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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Numerical Investigation of the Tube Layout Effects on the Heat Losses of Solar Cavity Receiver
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Numerical Investigation of the Tube Layout Effects on the Heat Losses of Solar Cavity Receiver

机译:太阳能腔接收机热损耗管布局效应的数值研究

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摘要

The effects of tube layout on the heat losses of solar cavity receiver were numerically investigated. Two typical tube layouts were analyzed. For the first tube layout, only the active surfaces of cavity were covered with tubes. For the second tube layout, both the active cavity walls and the passive cavity walls were covered with tubes. Besides, the effects of water–steam circulation mode on the heat losses were further studied for the second tube layout. The absorber tubes on passive surfaces were considered as the boiling section for one water–steam circulation mode and as the preheating section for the other one, respectively. The thermal performance of the cavity receiver with each tube layout was evaluated according to the previous calculation model. The results show that the passive surfaces appear to have much lower heat flux than the active ones. However, the temperature of those surfaces can reach a quite high value of about 520?°C in the first tube layout, which causes a large amount of radiative and convective heat losses. By contrast, the temperature of passive surfaces decreases by about 200–300?°C in the second tube layout, which leads to a 38.2–70.3% drop in convective heat loss and a 67.7–87.7% drop in radiative heat loss of the passive surfaces. The thermal efficiency of the receiver can be raised from 82.9% to 87.7% in the present work.
机译:管布置对太阳能腔接收机热损耗的影响在数值上进行了数值研究。分析了两个典型的管布局。对于第一管布局,只有管子的有源表面覆盖有管。对于第二管布局,主动腔壁和被动腔壁都被管覆盖。此外,进一步研究了水蒸汽循环模式对热损耗的影响,用于第二管布局。被动表面上的吸收剂管被认为是一个水蒸汽循环模式的沸腾部分,以及作为另一个水蒸汽循环模式的沸腾部分。根据先前的计算模型评估具有每个管布局的腔接收机的热性能。结果表明,无源表面看起来比活跃的助热通量低得多。然而,在第一管布局中,这些表面的温度可以达到相当高的值约为520°C,这导致大量的辐射和对流热损失。相比之下,在第二管布局中,无源表面的温度降低了200-300?℃,导致对流热损失下降38.2-70.3%,并在被动的辐射热量损失下降67.7-87.7%表面。在本工作中,接收器的热效率可以从82.9%升高到87.7%。

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