non-isentropic process
becoming non-isentropic
non-isentropic flow
isentropic non-isentropic
non-isentropic conditions
analyzing non-isentropic
non-isentropic system
modeling non-isentropic
ideal non-isentropic
assumed non-isentropic
the non-isentropic expansion significantly reduced the system's efficiency.
we modeled the non-isentropic flow through the nozzle with complex boundary conditions.
real-world processes are often non-isentropic due to friction and heat transfer.
the non-isentropic compression resulted in a higher final temperature.
analyzing non-isentropic behavior is crucial for accurate thermodynamic calculations.
the non-isentropic pipeline flow exhibited considerable pressure losses.
we investigated the impact of non-isentropic conditions on turbine performance.
the simulation included a non-isentropic model to represent realistic losses.
a non-isentropic process deviates from the ideal isentropic assumptions.
the non-isentropic compressor stage showed lower efficiency than expected.
understanding non-isentropic effects is vital for designing efficient systems.
non-isentropic process
becoming non-isentropic
non-isentropic flow
isentropic non-isentropic
non-isentropic conditions
analyzing non-isentropic
non-isentropic system
modeling non-isentropic
ideal non-isentropic
assumed non-isentropic
the non-isentropic expansion significantly reduced the system's efficiency.
we modeled the non-isentropic flow through the nozzle with complex boundary conditions.
real-world processes are often non-isentropic due to friction and heat transfer.
the non-isentropic compression resulted in a higher final temperature.
analyzing non-isentropic behavior is crucial for accurate thermodynamic calculations.
the non-isentropic pipeline flow exhibited considerable pressure losses.
we investigated the impact of non-isentropic conditions on turbine performance.
the simulation included a non-isentropic model to represent realistic losses.
a non-isentropic process deviates from the ideal isentropic assumptions.
the non-isentropic compressor stage showed lower efficiency than expected.
understanding non-isentropic effects is vital for designing efficient systems.
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