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A Perfect Shape Factor Corresponding States Principle for Pure Non-Polar and Polar Fluids
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作者 陈新志 王连尉 侯虞钧 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2001年第4期421-426,共6页
In the two-parameter corresponding states principle(CSP), the critical compressibility factors of the fluid under study(called 'a' fluid) and the reference fluid(called 'o' fluid) must be identical. Th... In the two-parameter corresponding states principle(CSP), the critical compressibility factors of the fluid under study(called 'a' fluid) and the reference fluid(called 'o' fluid) must be identical. This is not generally observed in nature. To overcome this limitation, a perfect shape factor CSP is proposed in which the compressibility factors of 'a' and 'o' fluids are corresponded perfectly by introducing a new pressure shape factor 8. Using methane as the 'o' fluid, the shape factors of many fluids are calculated from PVT properties at saturation state and the second virial coefficients. Models are also formulated for the shape factors with the assumption of is a function of temperature and volume while 6 and 5 are temperature dependent only. The models described the shape factors satisfactorily in whole region including vapor, liquid and their co-existing phases. The perfect shape factor CSP could be applied for both polar and non-polar fluids. 展开更多
关键词 perfect shape factor corresponding states principle thermodynamic property equation of state
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Impact of human motion on TVOCs inhalation dose under side re-circulated ventilation
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作者 张泉 曾丽萍 +2 位作者 谢更新 张国强 牛建磊 《Journal of Central South University》 SCIE EI CAS 2009年第4期599-607,共9页
The main objectives were to (1) calculate the total volatile organic compounds (TVOCs) inhalation dose, (2) analyze the proportions of human’s inhaled contaminant dose from different sources, and (3) present a newly ... The main objectives were to (1) calculate the total volatile organic compounds (TVOCs) inhalation dose, (2) analyze the proportions of human’s inhaled contaminant dose from different sources, and (3) present a newly defined ratio of relative inhalation dose level (RIDL) to assess indoor air quality (IAQ). A user defined function based on CFD (computational fluid dynamics) was developed, which integrated human motion model with TVOCs emission model in a high sidewall air supply ventilation mode. Based on simulation results of 10 cases, it is shown that the spatial concentration distribution of TVOCs is affected by human motion. TVOCs diffusion characteristic of building material is the most effective way to impact the TVOCs inhalation dose. From the RIDL index, case A-2 has the most serious IAQ problem, while case D-1 is of the best IAQ. 展开更多
关键词 indoor air quality (IAQ) human motion computational fluid dynamics (CFD) simulation volatile organic compounds(VOCs) CONTAMINANT relative inhalation dose level (RIDL) index
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