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First Water cooling build- Need Help!

post #1 of 65
Thread Starter 
I recently invested in a custom water cooling loop for my FX 8350 and R9 390. I went with a universal GPU block, CPU block and two 240mm radiators. One radiator is mounted to the top as an exhaust and the other is being used in the front as intake. The order is from reservoir-pump-front rad-GPU-CPU-top rad-reservoir. The GPU seems to be pretty cool at around 50c max when overclocked with voltage. However, the CPU temps get pretty high. Even if I lower CPU voltage and frequency, the temp is still around the same. Typically 52c max at 4.6Ghz with p95. My Noctua D15 did a better job. Is it the order of the loop? Should I have placed a radiator between the CPU and GPU and instead of going from GPU to CPU should I have gone CPU to rad to GPU?

I've also noticed that at the beginning of the loop, the water pressure can be felt from the tubes but after it crosses the GPU and goes to the CPU, it's like I can't feel the water pressure at all. Is that an indication that the pump isn't good enough to circulate the water fast enough?

Please do help me out as I'm really lost on this one.

P.S- Since distilled water isn't available where I live I'm using Reagent grade deionized water. Is that okay? I've also included images and a short video clip of the reservoir. Should I fill it with more deionized water?










Parts used:

2 240mm rads- https://m.ebay.in/itm/240MM-monster-copper-radiator-for-CPU-water-Cooling-PC-liquid-cooling-CPU-liquid-/252520776197

Pump- https://m.ebay.in/itm/DC-12V-Water-Pump-500-L-H-G1-4-CPU-water-cooling-system-DC-Pump-solar-pump-/262602687529

Reservoir- https://m.ebay.in/itm/Computer-Cylinder-Transparent-Acrylic-reservoir-for-CPU-Water-Cooling-Tank-/252525159336

CPU water block- https://m.ebay.in/itm/CPU-Water-Cooling-Block-Copper-Base-For-AMD-INTEL-processors-PC-liquid-cooling-/262603513095

Universal GPU block.

Price- $400
Edited by PunkX 1 - 9/26/16 at 7:39pm
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post #2 of 65
Flow look good. GPU > CPU, a R9 390 can consume quite a lot and it might rise the water temperature so much that your CPU never get the benefit of cool water.
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post #3 of 65
Thread Starter 
Quote:
Originally Posted by Just a nickname View Post

Flow look good. GPU > CPU, a R9 390 can consume quite a lot and it might rise the water temperature so much that your CPU never get the benefit of cool water.

Is there anything I can do to remedy it?
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post #4 of 65
When stress testing (Linx or P95, just CPU), what CPU temp you got?
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post #5 of 65
Thread Starter 
Quote:
Originally Posted by Just a nickname View Post

When stress testing (Linx or P95, just CPU), what CPU temp you got?
Max around 52c at 4.6Ghz.
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post #6 of 65
Both rads should be configured as intake (As to get the coolest air through them). The exhaust inside will easily be pulled out by your rear 120mm Exhaust fan.

Also, did you just have your CPU cooled by the air cooler? If so, remember now that your loop is both the GPU and CPU.

EDIT: And fill your res as high as it goes, this is the way to eliminate air into the loop.

TCO
Edited by TheCautiousOne - 9/26/16 at 12:52pm
     
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post #7 of 65
Thread Starter 
Quote:
Originally Posted by TheCautiousOne View Post

Both rads should be configured as intake (As to get the coolest air through them). The exhaust inside will easily be pulled out by your rear 120mm Exhaust fan.

Also, did you just have your CPU cooled by the air cooler? If so, remember now that your loop is both the GPU and CPU.

EDIT: And fill your res as high as it goes, this is the way to eliminate air into the loop.

TCO

Yeah I did only have it air cooled before with the Noctua D15. Will fill up the reservoir till the top today. Also does the order matter? Will connecting it to the CPU first help?
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post #8 of 65
Quote:
Originally Posted by PunkX 1 View Post

Yeah I did only have it air cooled before with the Noctua D15. Will fill up the reservoir till the top today. Also does the order matter? Will connecting it to the CPU first help?

Right. So first you had just the CPU cooled, now you are bringing the heat from the GPU into the loop, and to answer a question that was stated before
Quote:
Typically 52c max at 4.6Ghz with p95. My Noctua D15 did a better job. Is it the order of the loop? Should I have placed a radiator between the CPU and GPU and instead of going from GPU to CPU should I have gone CPU to rad to GPU?

The Max temp of 52c is chump change, that is excellent. Staying below 60C is magnificent. What are the GPU temps? Do you have a monitor for it?

MSI afterburner is what I use to monitor the Graphics card, though HWmonitor will do the trick for the FX I do believe.

This pictures Shows=



That the flow pressure starts at the pump, grabs the heat from the GPU then puts it to the CPU, the hits the radiator back to the Res for a complete loop.

When the fluid comes back from both of the rads, it is essentially at it's "Coolest" point, then cycles again. After a certain amount of time running this way (Gaming for an hour) your liquid temp will normalize. The order doesn't matter as long as the flow is constantly moving.

Another thing that will help, is to make your tube runs as short as possible so the coolant doesn't keep the heat as long in your tubing runs, and in turn gets cooled quicker.

Here is an example.




TCO
     
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post #9 of 65
Thread Starter 
Quote:
Originally Posted by TheCautiousOne View Post

Right. So first you had just the CPU cooled, now you are bringing the heat from the GPU into the loop, and to answer a question that was stated before
The Max temp of 52c is chump change, that is excellent. Staying below 60C is magnificent. What are the GPU temps? Do you have a monitor for it?

MSI afterburner is what I use to monitor the Graphics card, though HWmonitor will do the trick for the FX I do believe.

This pictures Shows=



That the flow pressure starts at the pump, grabs the heat from the GPU then puts it to the CPU, the hits the radiator back to the Res for a complete loop.

When the fluid comes back from both of the rads, it is essentially at it's "Coolest" point, then cycles again. After a certain amount of time running this way (Gaming for an hour) your liquid temp will normalize. The order doesn't matter as long as the flow is constantly moving.

Another thing that will help, is to make your tube runs as short as possible so the coolant doesn't keep the heat as long in your tubing runs, and in turn gets cooled quicker.

Here is an example.




TCO

My GPU overclocked with +100mv in afterburner never exceeds 50c while gaming. I've noticed that as the GPU temp rises, the CPU temps rises with it as well. I was wondering if connecting the pump to the CPU-rad-gpu-rad would be better cause my CPU doesn't output that much heat as my GPU does. Your build looks really neat! thumb.gif I guess i need to work on the loop being shorter as mine looks like it's really long that towards the end of the loop i can't even feel the water pressure through the tubing.
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A pleasant surprise :)
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Kukumonster
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A pleasant surprise :)
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post #10 of 65
Thread Starter 
I've updated the thread with the parts used for water cooling the build.
Kukumonster
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Kukumonster
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A pleasant surprise :)
Cooler Master USP 100 Black Edition
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Amd Athlon II X3 435
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