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Hey everyone,

I've always wandered how we waste energy on cooling down our systems.
Our set of home appliances are not really energy efficient if observed as a whole.
We have fridges to cool down food and owens to heat it up.
Our fridges cool stuff down by pumping heat out of the main cabinet into a big radiator in the back of the fridge.

We also cool down our homes through AC with the same principle. We pump heat out of our rooms to a radiator outside that would release the heat to the atmosphere.
But again we heat water up for our showers using electricity or some sort of gas.

So, we basically cool some things down and heat others up without really connecting these devices.

I don't know how domestic water systems work on other parts, but here most of our homes have its own reservoir. Most of the time hidden in the ceiling or up in roof. These reservoirs store water coming from the street and they are installed high. When we open a fawcett the water runs from the reservoir through gravity.

When I had big aquariums I used a double serpentine system to exchange heat from the water inside the aquarium to my domestic pipe system, to cool down the water in the aquarium that was heated up because of the intense lights.

The double serpentine system is nothing more than two independent serpentine (like a coil) loops welded to each other in a way that would exchange heat by induction. The fluid in these loops never get in contact with each other directly.

Normally what we do with our custom water cooled loops is just to pump heat into our rooms and overload our room's AC, finally releasing it to the environment after that.

So, why couldn't we use the same process I used for my aquariums to cool down my computer? Coolant would flow trough one loop a double serpentine and at the same time room temperature water would flow through the other loop.
The water would return to the reservoir, maybe a little tiny bit warmer than it came and no water would be wasted.

I doubt that we could heat up a water reservoir using heat from a computer, that is not what I am proposing here. Probably the reservoir won't keep the heat and it would transmit the heat to the environment.

But I do believe on the benefits of such idea, you would get a fanless, radiator less water cooled system, and you wouldn't be pumping heat into your room and overloading your AC unit.

Wouldn't be that much more efficient?

Cheers,
Marcelo
WaterCoolerIdea.jpg

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1 minute ago, mgrisoli said:

-SNIP-

Others have tried similar cooling setups like that or even completely passive watercooling loops but would however run into the issue of evaporation since it's an open loop and get contaminated. If you wanted to utilize evaporative cooling linus made a video showcasing it below, the main issue though is the attic is not a cold space especially in summer it can get over 60C up there and can freeze if your in a cold weather climate. 

 

 

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The water is probably not distilled so you will end up with growth and/or corrosion depending whats in the water. Also where do you live that they have water reservoirs in your attic?

ƆԀ S₱▓Ɇ▓cs: i7 6ʇɥפᴉƎ00K (4.4ghz), Asus DeLuxe X99A II, GT҉X҉1҉0҉8҉0 Zotac Amp ExTrꍟꎭe),Si6F4Gb D???????r PlatinUm, EVGA G2 Sǝʌǝᘉ5ᙣᙍᖇᓎᙎᗅᖶt, Phanteks Enthoo Primo, 3TB WD Black, 500gb 850 Evo, H100iGeeTeeX, Windows 10, K70 R̸̢̡̭͍͕̱̭̟̩̀̀̃́̃͒̈́̈́͑̑́̆͘͜ͅG̶̦̬͊́B̸͈̝̖͗̈́, G502, HyperX Cloud 2s, Asus MX34. פN∩SW∀S 960 EVO

Just keeping this here as a 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Hey guys, thanks for your replies!

 

@SamStrecker

The non distilled water will not contact with the computer coollant, there would be two distinct loops.

I live in Brazil. Our water distribution system is low pressure and as many other places, we have reservoirs in the attic to assure/normalize the pressure.

 

@W-L

The non distilled water will not contact with the computer coollant, there would be two distinct loops.

The principle here is not the same as bong cooling. It would be just heat exchange between two liquids with different temperatures.

 

M

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3 hours ago, mgrisoli said:

Hey guys, thanks for your replies!

 

@SamStrecker

The non distilled water will not contact with the computer coollant, there would be two distinct loops.

I live in Brazil. Our water distribution system is low pressure and as many other places, we have reservoirs in the attic to assure/normalize the pressure.

 

@W-L

The non distilled water will not contact with the computer coollant, there would be two distinct loops.

The principle here is not the same as bong cooling. It would be just heat exchange between two liquids with different temperatures.

 

M

Yes using a heat exchanger will allow for that but doesn't mean the open loop will not get contaminates and clog. 

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6 minutes ago, mgrisoli said:

@W-L

Really not clear in the skecth but the open loop is your regular driking water, from the tap. 

It's clear but that's one of the issues as tap water has contaminates that can react with the loop, but the bigger issue is it's open since it can easily get clogged or bacteria growth. 

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@W-L

Did you notice the sink I tried to sketch on the left side?

The water in the reservoir will not just circulate in the cooling loop and then go back to the reservoir.

It always get used by the sink and refilled from the street (water distribution system).

What I failed to draw is a valve and a pipe from the street to fill in the reservoir. 

I never got a my water pipes clogged, I think the risk is low enough.

 

M

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Just now, mgrisoli said:

@W-L

Did you notice the sink I tried to sketch on the left side?

The water in the reservoir will not just circulate in the cooling loop and then go back to the reservoir.

It always get used by the sink and refilled from the street (water distribution system).

What I failed to draw is a valve and a pipe from the street to fill in the reservoir. 

 

M

So you are using mains water for cooling, and that is not an open loop then it's a closed water tank up top. As long as you keep the mains water side constantly running when the system is on it should work with the massive water volume. 

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@W-L

I think you are right, for the most of the time it will be a closed loop on both sides.

Except when you have a tap open, or somebody flushes the toilet or have a shower, etc..

My house has a 1500 gallons reservoir, that's why I said it doesn't matter how hot you run your system, you would hardly heat up that amount of water enough to reach critical temps.

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