首页> 外文会议>International Solar Energy Conference >RADIATIVE TRANSFER WITHIN A CYLINDRICAL CAVITY WITH DIFFUSELY/SPECULARLY REFLECTING INNER WALLS CONTAINING AN ARRAY OF TUBULAR ABSORBERS
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RADIATIVE TRANSFER WITHIN A CYLINDRICAL CAVITY WITH DIFFUSELY/SPECULARLY REFLECTING INNER WALLS CONTAINING AN ARRAY OF TUBULAR ABSORBERS

机译:圆柱形腔内的辐射转移,其漫射/镜面反射包含管状吸收剂阵列的内壁

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摘要

Monte Carlo radiative transfer analysis is applied to a cylindrical cavity-receiver containing an array of high-temperature tubular absorbers directly exposed to concentrated solar power entering through a spectrally selective window. The cavity walls are assumed either diffusely or specularly reflective. The relative dimensions, the number of tubes, and their position are optimized for maximum energy transfer efficiency or maximum absorber temperature. A single-tube absorber operating at 2000 K performs best when located at 60% relative distance to the cavity's aperture. Higher absorber temperatures are attained for a specularly reflective cavity that serves as internal infrared mirror, but at the expense of lower energy transfer efficiencies. In contrast, diffuse reflecting cavity walls promote a more uniform temperature distribution around the tubular absorber. Decreasing the window-to-cavity areas ratio further results in an increase of the absorber temperature, which peaks for an optimum absorber-to-cavity radii ratio. This optimum ratio shifts to lower values for multiple-tube absorbers. However, the average absorber temperature is not significantly affected by using multiple-tube absorbers of constant total cross sectional area.
机译:蒙特卡罗辐射转移分析应用于圆柱形腔接收器,该腔室接收器包含一系列高温管状吸收剂阵列,直接暴露于通过光谱选择窗口进入的集中的太阳能电力。假设腔壁散布或镜面反射。相对尺寸,管的数量和它们的位置针对最大能量转移效率或最大吸收温度进行了优化。在2000 k下运行的单管吸收器在位于腔孔的60%相对距离时执行最佳。对于镜面反射腔,达到较高的吸收温度,其用作内部红外镜,但以较低的能量转移效率为代价。相反,漫反射腔壁围绕管状吸收器促进更均匀的温度分布。减小窗口到腔区域的比率进一步导致吸收温度的增加,该吸收温度的峰值是最佳吸收剂到腔半径比的峰值。该最佳比率变为多管吸收器的较低值。然而,通过使用恒定总横截面积的多管吸收器,平均吸收温度不会显着影响。

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