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Numerical analysis of the influence of inclination angle and wind on the heat losses of cavity receivers for solar thermal power towers

机译:倾斜角度与风对太阳能热动力塔腔接收器热损耗影响的数值分析

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摘要

Abstract The convective heat losses of cavity receivers for solar thermal power towers are of great importance for the overall efficiency of the whole system. However, the influence of wind on these losses has not been studied sufficiently for large scale cavity receivers with different inclination angles. In this present study the impact of head-on and side-on wind on large cavity receivers with inclination angles in the range of 0° (horizontal cavity) to 90° (vertical cavity) is analyzed numerically. The simulation results are compared to data published in literature. When no wind is present the losses decrease considerably with increasing inclination angle of the receiver. In case of a horizontal receiver wind does not have a huge impact on the losses: they remain constant on a high level. In case of an inclined cavity wind increases the heat losses significantly in most of the cases, although the highest absolute value of the losses occurs for the horizontal receiver exposed to head on wind. In some cases, when wind is flowing parallel to the aperture plane, a reduction of the heat losses is observed. The temperature distribution in the cavity is analyzed in order to explain the impact of wind on the heat losses. Wind in general causes a shrinking of the zone with uniform high temperature in the upper region of the cavity, whereas wind flowing parallel to the aperture plane additionally inhibits hot air from leaving the cavity and therefore leads to an increased temperature in the lower zone.
机译:摘要太阳能热动力塔的腔接收器对流热损耗对于整个系统的整体效率非常重要。然而,对于具有不同倾斜角度的大型腔接收器,尚未对这些损失进行对这些损失的影响。在本发明的情况下,在数值上分析了在0°(水平腔)至90°(垂直腔)范围内具有倾斜角度的大腔接收器上的头部和侧向风的影响。将仿真结果与文献中发表的数据进行比较。当没有风的情况下,随着接收器的倾斜角度,损耗显着降低。在水平接收器的情况下,风不会对损失产生巨大影响:它们在高水平上保持恒定。在倾斜的腔风中,在大多数情况下,在大多数情况下,在大多数情况下显着增加热量损失,尽管损耗的最高绝对值发生在风中暴露在风中的头部暴露于头部。在一些情况下,当风平行于孔平面流动时,观察到减少热损失。分析腔中的温度分布以解释风对热损失的影响。风通风通常会在腔的上部区域中具有均匀的高温区域的收缩,而平行于孔平面流动的风否则抑制热空气离开腔,因此导致下部区域的温度增加。

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