c) Moist air enters a heated duct (shown in Figure 2) at 1.03421 bars, 10 C,...
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c) Moist air enters a heated duct (shown in Figure 2) at 1.03421 bars, 10 °C, 60% relative humidity and a volumetric flow rate of 2.35m³/s. Water is sprayed into the moist air stream at a temperature of 16 °C and a flow rate of 0.02 kg/s. Assuming negligible pressure drop in the short duct, and find (i) the relative humidity at the outlet of the duct, [13] the pressure of the mixture at the outlet of the duct, [8] (iii) the rate of heat transfer for steady state operation at T₂ = 14 °C. [6] m,1 1 Moist Air At Inlet lict in Figure 2: A heated duct Water Moist Air At Outlet 2 Ţ₂ c) Moist air enters a heated duct (shown in Figure 2) at 1.03421 bars, 10 °C, 60% relative humidity and a volumetric flow rate of 2.35m³/s. Water is sprayed into the moist air stream at a temperature of 16 °C and a flow rate of 0.02 kg/s. Assuming negligible pressure drop in the short duct, and find (i) the relative humidity at the outlet of the duct, [13] the pressure of the mixture at the outlet of the duct, [8] (iii) the rate of heat transfer for steady state operation at T₂ = 14 °C. [6] m,1 1 Moist Air At Inlet lict in Figure 2: A heated duct Water Moist Air At Outlet 2 Ţ₂
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Related Book For
Fundamentals Of Momentum Heat And Mass Transfer
ISBN: 9781118947463
6th Edition
Authors: James Welty, Gregory L. Rorrer, David G. Foster
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