建筑能耗分析中透过玻璃窗日射负荷占有较大比重,B IN能耗计算方法(也叫温、湿频数法)认为该项负荷与温度成简单的线性关系,这样处理过于粗略。一方面日射负荷与温度不是直线关系;另一方面确定两点时,负荷所对应的代表温度的选取主观因...建筑能耗分析中透过玻璃窗日射负荷占有较大比重,B IN能耗计算方法(也叫温、湿频数法)认为该项负荷与温度成简单的线性关系,这样处理过于粗略。一方面日射负荷与温度不是直线关系;另一方面确定两点时,负荷所对应的代表温度的选取主观因素很大,缺乏客观标准。针对这个问题,先得到逐日最大日射得热因数DJ m ax,乘以逐时冷负荷系数得到透过玻璃窗日射负荷与温度的全年逐时详细关系。再按朝向统计不同温度下日射负荷的平均值,得出温度与冷负荷的实用关系,经过统计处理计算方法仍可以比较简单。并将这种方法求得的冷负荷与原方法作了比较。由于它反映了温度与该部分冷负荷的真实关系,使负荷和能耗计算精度提高。并以成都南向玻璃窗为例介绍了新统计关系的使用方法。展开更多
Accurate prediction of thermal radiation by applying rigorous model for the radiative heat transfer combined with the conduction and the convection has been performed for a single and double window glazing subjected t...Accurate prediction of thermal radiation by applying rigorous model for the radiative heat transfer combined with the conduction and the convection has been performed for a single and double window glazing subjected to solar and thermal irradiation. The glass window is analysed as a non-gray plane-parallel medium disctritized to thin layer as-suming the glass material as participating media in one-dimensional case, using the Radiation Element Method by Ray Emission Model (REM2). The model allows the calculation of the steady-state heat flux and the temperature distribution within the glass cover. The spectral dependence of the relevant radiation properties of glass (i.e. specular reflectivity, refraction angle and absorption coefficient) is taken into account. Both solar and thermal incident irradiations are applied at the boundary surfaces using the spectral solar model proposed by Bird and Riordan. The optical constant of a commercial clear glass material have been used. The calculation has been performed during winter period and the effect of the thickness of the glass for a single glazing and of the air layer between the two panels for double glazing has been studied. The result shows that increasing the air layer, the steady heat flux decreases and the temperature distribution within the glass changes.展开更多
文摘建筑能耗分析中透过玻璃窗日射负荷占有较大比重,B IN能耗计算方法(也叫温、湿频数法)认为该项负荷与温度成简单的线性关系,这样处理过于粗略。一方面日射负荷与温度不是直线关系;另一方面确定两点时,负荷所对应的代表温度的选取主观因素很大,缺乏客观标准。针对这个问题,先得到逐日最大日射得热因数DJ m ax,乘以逐时冷负荷系数得到透过玻璃窗日射负荷与温度的全年逐时详细关系。再按朝向统计不同温度下日射负荷的平均值,得出温度与冷负荷的实用关系,经过统计处理计算方法仍可以比较简单。并将这种方法求得的冷负荷与原方法作了比较。由于它反映了温度与该部分冷负荷的真实关系,使负荷和能耗计算精度提高。并以成都南向玻璃窗为例介绍了新统计关系的使用方法。
文摘Accurate prediction of thermal radiation by applying rigorous model for the radiative heat transfer combined with the conduction and the convection has been performed for a single and double window glazing subjected to solar and thermal irradiation. The glass window is analysed as a non-gray plane-parallel medium disctritized to thin layer as-suming the glass material as participating media in one-dimensional case, using the Radiation Element Method by Ray Emission Model (REM2). The model allows the calculation of the steady-state heat flux and the temperature distribution within the glass cover. The spectral dependence of the relevant radiation properties of glass (i.e. specular reflectivity, refraction angle and absorption coefficient) is taken into account. Both solar and thermal incident irradiations are applied at the boundary surfaces using the spectral solar model proposed by Bird and Riordan. The optical constant of a commercial clear glass material have been used. The calculation has been performed during winter period and the effect of the thickness of the glass for a single glazing and of the air layer between the two panels for double glazing has been studied. The result shows that increasing the air layer, the steady heat flux decreases and the temperature distribution within the glass changes.