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Heat transfer analysis of a new volumetric based receiver for parabolic trough solar collector

机译:新型基于体积的抛物槽式太阳能集热器的传热分析

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Effective use of selective absorbing coating in surface based receivers and nanofluids in volumetric based receivers for better thermal performance have been confirmed in previous studies. However, in practical application, these receivers suffered from the problem of performance degradation after long-term high temperature operation, and they were high-cost. This study proposed a novel kind of parabolic trough receiver by locating the absorber tube inside heat transfer fluid (HTF) in a twin glass tube, and developed its mathematical heat transfer model. Based on this model, the novel receiver was verified to be desirable when the inlet temperature of HTF was lower than 150 degrees C (with an efficiency sacrifice within 4%), and particularly in the range of 100-120 degrees C (with an efficiency sacrifice within 1.5%). Strategies including replacing the selective absorbing coating with non-selective absorbing coating, lowering the velocity of outer HTF and lowering the emissivity of the inner glass tube were investigated and verified to be effective in specific conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在先前的研究中已经证实,在基于表面的接收器中有效地使用了选择性吸收涂层,而在基于体积的接收器中有效地使用了纳米流体来获得更好的热性能。然而,在实际应用中,这些接收器遭受了长期高温操作后性能下降的问题,并且它们的成本很高。该研究通过将吸收器管放置在双玻璃管中的传热流体(HTF)中,提出了一种新型的抛物槽式接收器,并开发了其数学传热模型。基于此模型,当HTF的入口温度低于150摄氏度(效率损失在4%以内),特别是在100-120摄氏度(效率为200摄氏度)时,新型接收器被证明是理想的。牺牲1.5%以内)。研究了包括用非选择性吸收涂层代替选择性吸收涂层,降低外部HTF的速度和降低内部玻璃管的发射率的策略,并证明在特定条件下有效。 (C)2017 Elsevier Ltd.保留所有权利。

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