Singapore OKs 4,300km subsea cable for importing electricity from Australia
mothership.sg
mothership.sg
[1] Aerial view of the plant: https://www.google.com/maps/place/Kori+Nuclear+Power+Plant/@...
[2] https://en.wikipedia.org/wiki/Kori_Nuclear_Power_Plant
[3] Possible location, suitable by size: https://www.google.com/maps/place/Lazarus+Island/@1.2057214,...
[4] Singapore is not denying such possibility https://www.channelnewsasia.com/singapore/nuclear-energy-fus...
Singapore does use islands for this kind of thing, but this would be better placed on Jurong Island (which is already entirely industrial) or perhaps Pulau Tekong (which is currently for military use only). Alternatively, land reclamation is not unknown to Singapore, and there’s already big land reclamation plans underway in the coming years.
I'm talking about something like this:
https://spectrum.ieee.org/is-the-world-ready-for-floating-nu...
Except for the early days of the (one-off) USS Seawolf, before its liquid-sodium reactor was replaced by a LWR. But yes, the KOG would surely come roaring out of his coffin screaming, "WTF are you idiots doing — wasn't once enough?"
So the city's electrical grid will be connected to a foreign country 4,300km away before it's connected to the Australian grid (approx. 2,100km away by road).
Some of the cables that start forest fires in CA have been there for a century by that point.
Even at 17e9 USD, if this lasts a century, and is in full use for that time, it's adding 1.1¢/kWh to the price of delivery:
http://www.wolframalpha.com/input/?i=1.75%20GW%2A100%20years...
I could easily imagine them doing this, and another similar one to India or twice as far to Kenya, and getting a decent amount of PV at night as a consequence.
(OTOH, as I'm not a grid or marine engineer, I am ready to be mocked for suggesting an underwater cable may last a century).
Also, why, on earth, would anyone in Kenya need solar energy from Australia? It has some of the best wind resources on the planet in the Rift Valley alone. Not to mention its own ridiculously high levels of solar available. And all that before we've even talked about the expense and difficulty of laying such a line. Add in unparalleled mineral availability in Africa and the Chinese building out manufacturing in Kenya. (Heck, all over the EAC actually.) I just have a hard time even seeing storage batteries as much of a problem for Kenya in the near future.
You need places like Singapore. Where the resources are unequal to the need for this whole thing to make sense.
Was thinking more that Kenya and Australia would sell electricity to Singapore during Singapore's night.
But Kenya <-> Australia also works, for nighttime coverage.
Wind may be better for each though, I've not looked at that kind of specific.
I'd assume Kenya would also be great for geothermal, having been past (IIRC) Olkaria V in Hell's Gate.
Ring the equator with solar panels and then run cables north/south to wherever it is needed, providing consistent supply 24/7. It works well enough in Dyson Sphere Program.
There are many alternatives, but I have a 10kWh LiFePO4 pack that is sufficient for my house 95% of the time.
There have been great strides recently in battery recycling and new chemistries. Not to mention alternatives to batteries.
To me this seems like one of those problems that seems impossible until the economics start driving innovation. I think we are heading in the right direction.
Only takes a few hundred billion USD of aluminium for that ring to have a cross section of a square meter, which is enough to lower the resistance to 1 Ω.
Of course, only China actually produces enough aluminium for this, and you'd want to divide it between several cables both for redundancy and because putting 2 TW though one cable at any plausible voltage will give it a surface magnetic field strong enough to prevent most tools working on it, and the political issues are going to be huge, but on paper it's fine.
I've never played DSP but I'm thinking of Factorio. Night falls equally across the world so you have to provide power from somewhere else at night or let your stuff go dark (which can actually be sane--I've put up radars with solar without any backup--it will show you the spread of the nests fine.) You have to start with burning wood or coal for power, solar comes before adequate storage. Thus if you go the solar route there's a range where you have solar, some storage and some steam. Unfortunately, while the game correctly prioritizes solar over steam it puts steam over storage. Thus the efficient approach is to put your steam behind a switch that keeps it isolated until your storage drops low enough. I've had a couple hundred megawatts flowing through one of the starter tech poles--it doesn't melt?!
2) That equation ignores the time value of money, which is absolutely relevant. A dollar spent today is not the same as a dollar saved 100 years from now.
And if you have skyscrapers you have lots of side surface area to capture solar energy as well
2 is fair.
Sudong Island is fairly important for the Singaporean Armed Forces as a forward landing strip for the SCS. In fact, the SAF is in the process of expanding the military presence and use of Sudong Island [0]
[0] - https://www.straitstimes.com/singapore/more-land-to-be-recla...
Singapore was kicked out of Malaysia back in the day straight up. The US equivalent would be "Hey Detroit, you're a mess, you're no longer part of the US, you're now the city state of Detroit"
So that means pragmatically Malaysia is about as far away as New Jersey from New York City (i.e. very close by). They're this more western gem completely surrounded on all sides by Muslim countries e.g. Indonesia as well. And now drawing this loooonnnggg power line past all these places to the Aussies.
Clearly the geopolitical pressure must be massive if they are spending this vast sum, which COULD BE much less, just to bypass all the neighbors. Not that the US understands Singapore geopolitics very well - whenever a Singaporean such as the tik tok CEO is hauled in front of congress they get grilled on which part of China they're from.
How does one transport energy over such a long distance ? Wouldn't there be massive loss in form of heat due to the fact that cables are not perfect conductor ? I kinda understand that normal cables goes around this by having high-voltage (and needing a transformer to step down the volage for home usage - much safer!), but I assume this is only good for 100s of km. Does that scale up to thousands of km ? Or do they assume that Australia is so energy rich that it doesn't matter if there are big losses ?
Can we do the same in Europe and put massive solar panels in the desert of North Africa and import the energy northwards ? (I realize this is a super naive approach, and the main problem is energy storage rather than generation)
Yes, they’re actively working on it: https://en.m.wikipedia.org/wiki/Medgrid
https://en.m.wikipedia.org/wiki/Xlinks_Morocco%E2%80%93UK_Po...
https://en.wikipedia.org/wiki/High-voltage_direct_current
which is not the "regular" AC multiphase power transmission. There are existing HVDC links in Europe to join various unsync'd parts of the European grid and its good for quite long legs between stations (there will be a few between Australia and Singapore).
Yes, there's also an aspect that Northern Australia has so much open space and sunshine that transmission losses can be sustained ans still turn a profit.
Browsing other Wikipedia articles let me know that one of the longest existing HVDC is the Rio Madeira HVDC system[1] at 2375 km, and the longest underwater HDVC is the North Sea Link [2] at 720 km
So while the Singaporian-Australian link still feel monumental it's not as science-fictiony as I initially thought.
From reading about the project, it seems the biggest hurdle by far is getting the lengthy cable built. The project is forced to figure out the manufacturing of it's own cable, as there doesn't seem to be enough global capacity to provide it to them externally.
Wow ok
So this has extra impact also, as once they unlock Singapore, they could potentially start to push renewables into much more of the grid. So yeah a big deal if they can pull it off, hope they do.
[1] https://en.wikipedia.org/wiki/High-voltage_direct_current#Ad...
Losses in power transmission are a function of the current (P = I^2 R; power dissipated = current squared multiplied by cable resistance). Using a thicker cable reduces its resistance, lowering losses. HVDC transmits power at -- as its name implies -- a much higher voltage; increasing the voltage means you need to draw less current in order to consume the same amount of power, lowering losses again.
It's why electrical grid transmission networks within countries run at a couple hundred kV. The UK uses 275kV and 400kV for transmission for example, stepping it down to 33kV and 11kV at substations, before it is finally stepped down to 230V for light commercial and residential consumption.
EDIT: A fantastic demonstration: https://www.youtube.com/watch?v=qjY31x0m3d8
A very good video from Real Engineering explains that no, not really: https://www.youtube.com/watch?v=7OpM_zKGE4o&t=1s
From Singapore's perspective it will be just like some truck veering off the road and taking out a power pole and the lines with it.
Plus - if it worked well enough, Singapore might do a major expansion. And sell start selling solar power to their closer neighbors.
Typical wholesale contract prices for solar production in the US are on the order of $0.04-0.05/kwh.
If this $17B cable delivers the full 1.75 gigawatts for 12 hours a day for 20 years, the transmission cost alone is $0.055/kwh.
This doesnt even take into account the time value of money, which would radically increase the cost. The line would have to charge $0.30/kwh for transmission to break even with a 5% interest rate. [1]
https://www.wolframalpha.com/input?i=1.75+GW%2F2*20+years%2F...
Vietnam is close but already under heavy growth, not sure they have any reasonable landmass or supply of electricity. Not as familiar with Thailand but would be surprised.
All of those above players could be wild cards. Australia is massive and I am making this up but like 95% of it is empty. Perhaps solar could be so incredible cheap that the transmission cost is bearable.
At the point random power plants in the Australian Outback are being bombed to get to Singapore, Singapore has gotten so fucked already they can’t stand.
More likely for the cable to be cut. It's easier and has plausible deniability.
O/wise, not so much.
I don't.
In the event of Chinese move on Taiwan then if Tom Cotton & Co. have decision making power then it's possible but unlikely they'd be dumb enough to think perturbing grid power in Singapore might exert pressure on China .. but honestly, who'd actually be that silly?
Singapore also doesn't like any one country to have excess leverage. Many countries supply them with electricity, this adds one more.
Except Malaysia and Indonesia, who are huge and immediate neighbors
I bet this was done to diversify sources as opposed to ideam many commenters have as in "just more electricity".
Versus Malaysia / Indonesia which is hot and humid.
- Too complicated to assign blame to one party
- Futile to rehash in HN comments
The shortest routes between Singapore & Australia seem to go through Indonesia's territorial waters, but there seems to be about 2000 - 3000 km extra involved in order to avoid that.
https://en.wikipedia.org/wiki/Territorial_waters_of_Indonesi...
It's expensive, but an economy such as Singapore has the means to pull it off.
https://www.straitstimes.com/singapore/s-pore-gives-conditio...
> Were you aware of the fact that sharks chew through undersea cables that are an integral part of the internet's physical infrastructure? Scientists are unsure why they do it, though they suspect that the electromagnetic fields emitted by high-volume fibre-optic cables may make them look like live prey.
Doesn't seem like a thing in at least the capital cities.
When I was living in Melbourne (inner western and eastern suburbs) from roughly 2019 through to 2022 it wasn't.
It's very rare to see the load shedding applied/recommended. Are you sure it's not just the local part of the grid being crap?
From memory South Australia has had multiple occasions of being 100% powered by renewables with all their fossil generators shut down.
Yeah we definitely have work to do in completing the shift away from coal. The natural gas export contract situation is a shambles which makes it difficult to use for the transition as planned. It’s certainly not doom and gloom, though, and apart from lines getting aced by trees falling during storms, the wall holes are always full of electrons at my place.
So even on last Saturday when "operational demand" in South Australia reached the ballpark of -200MW (that is, rooftop solar generation was exceeding the demand in the state by 200MW), there was still 80MW of gas in the mix. (The excess was being exported to Victoria).
There have been the rare cases of load shedding, usually when thermal generators are unexpectadely offline (one a few years ago was when a coal plant actually blew up).
Power outages happen, but I've been through maybe half dozen in my time here.
Same with brown outs. Not unheard of but far from common.
Although I spend my days at the office so maybe I miss some things, but equally I get an email if my home UPS activates and that has happened perhaps twice.
Our power is very reliable and rarely goes out. Every few years a car hits a pole or something and we get a brief period of quiet time
I actually had some electronics fail quite recently after a number of minor outages and speaking with insurance they were saying it's very common in certain areas where the infrastructure is aging or has recently been struck by lightening.
I have noticed the operating voltage in the inner north seems to vary between as low as 217V to 246V, but it's quite frequent you notice the lights dimming in houses round here. I don't think there were any last summer (if you could call it a summer) but usually I'd experience 2-5 (ish) complete outages on hot days, when I spoke to someone in know they said this is normal as they load shed you can experience short outages.
AusNet owns & maintains the transmission network in Victoria, but it is under the operational control of AEMO.
Dispatch of generation and FCAS instructions is NEM-wide and the responsibility of AEMO.
Outages are almost always due to faults in the local distribution network.
Is that when entire states power (2gw) went from being produced to being consumed as a massive electric motor to 50k rpm and shooting into sky?
The Australian grid is at the forefront %age of renewable energy in the grid. This brings new challenges with it to which the answer is more batteries and more wind and solar.
Edit: okay, maybe not at the other end of the continent. But then you have an insufficient grid and need to invest in that too.
In fact, if the cause is insufficient generation capacity then renewables will exacerbate it because fossil fuels are much more energy dense and consistent.