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Application-based design of the Fresnel lens solar concentrator

机译:菲涅耳透镜太阳能聚光器的基于应用的设计

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A novel genetically themed hierarchical algorithm (GTHA) has been investigated to design Fresnel lens solar concentrators that match with the distinct energy input and spatial geometry of various thermal applications. Basic heat transfer analysis of each application decides its solar energy requirement. The GTHA incorporated in MATLABsup?/sup optimizes the concentrator characteristics to secure this energy demand, balancing a minimized geometry and a maximized efficiency. The optimum concentrator is then simulated to ensure the algorithm validity. To verify the algorithmic-optimization and simulation-validation processes, two experimental applications were selected from the literature, a solar welding system for H13 steel plates and a solar Stirling engine with an aluminum-cavity receiver attached to the heater section. In each case, a flat Fresnel lens with a spot focus was algorithmically designed to supply the desired solar heat, and then a computer simulation of the optimized lens was conducted showing great comparability to the original experimental results.
机译:研究了一种新颖的遗传主题分层算法(GTHA),以设计与各种热应用的独特能量输入和空间几何形状相匹配的菲涅耳透镜太阳能聚光器。每个应用程序的基本传热分析决定了其太阳能需求。 MATLAB ?中包含的GTHA优化了集中器特性,以确保满足这种能源需求,在最小化的几何形状和最大效率之间取得平衡。然后模拟最佳集中器以确保算法的有效性。为了验证算法的优化和仿真验证过程,从文献中选择了两个实验应用,一个用于H13钢板的太阳能焊接系统,以及一个将铝腔接收器连接到加热器部分的太阳能斯特林发动机。在每种情况下,均通过算法设计了具有焦点的平面菲涅尔透镜来提供所需的太阳热,然后对优化后的透镜进行了计算机仿真,显示出与原始实验结果的可比性。

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