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3D Thermal-structural analysis of an absorber tube of a parabolic trough collector and the effect of tube deflection on optical efficiency

机译:抛物线收集器吸收管的3D热结构分析及管偏转对光学效率的影响

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In this paper deformation rate of an absorber tube of a parabolic trough collector due to a 3D solar flux density distribution is studied theoretically. Three dimensional temperature distribution and tube thermal expansion due to non-uniform solar flux over the tube are determined numerically. The local concentration ratio for the parabolic trough collectors, which is a key boundary condition in the thermal analysis is computed by Monte Carlo Ray Tracing method for different conditions. The governing equations of thermo-elastic constitutive are solved in three dimensions for steady state thermal and static structural analysis with appropriate boundary condition using Finite Volume and Finite Element numerical codes. Thermal stresses and strain are determined for two types of collectors; first one is a constructed collector and second one is under construction at Shiraz (Iran) solar thermal power plant. Results of the local concentration ratio, flux density, temperature distribution and thermal expansions are determined for the designed conditions. Appropriate flow rate and convection coefficient for each season are found in order to decrease tube bending, prevent optical efficiency drop of collectors, keep high factor of safety, and reduce cyclic daily amplitude motion which lead to longer life time of absorber tube.
机译:在理论上研究了由于3D太阳能磁通密度分布引起的抛物线槽收集器的吸收管的变形速率。在数值上确定引起的三维温度分布和管热膨胀导致的太阳能通量。抛物线槽收集器的局部浓度比,即热分析中的关键边界条件是由Monte Carlo Ray跟踪方法计算不同条件的。热弹性组成型的控制方程在三维中解决了使用有限体积和有限元数值码的适当边界条件的稳态热和静态结构分析。针对两种类型的收集器确定热应力和菌株;第一个是建造收集器,第二个是在Shiraz(伊朗)太阳能热电厂建造的。确定设计条件的局部浓度比,助熔剂,温度分布和热膨胀的结果。发现每个季节的适当流速和对流系数是为了减少管弯曲,防止收集器的光学效率下降,保持高度安全系数,降低循环日幅度运动,这导致吸收管的寿命更长。

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