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首页> 外文期刊>Thermal science >COMBINED NON-GRAY CONDUCTIVE AND RADIATIVE HEAT TRANSFER SIMULATION OF A SINGLE GLASS WINDOW SUBJECTED TO SOLAR AND THERMAL RADIATION
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COMBINED NON-GRAY CONDUCTIVE AND RADIATIVE HEAT TRANSFER SIMULATION OF A SINGLE GLASS WINDOW SUBJECTED TO SOLAR AND THERMAL RADIATION

机译:单一玻璃窗受太阳辐射和热辐射的联合非颗粒热传导和辐射热传递模拟

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摘要

Combined nongray conductive and radiative heat transfer in single glass window using the Radiation Element Method by Ray Emission Model REM2, has been investigated in one dimensional case. The optical constants of the glass window have been determined by using Fourier Transform Infrared Spectrophotometer (FTIR). The absorption and emission within the glass layer are taken into consideration. The boundary surfaces of the glass are specular. Spectral dependence of radiation properties of the glass is taken into account. Both collimated and diffuse solar and thermal irradiations are applied at boundary surfaces, using the spectral solar model proposed by Bird. The simulation has been performed for one position of the sun at noon true solar time on the 5th of July for three locations in Japan, Sendai, Tokyo, and Sapporo cities. Steady state temperature and heat flux distributions within the glass layer for each position of the sun of the three locations are obtained. The radiative heat flux through the glass mediums is the predominant mode compared with the conductive one. Therefore, the temperature distributions within the glass layer are not linear in shape.
机译:在一维情况下,使用射线发射模型REM2的辐射元素方法研究了单玻璃窗中非灰色导热和辐射的组合传热。玻璃窗的光学常数已经通过使用傅立叶变换红外分光光度计(FTIR)确定。考虑到玻璃层内的吸收和发射。玻璃的边界表面是镜面的。考虑到玻璃的辐射特性的光谱依赖性。使用Bird提出的光谱太阳模型,将准直辐射和漫射太阳辐射和热辐射都应用于边界表面。在日本,仙台,东京和札幌等城市的3个地点,于7月5日正午正好太阳时间对一个位置的太阳进行了模拟。对于三个位置的太阳的每个位置,获得了玻璃层内的稳态温度和热通量分布。与导电介质相比,通过玻璃介质的辐射热通量是主要模式。因此,玻璃层内的温度分布不是线性形状。

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