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Effect of aperture position and size on natural convection heat loss of a solar heat-pipe receiver

机译:孔径位置和大小对太阳能热管接收器自然对流热损失的影响

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摘要

A new configuration of heat-pipe receiver is introduced to realize the isothermal light-heat conversion for middle- and high-temperature solar dish system. A 3-D numerical study has been performed to investigate the influence of aperture characteristics, i.e., aperture position and size on natural convection heat loss of this heat-pipe receiver accounting for air property variation with temperature. Temperature and velocity contours as well as the effects of aperture position and size on the natural convection heat loss have been well presented and discussed. It is revealed that the impact of aperture position on the natural convection heat loss is closely related to tilt angle, while the aperture size has similar effect for different tilt angles. The natural convection heat loss approximately is linearly dependent on wall temperature for different aperture positions and sizes. A new simplified Nusselt number correlation that can estimate natural convection heat loss with reasonable accuracy is proposed based on the corresponding numerical results. It is shown that the natural convection heat loss predictions by the present model show smallest deviation from the experimental results as compared to other well-known models regardless a partially or fully opened heat-pipe receiver for middle- and high-temperature solar dish system.
机译:引入了一种新的热管接收器配置,以实现中高温太阳能碟系统的等温光热转换。已经进行了3-D数值研究,以研究孔径特性(即孔径位置和尺寸)对该热管接收器自然对流热损失的影响,从而说明了空气性质随温度的变化。已经很好地介绍和讨论了温度和速度等高线以及孔径位置和孔径对自然对流热损失的影响。结果表明,孔径位置对自然对流热损失的影响与倾角密切相关,而孔径大小对不同的倾角具有相似的影响。对于不同的孔位置和尺寸,自然对流热损失近似线性地取决于壁温。基于相应的数值结果,提出了一种新的简化的Nusselt数相关性,可以合理合理地估算自然对流热损失。结果表明,与其他众所周知的模型相比,本模型对自然对流热损失的预测与实验结果的偏差最小,而无论是用于中高温太阳能电池系统的部分或完全打开的热管接收器。

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