Inverse study of double-glazed solar collector using hybrid evolutionary algorithm

R. Das
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引用次数: 7

Abstract

This paper presents an application of the hybrid evolutionary-nonlinear programming based optimization algorithm for solving an inverse problem of a double-glazed flat-plate solar collector. For a given configuration, the performance of the solar collector can be represented by heat loss factor. In this work, four parameters such as plate-inner glass spacing, inner-outer glass spacing, thickness of the glass cover and the emissivity of the absorber plate have been estimated by the hybrid algorithm for satisfying a given heating requirement in a double-glazed flat-plate solar collector. Hybrid algorithm is used to search different unknowns within a prescribed feasible range of various parameters. Many feasible and nearly unique combinations of the four unknowns are observed to satisfy the same heating requirement, which is confirmed by satisfactory reconstruction of the heat loss factor fields.
双层玻璃太阳能集热器的混合进化算法反演研究
提出了一种基于混合进化-非线性规划的优化算法,用于求解双层玻璃平板太阳能集热器的反问题。对于给定的结构,太阳能集热器的性能可以用热损失系数来表示。本文采用混合算法对双层玻璃平板太阳能集热器中满足给定加热要求的板内玻璃间距、内外玻璃间距、玻璃罩厚度和吸收板发射率等4个参数进行了估计。混合算法用于在各种参数的规定可行范围内搜索不同的未知数。通过热损失因子场的令人满意的重建,我们观察到四个未知数有许多可行的和几乎唯一的组合来满足相同的加热要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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