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首页> 外文期刊>Applied Solar Energy >Solar Plants and Their Application: Studying the Dependence of the Sr(NH_3)_8Cl_2 Heat Conductivity on the Heating Temperature and Porosity and Its Effect on the Absorption Solar Cooler Output
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Solar Plants and Their Application: Studying the Dependence of the Sr(NH_3)_8Cl_2 Heat Conductivity on the Heating Temperature and Porosity and Its Effect on the Absorption Solar Cooler Output

机译:太阳能装置及其应用:研究Sr(NH_3)_8Cl_2导热系数对加热温度和孔隙率的依赖性及其对吸收式太阳能冷却器输出的影响

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摘要

The investigation results on the heat conductivity coefficients of Sr(NH_3)_8cL_2 within the range 20-100 deg. C of heating temperatures and 1-21×10~5 Pa of porosity in the process of desorption are presented. It has been revealed that in cylindrical shaped Sr(NH_3)_8Cl_2 produced at P_M=11×10~5 Pa, the heat conductivity coefficient is on an average 0.0246 W/m K higher than that in powder samples. Using Sr(NH_3)_8Cl_2 of optimal will increase The solar cooler output by a factor of 1.54.
机译:Sr(NH_3)_8cL_2的导热系数在20到100度范围内的调查结果。给出了脱附过程中加热温度C和孔隙度1-21×10〜5 Pa。结果表明,在P_M = 11×10〜5 Pa的圆柱形Sr(NH_3)_8Cl_2中,其导热系数平均比粉末样品高0.0246 W / mK。使用最佳的Sr(NH_3)_8Cl_2将使太阳能冷却器的输出增加1.54倍。

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