a) c) d) A flow of moist air at 100 kPa, 40 C and a relative...
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a) c) d) A flow of moist air at 100 kPa, 40 °C and a relative humidity of 31.68% enters a constant pressure, steady flow device. This moist air is cooled in the device to an exit temperature of 25°C. P₁ = 100K PA T₁ = 40°C 8=31.68% 0 9 P₂ =100KPA. T2= 25°C Find the humidity ratio, ₁, of the entering flow. (kg vapor per kg dry air) Find the dew point temperature given the inlet conditions. Will water condense? Find the humidity ratio, 02, of the exiting flow. (kg vapor per kg dry air) Find the specific heat transfer (kJ/kg dry air) required to cool the flow from the entering conditions to the exiting conditions. a) c) d) A flow of moist air at 100 kPa, 40 °C and a relative humidity of 31.68% enters a constant pressure, steady flow device. This moist air is cooled in the device to an exit temperature of 25°C. P₁ = 100K PA T₁ = 40°C 8=31.68% 0 9 P₂ =100KPA. T2= 25°C Find the humidity ratio, ₁, of the entering flow. (kg vapor per kg dry air) Find the dew point temperature given the inlet conditions. Will water condense? Find the humidity ratio, 02, of the exiting flow. (kg vapor per kg dry air) Find the specific heat transfer (kJ/kg dry air) required to cool the flow from the entering conditions to the exiting conditions.
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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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