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Multi-objective optimization of solar air heater with obstacles on absorber plate

机译:吸收板上有障碍物的太阳能热水器的多目标优化

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A multi-objective optimization of a solar air heater with obstacles on an absorber plate is performed for maximum heat transfer and minimum pressure loss. In this work, shape optimization is carried out in conjunction with three-dimensional Reynolds-averaged Navier-Stokes analysis and two basic surrogate models: the response surface approximation and the Kriging models. Three geometric variables (the ratio of the obstacle height to the height of the duct; the ratio of the transverse pitch to the base length of the obstacle; and the angle of attack) were used as design variables for the optimization. The average Nusselt number and friction factor were used to define the two objective functions. The Latin hypercube sampling method was used to select the design points in the design space. A hybrid multi-objective genetic algorithm coupled with the surrogate model was used to find the Pareto-optimal solutions. The representative Pareto-optimal solutions were selected to study the trade-off between the two objectives. The response surface approximation model leads to a better set of non-dominated solutions over a wide range of functional space than the Kriging model. The optimization results show that the objective functions are significantly affected by the design variables, and the constructed surrogate models show good prediction accuracies for the objective functions. A performance factor was used to study the thermal hydraulic performance of the Pareto-optimal solutions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对在吸收板上有障碍物的太阳能空气加热器进行多目标优化,以实现最大的热传递和最小的压力损失。在这项工作中,形状优化是结合3维雷诺平均Navier-Stokes分析和两个基本替代模型进行的:响应曲面近似和Kriging模型。将三个几何变量(障碍物高度与管道高度的比率;横向间距与障碍物基础长度的比率;以及迎角)用作优化的设计变量。平均努塞尔数和摩擦系数用于定义两个目标函数。拉丁超立方体采样方法用于在设计空间中选择设计点。混合多目标遗传算法与替代模型相结合,以找到帕累托最优解。选择代表性的帕累托最优解来研究两个目标之间的权衡。与Kriging模型相比,响应面近似模型可以在更大的功能空间范围内提供更好的一组非支配解。优化结果表明目标函数受设计变量的影响较大,所构建的替代模型对目标函数具有良好的预测精度。使用性能因子来研究帕累托最优解决方案的热水力性能。 (C)2015 Elsevier Ltd.保留所有权利。

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