I'm putting 20KW on my front hill and have a slight problem. The buried conduit is 3/4" which means I can only get 8-2 UFB to run through it. Since it's 60 feet under ground plus 75 feet through the attic to get to the inverters I could split the run with a splice and go 60' 8-2 and 75' 6-2.
From the sticky spreadsheet on cable losses the all 8-2 run would result in .46% loss while the split would result in .37%. Is that extra 0.09% worth it? My guess is the splice loss would be negligible but it doesn't seem worth the hassle and expense. I could go 75' 4-3 to get down to .31% loss or a .15% differential but I would think at that point, the cost of the wire would make any gains negligible.
Doing the math, simulated yearly yield would be 21770KWH at $0.067/KWH or about $1460/yr. If my logic is correct that means a .09% loss would translate to $1.30/yr. while a .15% loss would translate to $2.20/yr. Extra copper cost would be $165 for 6-2, (+ cost of splices 20 yr. payback), and $515 for 4-3, (never payback).
Am I missing something? If my math is correct the splice just doesn't pay.
From the sticky spreadsheet on cable losses the all 8-2 run would result in .46% loss while the split would result in .37%. Is that extra 0.09% worth it? My guess is the splice loss would be negligible but it doesn't seem worth the hassle and expense. I could go 75' 4-3 to get down to .31% loss or a .15% differential but I would think at that point, the cost of the wire would make any gains negligible.
Doing the math, simulated yearly yield would be 21770KWH at $0.067/KWH or about $1460/yr. If my logic is correct that means a .09% loss would translate to $1.30/yr. while a .15% loss would translate to $2.20/yr. Extra copper cost would be $165 for 6-2, (+ cost of splices 20 yr. payback), and $515 for 4-3, (never payback).
Am I missing something? If my math is correct the splice just doesn't pay.
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