Yes it does have a separate valve of which I try to restrict only the amount of flow needed for proper operation
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okay, good! So, it’s not 80-90% of the water just taking the path of least resistance through the chiller…Yes it does have a separate valve of which I try to restrict only the amount of flow needed for proper operation
The return I measured it from is the return that's actually closest to the pump from the manifold
Okay! So now we have some real-world numbers! — ~6gpm (observed flow) from one return! — assuming both are equal, that puts you at 12gpm total to both returns; leaving just a few gpm for your water chiller, and nothing more for further equipment additions…If my calculations are correct... my pump to the furthest return is producing 352.94 gallons per hour
So by increasing the size of the plumbing from 1" to 1.5" will that increase my flow? That's the million dollar questionOkay! So now we have some real-world numbers! — ~6gpm (observed flow) from one return! — assuming both are equal, that puts you at 12gpm total to both returns; leaving just a few gpm for your water chiller, and nothing more for further equipment additions…
this makes more sense, based on the known pump outlet and plumbing restrictions!
Short answer; yes.So by increasing the size of the plumbing from 1" to 1.5" will that increase my flow? That's the million dollar question
Unfortunately, I do not! — I’ve tried to stay away from “internet of things” devices after working with them professionally 5-9 years ago, and seeing how terrible reliability was…What's up my friend...do you know anything about the Neptune Trident?
What is the target flow rate (total) that you're looking for? I don't recall if that was addressed yet. (4x to 5x turnover rate usually...). You can't properly calculate head loss without a target flow rate.Thank you for your input...
At this moment I have invested in all the plumbing components so I can increase from 1" to 1.5", and a new pump. I'm hoping this will payoff by increasing flow, but in the meantime I will take you advice by measuring the flow.
So it took 5.5 seconds to fill a 1 quart container. Therefore it would take 22 seconds (5.5x4) to fill a 1 gallon container. There is 3600 seconds in 1 hour. If I have done the arithmetic correctly, (according to Google), one return to my display tank is producing a total of 163.64 gallons per hour with my current 1" plumbing. Does that sound correct?
Here are the results of the test from the return line furthest from the pump...it took 51 seconds to fill a 5 gallon bucket
If you decided you're switching pumps AND plumbing, then this is moot....(and why not just downsize the pump and keep your old plumbing?? 1" is fine for the flow rates your tank requires.)If my calculations are correct... my pump to the furthest return is producing 352.94 gallons per hour
Yes, without a doubt.So by increasing the size of the plumbing from 1" to 1.5" will that increase my flow? That's the million dollar question
Don't be coy. Consider sharing what you now about the risks and complications if it seems to apply.Are you familiar with the cavitation risks, plumbing complications, and starting issues associated with series plumbing pumps?
Double the pressure is double the pressure though....which I think was the only point. The rest is math and flow charts.we’re working with pumps that produce <10psi here… not operating at 100+psi… doubling the flow rate through 1” sch.40 by adding 10PSI of additional pressure is an unreasonable estimate….
The OP actually didn't ask to rebuild his plumbing, he asked how to get more flow with a second pump.I agree, but this isn’t what OP desires…
Unfortunately, I do not! — I’ve tried to stay away from “internet of things” devices after working with them professionally 5-9 years ago, and seeing how terrible reliability was…
— this might be a good opportunity to start a new thread relative to your Trident!
Well that’s inconvenient!Hello my friend...hope all is well. Since we last spoke I was able to repair my Trident on my own thanks to a couple of YouTube videos. I also have been working on replumbing my system. I may have run into a small problem. Using the diagram you drew up, I've run into a little snag. My sump is 18" tall. The design actually takes my return piping higher then the returns to the tank which are located at the bottom of each corner pre-filter. So once the water flow exits the manifold it will actually have to go down first before, then go up to the returns. Is that going to reduce my flow?
Could the 1.25” ball valve go elsewhere? Or, one valve at 1” on each return line?The only way I can possibly make it work is I'll have to remove the 1.25" ball valve