Developments in Humidity Standards and the Psychrometer Equation

被引:0
|
作者
Ian C.Kemp
Carl-Gustav Berg
机构
[1] Harwell Business Centre
[2] Fermi Avenue
[3] Didcot
[4] Hyprotech UK Aspen Technology
[5] U.K.
[6] FIN-20500 Abo
[7] Process Design Laboratory Faculty of Chemical Engineering
[8] Gemini Building
[9] Oxfordshire OX11 0QR
[10] Biskopsgatan 8
[11] FINLAND
[12] Abo Akademi University
关键词
psychrometry; humidity; standards; convection; diffusion; enhancement factor;
D O I
暂无
中图分类号
O642 [化学热力学、热化学、热力学平衡];
学科分类号
摘要
Determination of the wet-bulb temperature at the surface of a material is the basis of one class of humidity measuring instruments, and is important in industrial applications such as dryer modelling and simula tion. The psychrometer equation is a frequently used method of estimating wet-bulb temperature, and contains a psychrometer"constant". Analysis shows that this is in fact a variable coefficient affected by temperature, pressure, radiation and conduction effects, and the identity of the gas and vapour. Radiation and conduction affect the difference between adiabatic saturation temperature and indicated wet-bulb temperature. Inconsistencies in currently recommended values for the psychrometer coefficient, including published international standards, are identified and explained. Particular problems arise when the enhancement factor is applied to vapour pressure to account for non-ideality of gases. Special considerations are also needed for wet-bulb temperatures approaching the boiling point, where
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页码:63 / 71
页数:9
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