Mathematical Modelling for the Thermal Performance of a Solar Parabolic Trough Concentrator (PTC) Under Egypt Climate

Mohamed H. Ahmed, A. Giaconia, A. Amin
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Abstract

In this work, an analysis of the annual performance of a parabolic trough concentrator has been accomplished. A numerical model was developed and built to study the annual performance of the parabolic trough collector's field at different locations in Egypt. The energy equations were solved using the Engineering Equation Solver EES software. The optical and thermal parameters of the concentrator were considered in the model. The numerical model results showed that temperature rise ranges from 90.5 to 221 °C and the outlet temperate ranges from 442 to 565 oC at solar noon according to the season and the location. The operating period of the parabolic concentrator reaches its maximum value at summer where it ranges from 76.5 to 82 h/week. The present model was validated with the TRNSYS model. As a result, the presented model can be considered as a meaningful tool for developing the parabolic trough plant in Egypt.
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埃及气候条件下太阳能抛物槽聚光器热性能的数学模拟
本文对抛物线槽式浓缩器的年度性能进行了分析。建立了一个数值模型,研究了埃及不同地点抛物槽集热器场的年性能。利用工程方程求解器EES软件对能量方程进行求解。该模型考虑了聚光器的光学和热学参数。数值模拟结果表明,根据季节和地点的不同,太阳午时的温升范围为90.5 ~ 221℃,出口温度范围为442 ~ 565℃。抛物面聚光器的运行周期在夏季达到最大值,为76.5 ~ 82 h/周。用TRNSYS模型对模型进行了验证。因此,该模型可被认为是埃及发展抛物线槽式电站的一个有意义的工具。
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