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Optimized Approach to Architecture Thermal Comfort in Hot Summer and Warm Winter Zone

机译:夏热冬暖地区建筑热舒适性的优化方法

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摘要

According to the Fanger thermal comfort equations and the advantage of artificial immune algorithm in solving combinatorial optimization to engineering problems, the artificial immune algorithm has been applied to the thermal design and optimization of parameters for the HVAC (Heating, Ventilation, and Air Conditioner) within a building. Then, aiming at climate characteristics of high temperature and humidity in hot summer and warm winter zone, the interior thermal comfort objective function is deduced. Then, the preferable range of indoor air temperatures and air velocities which meet the thermal comfort requirements under different activities and humidity is obtained by simulation. Therefore, the relationship between indoor thermal comfort and energy saving to a building is also managed to reveal. Furthermore, it is evidence that the proposed method in this paper should be employed in the criteria for thermal design to a building and control of an air conditioning system.
机译:根据Fanger热舒适方程式和人工免疫算法在解决工程问题的组合优化中的优势,该人工免疫算法已应用于室内HVAC(供暖,通风和空调)的热设计和参数优化。建筑。然后,针对炎热的夏季和温暖的冬季地区高温高湿的气候特征,推导了室内的热舒适性目标函数。然后,通过模拟获得了满足不同活动和湿度下的热舒适性要求的室内空气温度和风速的优选范围。因此,室内热舒适性与建筑物节能之间的关系也得以揭示。此外,有证据表明,本文提出的方法应在热设计的准则中采用,以建立和控制空调系统。

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