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Numerical study of conduction and convection heat losses from a half-insulated air-filled annulus of the receiver of a parabolic trough collector

机译:抛物槽式集热器接收器半绝缘充气环的传导和对流热损失的数值研究

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摘要

Grid-quality parabolic trough collectors utilize expensive receivers that maintain vacuum in their annuli to reduce convection losses. On the other hand, receivers with air-filled annuli, currently used mainly for process heat applications, are significantly less expensive, but their thermal performance is inferior to evacuated receivers. A promising technique that can bridge the cost and performance gap between the two types of receivers is introduced in this work. A heat-resistant thermal insulation material is fitted into the portion of the receiver annulus that does not receive concentrated sunlight. The presence of this insulation material is expected to reduce not only convection heat losses, but also radiation losses. This study focuses on the calculation of conduction and convection heat losses from the proposed receiver using numerical modeling. The performance of the proposed concept is compared to that of a conventional receiver with an air-filled annulus. The results have shown that the combined conduction and convection heat loss from the proposed receiver can be smaller than that from a receiver with an air-filled annulus by as much as 25% when fiberglass insulation is used. However, the fact that the thermal conductivity of the insulating material increases with temperature reduces the benefit of the proposed concept at high temperatures. As a result, the proposed receiver is expected to be suitable as a replacement for receivers with air-filled annuli or as an economical alternative to evacuated receivers that are used at the lower temperature end of utility-scale solar power plants.
机译:网格质量的抛物线槽式集热器利用昂贵的接收器来维持其环空中的真空,以减少对流损失。另一方面,目前主要用于过程热应用的带有充气环空的接收器价格便宜得多,但其热性能不如抽空的接收器。这项工作引入了一种有希望的技术,可以弥合两种类型的接收器之间的成本和性能差距。耐热绝热材料安装在接收器环带的不接收集中阳光的部分中。期望这种绝缘材料的存在不仅可以减少对流热损失,而且可以减少辐射损失。这项研究的重点是利用数值模型计算拟议接收器的传导和对流热损失。将所提出的概念的性能与具有充气环的常规接收器的性能进行了比较。结果表明,当使用玻璃纤维绝缘材料时,拟议的接收器的传导和对流组合热损失可比带有充气环的接收器的传导和对流热损失小25%。然而,绝缘材料的导热率随温度增加而增加的事实降低了所提出的概念在高温下的益处。结果,期望所提出的接收器适合于替代具有充气环形空间的接收器,或者作为在公用事业规模的太阳能电站的较低温度端使用的真空接收器的经济替代。

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