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Transient thermal modelling and optimization of a solar collector-type pond considering an improved decay of radiative intensity

机译:考虑到辐射强度衰减的瞬态热建模和太阳能收集器型池塘的优化

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摘要

In the present work, an improved expression of the radiative intensity decay in solar ponds is proposed through an equivalent absorption coefficient calculated using Beer-Lambert's law. Based on the improved expression, a transient thermal model involving side and bottom heat losses is developed for a solar collector-type pond consisting moving storage zone. Thereafter, the effects of various thermophysical parameters on instantaneous and steady state efficiencies are studied. Finally to maximize the efficiency, simultaneous optimization of lower and middle zones of the pond is proposed. It is highlighted from the present study that the proposed expression of computing radiative intensity overcomes practical drawbacks of earlier models. The optimization also reveals that without its aid, practically unrealizable performance resulting in a net heat loss can occur for many parameters currently available in the literature. From the transient and sensitivity studies, it is observed that the appropriate selection of collector-type pond's parameters is synchronized by a mutual trade-off between the allowable time and the pond's efficiency.
机译:在本作工作中,通过使用啤酒兰伯特法计算的等效吸收系数提出了太阳能池中辐射强度衰减的改进表达。基于改进的表达式,开发了涉及侧和底部热量损耗的瞬态热模型,用于包括移动存储区的太阳能收集器型池。此后,研究了各种热神族参数对瞬时和稳态效率的影响。最后为了最大限度地提高池塘的下部区域的效率,同时优化。从本研究中突出显示,所提出的计算辐射强度的表达克服了早期模型的实际缺点。优化还揭示了没有援助,在文献中目前可用的许多参数可能发生净热量损失的实际不可挽回的性能。从瞬态和敏感性研究,观察到,相应的收集器型池塘参数选择通过允许的时间和池塘之间的相互权衡同步。

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