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The engineering behind the US Strategic Petroleum Reserve

265 pointsby 1d agojohnjwang.com
108 comments
20h agoHN ↗

Very cool, big fan of these bite size explainers. Has there been more cycling recently? Are the sizes of the caverns tracked anywhere?

20h agoHN ↗

id imagine if you have the location of a site that the largest pipes visible from satellite photography would be consistently scaled in some manner with the tank size. this is guess

19h agoHN ↗

Funnily enough, I guess the more you cycle them, the bigger they get until they just collapse. So you have a lot of potential storage just before you have none.

7h agoHN ↗

If saturated brine is pumped in, then salt is not dissolved from the walls. See better comments further above.

6h agoHN ↗

The design characteristics require the storage caves to support 5 drawdown cycles using "raw water" - actual phrasing in official documentation.

Also, the SPR is a complex system made up of several locations where salt massifs have been drilled and hollowed out in the shape of highly specified storage caves.

There are requirements for pumping throughput for example, and some of the concerns regarding operational life and the dozens of partial drawdowns these caves have been subjected to, relate to them loosing the ability to quickly discharge oil.

In a word: it's complicated. I encourage looking up technical documentation online, super easy to find using 'filetype:pdf'. There are a lot of details involved in building, running, and assurances required from the SPR storage system.

20h agoHN ↗

Makes you appreciate the physical infrastructure challenges, not just software. Bet the data logging and monitoring systems are ancient but robust.

20h agoHN ↗

Yea man the federal government is on top of protecting civilian groundwater supplies and communicating discoveries of contamination

18h agoHN ↗

I know you jest, but the US govt funds a lot of water science. Whether that's put to use in the public interest is another question ofc and one we should be asking

20h agoHN ↗

An interesting aside is that the process for making these salt domes is also used for mining salt. Drill a hole, pump water down, and up comes brine. The brine can be used as a chemical feedstock, e.g., for production of things like chlorine, sodium hydroxide (lye), and sodium carbonate for glass.

20h agoHN ↗

Salt contains the oil and helps seal small fractures. The rock salt surrounding the SPR’s caverns has extremely low permeability, meaning fluids have very little ability to pass through it. It also doesn’t react with petroleum. Under enormous pressures underground, salt also slowly deforms, which helps close small fractures. The salt itself can therefore contain the oil without a steel-and-concrete tank lining the cavern.

Oil floats on water, which means pumping water into the bottom of the cavern pushes the oil out. As fresh water is pumped into the bottom of the cavern, the oil gets displaced upwards into a delivery system.

The more water you pump in, the lower the quality of the oil that's pumped out; we are basically loaning the oil refiners money to buy SPR oil they don't really want. Also, the more water we pump in, the more salt leeches into the water and the more the bottom of the chamber deforms, creating shear forces in the upp walls that lower its overall structural integrity.

I've posted this before; it's a recent report on the status and maintenance of SPR facilities, which is very clearly written and well worth your time if you want to understand the topic better: https://www.gao.gov/products/gao-26-106918

19h agoHN ↗

I also think I've also replied this to you before, but +1 for the GAO report! I use the full report as my personal model yardstick on how I document technical decisions/issues for non-technical people. The PDF is attached here:

https://www.gao.gov/assets/gao-26-106918.pdf

6h agoHN ↗

People like to be dismissive about civil servants without looking at how much extremely high quality work is actually produced on complex subjects. Personally having interacted with them a couple of times I'm also a fan of the UK Parliamentary briefings: https://commonslibrary.parliament.uk/

(unfortunately they can't make people read the briefings ..)

4h agoHN ↗

Usual problem, people don't understand what they do so they undervalue what they do or think it is "simple" - almost nothing involving millions of people and their interests is ever "simple".

I get somewhat annoyed when people blanket attack Whitehall (the UK Civil Service) universally i.e. the bureaucracy, yes they have problems but you don't run a country with 70 million people without some bureaucracy and ripping apart a system that has worked for centuries means throwing out a lot of good with the "bad".

19h agoHN ↗

It is funny seeing how the estimates of the lower end stability vary drastically. Have seen numbers between 70 and 150 million barrels. I have just called it half way between that and think 110 million barrels is probably the lowest they should go.

15h agoHN ↗

I think there's a statuary limit at 150 million because there must be an "emergency military reserve" but the caverns start collapsing at 70 million.

14h agoHN ↗

Thank you for this, that would explain why difference field are talking different numbers.

14h agoHN ↗

This is the most detailed breakdown of the reserve contents, updated weekly. the sweet/sour differential isn't listed on any other data sources for some reason, and if you want a longitudinal record you'll have to make your own.

https://www.spr.doe.gov/dir/dir.html

19h agoHN ↗

We can't pump saturated salt solution to prevent more salt from being dissolved?

19h agoHN ↗

I don't know, the article mentions having to deal with brine. Let it evaporate in a pool and you've got plenty.

19h agoHN ↗

Seawater is 10% saturated IIRC, so you'd have to make the saturated solution first, and if the easiest way to do that is to dissolve another cavern then using brine doesn't have much of a cost advantage over "use this one until it collapses, then dissolve the rubble or make another."

14h agoHN ↗

I disagree that there is no cost associated with making another. Externalising environmental and rectification cost should not be the default approach.

17h agoHN ↗

If you're gonna build a bunch of tanks on the surface to store that saturated salt solutions, you might as well store the oil in those tanks. The point of this salt cavern system is how little infrastructure it needs to store the huge volume of liquid.

17h agoHN ↗

Just spitballing here, can't you just store the salt alone and make the hyper-saturated salt water on the fly? That seems reasonable.

16h agoHN ↗

How do you get the salt to make the brine? You'd need to evaporate the water from the brine which means you either need very large evaporation pools or lots of energy to boil the water (and money to maintain the immense amount of scale you create).

16h agoHN ↗

Build a water desalination plant next door. Make it a twofer

16h agoHN ↗

Agreed, considering that sor.say future wars will be around (drinking) water it seems reasonable to at least link some cost to the brine or the water required.

3h agoHN ↗

They used an even easier method than what's described in the other comments: the salt comes from the initial construction of the SPR caverns.

When they first built the SPR, they filled it with water to wash away any easily-dissolvable salt features as well as any impurities inside the cavern. The result of filling the cavern and letting it sit for a while is saturated brine: eventually all the salt that can be dissolved is dissolved. Then they pumped that brine to aboveground brine ponds.

Those brine ponds contain exactly the amount of salt water needed to completely fill the cavern with saturated brine. So future drawdowns just use the same water that has already been saturated. Some of the water will evaporate on the surface, leaving behind salt crystals at the edges of the brine pond, but the crucial thing to remember is the quantity of salt in the newly created brine pond is equal to the amount of salt needed to generate enough saturated brine to completely fill the cavern. Because that's where it came from in the first place. So if you need to replenish it with more water, you just pump in fresh water, it dissolves the extra salt in the brine pond, filter out any surface guck, and then pump it back into the cabin.

Periodically you might want to add a little extra salt if say the cavern expands or wind erosion carries salt away from the dry brine pond bed. But this quantity is much less, it's the delta in cavern size, not the full initial size of the cavern.

1h agoHN ↗

Amazing -- appreciate the explanation.

17h agoHN ↗

as well store the oil in those tanks

Salt does not burn, unlike oil. It would be sufficient to store dry salt, and prepare the brine during the pumping. Still a lot of hassle, of course.

14h agoHN ↗

Please, literally every other country in the world store their petroleum reserve in surface tanks. We have fifty years of experience in designing the safety systems around oil tanks, and the only recent major incidents are from drone strikes in Russia and Saudi Arabia. Just because the US luck out in having the specific geological formation to store oil cheaply doesn't mean the alternative is untenable.

It would be sufficient to store dry salt

Absolutely impractical. Storing and moving around solids in the megatons is very difficult compared to liquids that can be pumped. For comparison, the absolute largest solids moving operation in the world is a copper mine in Chile, it moves 300,000 metric tonne of mineral per day. The east-west pipeline in Saudi Arabia can move three times that in liquid, 1,000,000 metric tonne per day.

12h agoHN ↗

This method appears to be, in nearly every way, far better suited for purpose.

16h agoHN ↗

You don't need tanks to store the brine, just a huge pit/pool. If you look at satellite imagery, that giant pit with brine in it is exactly what they have next to the storage facilities.

16h agoHN ↗

Yes but the risks associated with storing brine are far less than oil. Brine leaks out? It might kill the flora nearby but rain will eventually wash it away. Someone blows up the brine tank? Divert some freshwater until you can rebuild.

But in reality, storing all of that brine would be a massive undertaking on its own. The largest salt cavern is 37M barrels which equates to a circular pond that's 600m across and 20m deep. That's huge. And of course you don't want the brine seeping into the ground water so it needs a good liner. But I suppose you really don't need a pond that big, how often are we completely draining the cavern anyway? We're at half capacity right now and that's the lowest it's been in 50 years. Normally it's been much much higher. So you really don't need all that brine, just enough for the normal ebb and flow of the reserves, maybe like 10%. In the event the reserves get drained, divert some freshwater to compensate.

14h agoHN ↗

Do they really have brine storage tanks for enough brine to pump out all the oil? If true, they would have just exectly the right volume of above-ground tanks to just store the oil in the first place and not mess with all these caverns and brine and whatnot.

13h agoHN ↗

They most likely truck in the brine from a mixing facility to reclaim the oil and truck out the brine to disposal when refilling the oil stock.

39m agoHN ↗

You could store the salt. You go up far beyond saturation. Salt sediments on the floor (which also might seal it). When you need brine you pump in seawater into a tunnelsystem in the sediment. The saturated brine should be lighter and further up. Overflow to second basin, where it's pumped into the cavern. Thus size comes down to whatever size is needed to store enough salt and or, be big enough to guarantee a certain rate of volume of fully saturated water per time; so basically dimensions that guarantee a phase separation and high enough diffusion rate. And some bad ass pumps (or have the basin be below sealevel and a dam with gates; probably the pumps for reasons of security>efficency in that case)

12h agoHN ↗

That doesn't solve the someone-might-blow-it-up design problem cited in TFA.

17h agoHN ↗

It would be cool to see what these look like in a photo but I guess they're never empty of liquid. I wonder what happens to the oily water after we use it? Do we boil it until it evaporates?

17h agoHN ↗

There was a good comment on r/oil by someone who worked on the engineering for the SPR. Unfortunately it's fallen off the front page and I can't find it now, but:

Also, the more water we pump in, the more salt leeches into the water and the more the bottom of the chamber deforms, creating shear forces in the upp walls that lower its overall structural integrity.

It turns out that it's trivially easy to prevent the water from leeching out the salt. They presaturate the water with salt, so that it already contains the maximum amount of salt that can be dissolved for a given temperature. When they pump the brine out, it goes into aboveground brine pools that can easily be seen on satellite imagery. The salinity of this brine can easily be controlled: if you want to expand the cavern, you mix it with freshwater so the brine dissolves more of the edges, if you don't you pump it back in as brine.

Edit: Here, found some satellite imagery of one of the SPR sites:

https://maps.app.goo.gl/B8XJ9TVhQfcdErky5

You can clearly see the brine pond, which is as big as the aboveground portion of the SPR itself.

15h agoHN ↗

Are the round things brine ponds? They look like floating roof tanks

13h agoHN ↗

They look like above ground pits. Empties are showing the white paint and ones with brine look dark.

9h agoHN ↗

They’re oil tanks. The ponds are open air ponds.

14h agoHN ↗

I was unaware of this; that's important information and I'll keep it in mind going forward.

9h agoHN ↗

the brine pond.

Then why not store the oil there directly instead of going all the trouble of pumping it in and out of the caverns? Is it so it doesn't rain on it?

8h agoHN ↗

Crude oil is sketchy stuff. All sorts of VOCs, etc evaporate from it. Some valuable, some, flammable, some will merely kill you. Keeping it confined makes all that more manageable.

8h agoHN ↗

TFA lays it all out, oil out in the open is exposed to attack/lightning strikes/etc.

6h agoHN ↗

Are you advocating for long term crude oil storage in open air oil lakes?

6h agoHN ↗

If the sides of the pond collapse (which happens a lot with mine tailings), then you have something resembling a oil pipeline rupture (which also happens a lot, but some states make it illegal to get video footage of it) which is a rather toxic situation needing soil to be bulldozed and either buried or burned.

3h agoHN ↗

Sun, rain, hurricanes, wind, debris is not friendly to long term oil storage.

7h agoHN ↗

Huh, of course. Like in salt farming, after harvesting the salt they wash it with saturated brine so it doesn’t just dissolve again.

20h agoHN ↗

How long does the crude last uner these conditions? Refined oil products like gas have pretty limited shelf lives (I think 6-12 months for gas).

20h agoHN ↗

well it's been underground in similar conditions for a couple dozen million years, so I think a while

19h agoHN ↗

Under ideal conditions - about 200 million years at least. In the salt, I'm not sure.

17h agoHN ↗

In the salt it's pretty similar. The salt caverns are basically just like the conditions where the early, easily-exploitable oil deposits ("gushers") were.

18h agoHN ↗

One time I heard the limited shelf life is by design to avoid consumers hoarding. Diesel OTOH fares better

16h agoHN ↗

No, it's because gasoline is not a very thoroughly refined chemical, so it basically has a bunch of aromatic rings, benzene, and all sorts of monomers floating around, that rapidly (~year or two) turn into varnish and other polymerized nastiness when they oxidize and crosslink. I believe gasoline was originally a refinery byproduct that was used because it was so cheap as a fuel.

Diesel and other heavier fuels generally are much closer to aliphatic hydrocarbons (straight chains, not aromatic) and so are much more storable, because aliphatic hydrocarbons have much less opportunity for oxidation (they're like saturated fat, i.e. much more stable).

You can get polymerization inhibitors to put into gasoline if you want it for long term storage, with the caveat that they produce some nastiness at the bottom of tanks that you'll have to avoid when pumping it out, and I think they can also slightly reduce the octane rating.

29m agoHN ↗

Typically, though, the diesel bug only happens in the interface between the water and the fuel itself, so if you have a proper filter and separator on the pumping system it won't be a factor.

Gasoline, when it goes bad, goes bad from top to bottom and is not recoverable through e.g. a centrifuge like https://www.youtube.com/watch?v=x4Fdu3e4gYw

19h agoHN ↗

What do they do with the brine when they fill it back up with oil?

And do they use fresh water?

19h agoHN ↗

I’m certain engineers have considered this, but it doesn’t seem answered anywhere: why not just pump the original brine back in to move around the oil? Wouldn’t that at least prevent eroding the storage unit and causing it to fail?

Unrelated: dang, he wasn’t underselling this being a pretty elegant solution! I never would’ve thought of it, for sure.

19h agoHN ↗

Wouldn't you then need to solve the similar problem of where to store the brine in the meantime?

17h agoHN ↗

Yeah, but that’s probably easier to solve than eventually losing the whole dang structure!

1h agoHN ↗

Depends a lot on how quickly it erodes the salt dome and the costs of using and storing the brine instead of using fresh water. Storing that much brine runs into the same space issues that storing the oil above ground would, slight ameliorated by the brine at least not being flammable.

12h agoHN ↗

Yes, that's what they do. The brine is stored in huge pools next to the extraction site.

19h agoHN ↗

One fun fact I’ve heard is that the strategic oil reserve requires like 100-150 million barrels of oil to maintain operational pressure and even be functional. This means we can’t draw it down to zero; not even close.

12h agoHN ↗

Why can't they pump more water down there to create pressure?

6h agoHN ↗

I encourage you to do some digging using filetype:pdf on a search engine. The amount of documentation available on the SPR is fascinating.

From what I found out, turns out the question of SPR design and operational limits is a complex issue to say the least. The SPR is a big system composed of many sub-systems and there are entangled legal, policy, technical issues at play. Interesting stuff!

18h agoHN ↗

Dumb question but why not pump it back into where it was pulled from.. or just leave it in a a reserve paid for by the gov

18h agoHN ↗

Brine is useful to sell to industry.

AIUI, salt caverns don’t like to be filled with brine because they become more susceptible to temperature changes of the earth and pressure from surrounding rock. Both can heat the cavern, which is bad for structural integrity.

17h agoHN ↗

This way the US Gov can be a buyer of last resort. Backdoor bailouts.

18h agoHN ↗

One thing about salt domes: they almost by definition are surrounded by very low-permeability dry soils. Because otherwise they would have dissolved long ago!

And a related way to use salt domes is for natural gas storage.

17h agoHN ↗

US has some of the world's largest natural gas deposits, and is a major producer of helium, so it makes less sense to have a strategic helium reserve. Even the SPR was created in the aftermath of the last middle east oil crisis, back when the US was a major net importer of oil, and many people have been saying we should scrap the SPR, as no major oil producer has an SPR.

The problem with the SPR is that it is used to manipulate prices, which was why Biden on the one hand cut oil leases and reduced domestic oil production, but then did major SPR drawdowns before the election to hide the realities of these policies. Now Trump is playing the same game, sanctioning oil producers and creating wars in the middle east, but using the SPR to hide the effects of these policies until after the midterm.

In both cases, we'd probably be better off without an SPR, so all of these actions against oil production would be immediately felt at the pump before the election and voters could respond quickly. It's just too tempting to have this tool to manipulate oil prices that incumbents can use before elections.

13h agoHN ↗

Huh? The oil price shock in 2022 and resulting SPR drawdown had nothing to do with oil leases. Prices almost doubled worldwide in the span of a week after Russia invaded Ukraine. Look at any chart of petroleum products and it's clearly visible as a huge, almost vertical line.

The explicit purpose of the SPR is to function as a lever to smooth temporary supply shocks. The US increasing oil output by a few percent in either direction wouldn't have made any difference to global disruption of oil markets from a major exporter to Europe starting a war and then getting sanctioned.

17h agoHN ↗

Another related way is to store nuclear waste. The properties (as described in this article, impermeable/self sealing etc.) sound great until the reality that water dissolves salt comes knocking and further confronts you with the reality that salty brine corrodes nuclear waste barrels...

11h agoHN ↗

Interesting that these articles don't mention China's storage capacity, which is bigger and more crucial these days.

Maybe China publishes less official knowledge?

1h agoHN ↗

China is much more cagey about the exact levels and capacity of it's version of the SPR but there's a lot of evidence they're drawing pretty heavily from it to cut their oil imports which has had a big impact on reducing the impact of the whole illegal war in Iran situation.

17h agoHN ↗

This is so incredibly interesting and one of the best things I’ve seen on HN recently. Thank you for the awesome post!

15h agoHN ↗

Hmm...The Math does not hold up. 300 feet diameter circular area is 1.62 acres. So at max you would need about 1130 x 2 = 2260 acres and not 45000 acres as projected !

From the post :

"300 feet in diameter..."

"To hold 714 million barrels of oil (the full capacity of the Strategic Petroleum Reserve), you’d need about 1,130 of these tanks. If you use the standard capacity of the largest commercial petroleum farms (e.g., in Cushing, Oklahoma), you need about 45,000 acres to store these tanks."

15h agoHN ↗

You can’t tile circular objects at 100% efficiency and you definitely don’t want these tanks to touch.

You further need space between them with each other and the edge of your property for a host of other reasons such as being able to inspect and paint each tank. Thus looking at actual facilities is going to give you vastly more resources options than just looking at the footprint of each tank.

12h agoHN ↗

You have a point. However, the requirement estimate of 45000 acres is off by 10 times ! I have seen some of these tanks - even accounting for spacing between them; at best one needs maybe a total of 5000 acres.

BTW - If everyone followed Elon Musk's projection of 100 x 100 miles of Solar; then the US would not need these fossil fuels. See : https://www.reddit.com/r/Futurology/comments/1vq0uu6/solar_i...

11h agoHN ↗

Being realistic is the opposite of being off.

As the article points out fire is a real concern here, which is one of many reasons making salt caverns so appealing. But it’s also a major driver for distance between each above ground tank, you want to isolate risks so a single failure doesn’t propagate across the facility.

1h agoHN ↗

Even with the existing spacing tank farms have a nasty habit of catching a large portion of their tanks on fire at once when a fire breaks out in one. It's really hard to contain and extinguish the amount of oil in one of those huge tanks.

9h agoHN ↗

It doesn't really matter. 45,000 acres for a tank farm, or multiple tank farms, would be basically free by the standards of this project. Yes it's "an area the size of Washington DC" but it wouldn't be in Washington DC, where rent is expensive, it would be on some low-value desert land that the military might otherwise use as an artillery range.

Storing it in underground salt caverns is more secure, not necessarily cheaper.

1h agoHN ↗

Just looking at the tanks ignores the support and access areas around the tanks. Yes they wouldn't scale exactly linearly together but taking an existing farm and multiplying it up to get the capacity is better than just looking at the raw area taken up by the tanks. There's all sorts of pumping and piping that goes into these farms you'd have to route into the above ground mega tank farm version of the SPR.

We're decades away from the point we could have even possibly built 100 miles squared of solar farm much less the batteries to store it and replacing all the uses of fossil fuel that aren't just electrical generators. Even if we snapped our fingers and magically replaced every extant car, plane, truck and train with an electric equivalent and had all the infrastructure there's still industrial uses of petroleum that would drive a desire for strategic reserves of the stuff.

13h agoHN ↗

I always thought the smartest thing to do since countries chose to accept fiat currency in exchange for oil was to create as many patroleum reserves as possible and print as much money to buy as much oil to store for later use as they would sell.

11h agoHN ↗

It was a great plan, but all it took to foil it was one orange man in the Epstein files.

8h agoHN ↗

The salt caves were only designed to be used a few times and to be used for maximum draw down, weren't they?

7h agoHN ↗

Peter Zeihan did a 5m video [1] on this 10 days ago (give or take) - and the history of how they've been used, and why the original design (big draw-downs during major emergencies - perhaps 5 of them, ever) hasn't lent itself well to the way they ended up being used.

[1] https://www.youtube.com/watch?v=j5g0Ud8i0C0

7h agoHN ↗

Keep the oil secure against attacks by our adversaries. This is an especially hard challenge because petroleum has this tendency to light on fire, so a huge concentration of it is especially difficult to keep safe.

Release oil quickly so it can reach the market during a supply disruption.

But what if the adversaries destroy the refineries or other downstream equipment which is much simpler to do?

5h agoHN ↗

I think the world events we’ve seen over the last 4 or so years (especially last 12 months), will mean both new (and existing) data centers and refineries will begin to have counter measures beyond a security guard and some fences.

Anti-drone equipment for one. The pipelines themselves are tough to secure given how long some are.

Closer and closer to a cyberpunk world with faux (or real) military at these data centers and refineries in areas that may not be in direct active conflict.

Imagine building a new refinery, the money and time alone, only for a few thousand dollar drone to be snuck in and launched? Insurance on these facilities going to start requiring far more elaborate physical security measures.

5h agoHN ↗

Where can I find more of these incredibly clever engineering solutions explained so simply? Love reading about this sort of stuff.

3h agoHN ↗

Love the comic sans. It was a different time. :_)

3h agoHN ↗

And it's going to costs billions to rebuild it in a few years after they finish destroying it by 2028

So I was wondering the other day how many gallons of crude the Epstein Memorial Ballroom could hold if it was sealed off, maybe "AI" can figure it out....