Consider the following plumbing circuit filled with viscous liquid and driven by the pump providing pressure...
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Consider the following plumbing circuit filled with viscous liquid and driven by the pump providing pressure AP: 2rL/2 2r e) Calculate relative resistances for each L/2 leg of the circuit labeled with the length and radius in terms of L = 1[m] and r = 0.1[m]. L/2r 2r L L L/2. f) Find the equivalent relative resistance AP Rr of the circuit. L/2 9) The liquid is motor oil with a viscosity of 200 cPoise. Use your relative resistance to calculate the resistance in [Pa*s/m³] and the current from the pump. h) By analogy with the electric circuit, the power would be the current times AP. Calculate this value and show that it has the correct units for power. Data: Copper thermal conductivity = 385.0[W/m*K] heat capacities: water 4.19[J/g*K] Copper: 0.385 [J/g*K] density: Copper: 8.96x10° [kg/m³] 1[atm] = 101.325 [kPa] 1[J] = 1[kPa] 1[L] %3D 1.5r Consider the following plumbing circuit filled with viscous liquid and driven by the pump providing pressure AP: 2rL/2 2r e) Calculate relative resistances for each L/2 leg of the circuit labeled with the length and radius in terms of L = 1[m] and r = 0.1[m]. L/2r 2r L L L/2. f) Find the equivalent relative resistance AP Rr of the circuit. L/2 9) The liquid is motor oil with a viscosity of 200 cPoise. Use your relative resistance to calculate the resistance in [Pa*s/m³] and the current from the pump. h) By analogy with the electric circuit, the power would be the current times AP. Calculate this value and show that it has the correct units for power. Data: Copper thermal conductivity = 385.0[W/m*K] heat capacities: water 4.19[J/g*K] Copper: 0.385 [J/g*K] density: Copper: 8.96x10° [kg/m³] 1[atm] = 101.325 [kPa] 1[J] = 1[kPa] 1[L] %3D 1.5r
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Related Book For
Fundamentals of Thermodynamics
ISBN: 978-0471152323
6th edition
Authors: Richard E. Sonntag, Claus Borgnakke, Gordon J. Van Wylen
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