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A 1.2 MWth solar parabolic trough system based on air as heat transfer fluid at 500 degrees C - Engineering design, modelling, construction, and testing

机译:基于空气作为500°C的传热流体的1.2 MWth太阳抛物线槽系统-工程设计,建模,构造和测试

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We report on the realization of a 212 m-long parabolic trough concentrator and associated solar receiver that uses air as the heat transfer fluid at 500 degrees C. The fully pneumatic solar concentrator is based on a stack of reflective polymeric films mounted on a rigid concrete support structure and protected by a transparent polymeric envelope. The solar receiver consists of an array of helically coiled absorber tubes contained side-by-side within an insulated groove having a windowed opening. The multiple absorber tubes are connected via two axial pipes serving as feeding and collecting manifolds. The 1.2 MWth solar collector unit, comprising the solar concentrator and solar receiver, is modelled by formulating the energy conservation equation coupling radiation, convection, and conduction and solving it numerically using the finite volume technique. Model validation is accomplished by comparison to on-sun experimental data obtained from tests of the first solar collector unit after its commissioning in Ait Baha, Morocco. The mean absolute and RMS deviations between measured and computed air outlet temperatures of the solar receiver are 7.3 degrees C and 9.5 degrees C, respectively. The validated model is further applied to identify heat losses and predict year-round operation. For a DNI of 2400 kW h/m(2)/yr, the solar plant can deliver 1810 MW h of thermal energy at 500 degrees C. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们报告了一个212 m长的抛物线槽式集中器和相关太阳能接收器的实现情况,该接收器使用空气作为500摄氏度下的传热流体。全气动太阳能集中器基于安装在刚性混凝土上的一堆反射性聚合物薄膜支撑结构,并由透明的聚合物外壳保护。太阳能接收器由并排容纳在具有开窗开口的绝缘凹槽内的螺旋形螺旋形吸收管阵列组成。多个吸收管通过两个轴向管连接,作为进料和收集歧管。通过公式化耦合辐射,对流和传导的能量守恒方程,并使用有限体积技术对其进行数值求解,可以对1.2 MWth的太阳能收集器单元(包括太阳能集中器和太阳能接收器)进行建模。模型验证是通过与第一个太阳能集热器单元在摩洛哥Ait Baha调试后的测试获得的日照实验数据进行比较来完成的。太阳能接收器的测量出的和计算出的出气口温度之间的平均绝对偏差和RMS偏差分别为7.3摄氏度和9.5摄氏度。经过验证的模型可进一步用于识别热量损失并预测全年运行。对于2400 kW h / m(2)/年的DNI,该太阳能装置可以在500摄氏度下输出1810 MW h的热能。(C)2016 Elsevier Ltd.保留所有权利。

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