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A detailed parametric analysis of a solar dish collector

机译:太阳能集热器的详细参数分析

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The objective of this work is to investigate parametrically an innovative solar dish collector with a spiral-coil absorber and to determine its optimum operating conditions. This solar dish collector is a lightweight and low-cost technology which can operate mainly at medium temperature levels. A thermal model is developed in Engineering Equation Solver and it is validated with the experimental results. Different parameters as the inlet temperature, the flow rate, the absorber emittance, the optical efficiency, the wind velocity and the ambient temperature are investigated parametrically in order to investigate their impact on the collector performance. The analysis is performed in energetic and exergetic terms and the emphasis is given in the quantity and the quality of the useful product. In the last part of this work, the optimum inlet temperature and flow rate, which maximize the collector exergetic performance, are determined for various design cases. According to the results, the optimum fluid temperature is 212.3 °C and the optimum flow rate is 314.6 L/h with the thermal and exergetic efficiencies to be 49.83% and 21.42% respectively. The results of this work can be utilized for the improvement of the examined physical model in order to establish it as a reliable solar technology.
机译:这项工作的目的是从参数上研究具有螺旋线圈吸收器的创新型太阳能集热器,并确定其最佳工作条件。该太阳能集热器是一种轻量级且低成本的技术,主要可以在中等温度下运行。在工程方程求解器中开发了一个热模型,并用实验结果对其进行了验证。参数化地研究了不同的参数,例如入口温度,流速,吸收剂的发射率,光学效率,风速和环境温度,以研究它们对收集器性能的影响。分析是在精力充沛和精力充沛的条件下进行的,重点是有用产品的数量和质量。在这项工作的最后一部分中,针对各种设计案例确定了最佳的入口温度和流速,该温度和流速可最大程度地发挥集热器的最佳性能。根据结果​​,最佳流体温度为212.3 C,最佳流速为314.6 L / h,热效率和高能效率分别为49.83%和21.42%。这项工作的结果可用于改进所检查的物理模型,以便将其建立为可靠的太阳能技术。

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