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Two water tanks, A and B, are 1.5km apart and you have been tasked with connecting the two reservoirs together so you can transfer water

Two water tanks, A and B, are

1.5km

apart and you have been tasked with connecting the two reservoirs together so you can transfer water from one reservoir to another. The two reservoirs are open to atmosphere and the surface of the two reservoirs is at the same level.\ Your goal is to achieve a volumetric flow rate of at least

1(m^(3))/(s)

using a pump that outputs

20kW

of power. Select a pipe material and size that would be appropriate for this application. You might have to research how to include power in a conservation of energy equation (covered in previous courses).\ Make any assumptions you feel are necessary. You do not need to consider minor losses if you choose not to. PLEASE USE DN1000 And steel as starting point and use Reynolds number. Help me find proper diameter that would achieve 1 m^3/s using 20kW power. please be clear need to learn.

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Two water tanks, A and B, are 1.5km apart and you have been tasked with connecting the two reservoirs together so you can transfer water from one reservoir to another. The two reservoirs are open to atmosphere and the surface of the two reservoirs is at the same level. Your goal is to achieve a volumetric flow rate of at least 1m3/s using a pump that outputs 20kW of power. Select a pipe material and size that would be appropriate for this application. You might have to research how to include power in a conservation of energy equation (covered in previous courses). Make any assumptions you feel are necessary. You do not need to consider minor losses if you choose not to

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