6. Discuss the difference(s) between an actual and an ideal Rankine power cycle. Please select all answers that apply: a) For an actual cycle, the states are fixed and enthalpy change relations can be applied; b) Governing cycle equations are derived from mass and energy rate balances and they apply equally when irreversibilities are present or not for idealized performance. c) For an ideal cycle, frictional pressure drops are absent through the boiler and condenser as processes occur at constant pressure. d). For an ideal cycle, flow through the turbine and pump are adiabatic and without irreversibilities. e) Ideal process through the turbine and pump are considered isentropic.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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6. Discuss the difference(s) between an actual and an ideal Rankine power cycle.
Please select all answers that apply:
a) For an actual cycle, the states are fixed and enthalpy change relations can be applied;
b) Governing cycle equations are derived from mass and energy rate balances and they apply equally when
irreversibilities are present or not for idealized performance.
c) For an ideal cycle, frictional pressure drops are absent through the boiler and condenser as processes occur at
constant pressure.
d). For an ideal cycle, flow through the turbine and pump are adiabatic and without irreversibilities.
e) Ideal process through the turbine and pump are considered isentropic.
Transcribed Image Text:6. Discuss the difference(s) between an actual and an ideal Rankine power cycle. Please select all answers that apply: a) For an actual cycle, the states are fixed and enthalpy change relations can be applied; b) Governing cycle equations are derived from mass and energy rate balances and they apply equally when irreversibilities are present or not for idealized performance. c) For an ideal cycle, frictional pressure drops are absent through the boiler and condenser as processes occur at constant pressure. d). For an ideal cycle, flow through the turbine and pump are adiabatic and without irreversibilities. e) Ideal process through the turbine and pump are considered isentropic.
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