Tesla in general in terms of BEV is about 28% of the global market and more if you consider revenue. In Europe the largest competitor to the Model 3 is also a cheaper city car.
Tesla is doing very well and has been growing market share globally every year.
I live in Romania and there's a huge potential for taking out the ICE and putting in some sort or electric motor train...
Otherwise we'll take ages to resolve the situation of poorer countries where legislation is looser (Africa, South America etc)
But there are also more people replacing plane with car travel, which increases the numbers of people driving, but I presume that's much lower than the number of people no longer road tripping. And some of those people might decide it's worth it just to rent a car if they need to do that.
- Close to zero maintenance
- Cheaper to run
- Less taxes (our cars get taxed by the amount of emissions)
- Keeps its value better (less parts that wear or break)
Basically the amount of driving I did went down by a good 50%, it's cheaper to have an EV.A pandemic is also a great time to get a car, because prices had dropped with many incentives, but also driving to go on socially distant hikes is a great way to stay healthy and break things up.
I've been saying it's coming soon for a while, cars that are so vastly superior to gas cars that it re-frames the gas car as being legacy technology just as the smartphone from apple finally got the consumer interested in smartphones and view flip-phones as inferior.
I think however, it's going to come from left-field (not from Tesla) and for the first time I'm tossing a date on it, 24-36 months:
The key is the bizarre three-wheeled electric cars from micro-manufacturers like aptera, ampere, nobe, elio, arcimoto, electra meccanica, malcolm bricklin, sondors, and vanderhall.
They are offering low priced commuter vehicles with really low drag coefficients, easy parking, and when combined with solar panels embedded in the body (which I know of 3 manufacturers that are releasing cars this year that will do this) you'll get effectively a "worry free" vehicle; it charges more than you usually drive it, needs very little maintenance and repair, and is easy to maneuver.
I think Geoffrey Moore's diagram on this one is starting this year and if the next gen of these funky cars are as "practical" as I think them to be, I think the chasm will be jumped around 2023/2024.
Right, this sounds unrealistic now. Obviously cars like this https://www.aptera.us/product-page/250-miles-per-charge aren't going to see mainstream pickup right this second.
But this is like if we were in 2003, and I used the bulky, nerdy clunky HP iPAQ 4150 (https://images-na.ssl-images-amazon.com/images/I/51BH3PKCZ7L...) and argued that these computer-phones would eventually be a mainstream device and be a complete replacement of desktops and laptops for many people. Obviously unrealistic then. You have to iterate in your head.
For instance, take the solar e-trike, make a modular design like how ebussy has (http://ebussy.de/), inductive charging like what bmw and witricity are working on or what's been deployed in sweden (https://www.smartroadgotland.com/) you know, the next steps that everything gets crossing the chasm, you have to do the act of mentally imagining putting these things together, I can see this future coming together.
Also you add the cost trajectories of batteries and solar on to it, and you'll realize this is like anything else in the innovators dilemma: the capacity is moving up, the price is moving down, steadily, year on year and you're maybe looking at say, a honda-civic level rated e-trike car at say $4,000 in 2030 that can get modular addons and be inductively recharged while driving.
I know this sounds as wacky as bill gates home of the future from the 1990s where he talked to a special "assistant computer" in his living room to do things like order a cab or the carputer project MS ran to have an in-dash navigation system with location and map info in the early 90s ... it all looks crazy until it happens.
except cellular phones were vastly better devices for their purpose.
smartphones are better only for content networks (FB and similar) and App stores
Meanwhile my Nokia 7650 in 2002 was already doing everything I need today, but it also worked when it rains (most smartphones touch screens get confused by water) and battery lasted days, not hours. It also survived an infinite number of falls.
We see them as "old" only because mobile connectivity was in its infancy and HW has become much more powerful in a small time frame.
But I would trade my actual smartphone for a phone of that era with 4g connection, a physical keyboard and a modern screen immediately.
Demand for Lithium, Cobalt, Nickel is growing like crazy and that takes time. Battery factories are very hard to build, supply of chemical engineers are very hard to find. More time then what was required for the IPhone.
While I am a believer in 3-wheelers, that is not the IPhone moment. The simply fact is, the lifetime cost is better then a gas car. With gas cars being a legacy technology your resale value will be destroyed.
In a few years buying gas cars will seem silly.
I think you let what you like to see influence your view on this. The killer app is simply cars that are like cars we have but better because they are EV.
That's when I'm getting one!
1. Does the EV cost as much as a regular car? Most of them are very expensive, comparatively, especially for cheap family cars.
2. Is the range comparable to regular cars? It's not, at similar prices it's 60%.
3. Is it trivial to recharge it, especially quickly? Not true for most of the world.
4. Can the car be bought today? Nope, most are just announced and even for those that are "available" delivery is many months from now.
Day to day charging of batteries is likely to remain around 6-8hrs just to reduce wear on the battery pack.
[0]: Sudden for most power companies is anything measured in minutes. Also, they will likely flat out prohibit you from turning on your load when the grid is near capacity, unless you want to pay ruinous rates, like $10+/kW/hr.
Pretty much the entire world is trying to get rid of Coal on their grid. It's expensive and has (rightfully) a bad image.
So let's assume a brand new car lasts 10 years, by the time that car is ready to be changed, the grid has evolved to the point coal is irrelevant. The whole operation is still better than a buying a new petrol car.