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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical simulation of a parabolic trough collector containing a novel parabolic reflector with varying focal length
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Numerical simulation of a parabolic trough collector containing a novel parabolic reflector with varying focal length

机译:一种具有不同焦距的新型抛物线反射器的抛物线槽收集器的数值模拟

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摘要

In this study, a novel parabolic reflector for a Parabolic Trough Collector (PTC) is presented. The reflector contains a varying focal length in lengthwise direction while still maintaining a fixed focal line. Due to this geometry, heat flux around the absorber not only varies circumferentially but also axially. A new geometric design parameter is defined which is the ratio of focal length at the ends, and the effects of it on the thermal behavior are investigated numerically. To represent the heat flux realistically a method is presented by employing a custom code to construct the novel reflector in SolTrace (a ray tracing software), and heat flux profile around the absorber is calculated. This flux is applied to a Computational Fluid Dynamics (CFD) model as a source term and simulations are realized. The coupled model is validated with the experimental results regarding the LS-2 module. Besides the parametric analyses about geometric factor, flow rate optimization analyses are also. As a result of the parametric analyses, a 0.21% rise is achieved for thermal efficiency and a 0.63% increase is achieved for net energy gain as a result of the flow rate optimization study.
机译:在该研究中,提出了一种用于抛物槽收集器(PTC)的新型抛物面反射器。反射器在长度方向上包含变化的焦距,同时仍然保持固定焦线。由于这种几何形状,吸收器周围的热通量不仅变化而且还轴向变化。定义了一种新的几何设计参数,其是端部的焦距与焦距的比率,并且在数值上研究了其在热行为上的效果。为了以现实地表示热通量,通过采用自定义代码来构建溶解中的新型反射器(光线跟踪软件)中的新颖反射器来呈现方法,并且计算吸收器周围的热通量轮廓。作为计算流体动力学(CFD)模型,该磁通量应用于源期限,实现模拟。耦合模型验证了关于LS-2模块的实验结果。除了关于几何因子的参数分析之外,还有流量优化分析。作为参数分析的结果,由于流速优化研究,净能量增益实现了0.21%的升高,达到0.63%的增加。

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