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A detailed mathematical model for thermal performance analysis of a cylindrical cavity receiver in a solar parabolic dish collector system

机译:用于太阳能抛物面集热器系统中圆柱形腔体接收器热性能分析的详细数学模型

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In this study, a comprehensive mathematical model was developed and proposed for a cylindrical cavity receiver, placed at focal point of a parabolic dish collector (PDC) system. The main approach in the model is based on non-isothermal internal walls of receiver. The model was validated with experimental data and the statistical parameters of R-2, RMSE and MBE show that there is a good agreement between the model results and experimental data. The effect of some operational parameters such as, HTF mass flow rate and global solar irradiation intensity, and some geometrical parameters of solar receiver such as, receiver aperture diameter and its length on the thermal performance of the system were investigated. For the parabolic dish collector and its receiver, a new definition called as solar irradiation concentration ratio (CRirr), was proposed. For a receiver with geometrical concentration ratio (CRgeo) greater than solar irradiation concentration ratio, by increasing in receiver aperture area up to 0.2 m the Heat Transfer Fluid (HTF) outlet temperature and receiver thermal efficiency are increased. For CRgeo less than CRirr, the mentioned parameters decrease due to increasing in heat losses. The proposed model can be applied in Design for Manufacturing (DFM) of novel high performance solar receivers. 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,针对抛物面碟收集器(PDC)系统的焦点放置的圆柱形空腔接收器,开发并提出了一个综合数学模型。该模型的主要方法是基于接收器的非等温内壁。用实验数据对模型进行了验证,R-2,RMSE和MBE的统计参数表明模型结果与实验数据有很好的一致性。研究了一些运行参数,例如HTF质量流量和整体太阳辐照强度,以及太阳接收器的一些几何参数,例如接收器孔径和长度对系统热性能的影响。对于抛物面集热器及其接收器,提出了一个新的定义,称为太阳辐射集中率(CRirr)。对于几何集中度比(CRgeo)大于太阳辐射集中度的接收器,通过将接收器孔径面积增加到0.2 m,可以提高热传递流体(HTF)的出口温度和接收器的热效率。对于小于CRirr的CRgeo,由于热损失增加,上述参数减小。所提出的模型可以应用于新型高性能太阳能接收器的制造设计(DFM)中。 2018 Elsevier Ltd.保留所有权利。

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