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Optimum design for indoor humidity by coupling Genetic Algorithm with transient simulation based on Contribution Ratio of Indoor Humidity and Climate analysis

机译:基于室内湿度贡献率和气候分析的遗传算法与暂态仿真相结合的室内湿度优化设计

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摘要

In recent years, the capacity to remove moisture is relatively decreased because houses and office build-ings are being built with high airtightness and thermal insulation. It is important to maintain indoor humidity at an appropriate level. This study presents a method for the optimum and reliable design of indoor humidity with moisture-buffering materials. An optimum design system was developed using Genetic Algorithm (GA) and the transient simulation for the indoor humidity environment based on Con-tribution Ratio of Indoor Humidity (CRI_(H)) and Contribution Ratios of Indoor Climate (CRI_(C)) analysis. To confirm the availability of the proposed system, a living room with a number of heat and moisture sources was analyzed. As design parameters, the amount and arrangement of moisture-buffering materials were analyzed. Two case studies, including single objective and multi-objective optimization problems, were conducted. The purpose of the single objective optimization problem was to prevent high humidity in the indoor environment. In the multi-objective optimization problem, a reliable indoor humidity envi-ronment was achieved, and the initial cost of the materials was also used as an objective function. The Pareto-optimal solution sets were analyzed, and the method was proven to be useful for the optimization of indoor humidity.
机译:近年来,由于建造具有高气密性和隔热性的房屋和办公室建筑物,除湿能力相对降低。重要的是将室内湿度保持在适当的水平。这项研究提出了一种使用潮气缓冲材料对室内湿度进行最佳和可靠设计的方法。基于室内湿度贡献率(CRI_(H))和室内气候贡献率(CRI_(C))分析,使用遗传算法(GA)和室内湿度环境的瞬态模拟,开发了最佳设计系统。为了确认所提出系统的可用性,分析了一个有大量热和湿气源的客厅。作为设计参数,分析了水分缓冲材料的数量和布置。进行了两个案例研究,包括单目标和多目标优化问题。单目标优化问题的目的是防止室内环境中的高湿度。在多目标优化问题中,实现了可靠的室内湿度环境,并且材料的初始成本也被用作目标函数。分析了帕累托最优解集,并证明该方法可用于优化室内湿度。

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