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Experimental and simulation studies of parabolic trough collector design for obtaining solar energy

机译:用于获取太阳能的抛物线槽式集热器的实验和仿真研究

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Concentrated solar power has great potential for large scale renewable energy sources, and is currently an eye catching one for its utilization with wide area of improvement. Especially, parabolic trough solar collectors (PTSCs) are gaining popularity due to their increased efficiency as compared to photovoltaics. In this work, an effort has been made to evaluate the performance of a designed 5-m length PTSC model. Heat collecting element was made of stainless steel with water as working fluid. The authentication of the proposed model is justified based on the results obtained on a yearly scale with respect to average inlet and outlet temperatures, surface temperatures and thermal efficiency for the climatic conditions of Ramanagaram. It was observed that March to May yielded better outlet temperatures ranging from 93?°C to 103?°C. Experiments were carried out at different flow rates of 0.4?LPM, 0.8?LPM and 1.2?LPM and corresponding Reynolds number was calculated. It was seen that February to May gave good surface and outlet temperatures as compared with other months while the liquid flow is laminar. Simulation studies were carried out using ANSYS software on receiver tube to ensure the robustness and design effectiveness under static loading conditions.
机译:集中式太阳能具有大规模可再生能源的巨大潜力,并且由于其广泛的改进领域,目前正在引起人们的关注。尤其是,抛物槽式太阳能集热器(PTSC)由于其效率高于光伏技术而越来越受欢迎。在这项工作中,已努力评估设计的5米长PTSC模型的性能。集热元件由以水为工作液的不锈钢制成。该模型的验证基于Ramanagaram气候条件下每年平均进口和出口温度,表面温度和热效率的年度结果。据观察,3月至5月的出口温度更好,范围从93°C到103°C。在0.4?LPM,0.8?LPM和1.2?LPM的不同流速下进行实验,并计算出相应的雷诺数。在液流呈层流状态时,与其他月份相比,可以看到2月至5月的表面和出口温度较高。使用ANSYS软件对接收管进行了仿真研究,以确保在静态载荷条件下的鲁棒性和设计有效性。

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