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建筑外墙延迟衰减特性的组合优化方法
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Combinatorial Optimization Method for Time Lags and Decrement Factor Characteristics of Building Exterior Wall
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    研究建筑外墙不同组合延迟衰减特性对建筑峰值传热的影响规律,对降低峰值传热负荷,减少空调系统配置容量具有重要意义.针对某案例建筑,采用EnergyPlus与正交试验设计方法,研究多类型建筑外墙组合延迟衰减特性与峰值传热冷负荷的变化规律.结果表明:各墙体组合对外扰具有不同的延迟衰减特性,导致峰值冷负荷大小存在显著差异,差异度最大为11.8%.基于不同类型建筑外墙传热峰值出现时刻不同,叠加后可降低总传热量峰值的特性,提出一种外墙峰值传热优化组合方法.在各朝向墙体内表面温度关系式中引入错峰指标PSI,用于调节墙体组合的延迟时间,以该指标为设计变量,墙体总传热量峰值为目标函数,通过优化求解得到各朝向墙体的最佳延迟时间,进而求出优化墙体组合.采用该方法对案例建筑进行计算,结果显示:对建筑外墙进行优化组合后,其总传热量峰值降低了19.1%.

    Abstract:

    The research on the influence law of time lags and decrement factor (TLDF) characteristics for different exterior wall combinations on building peak heat transfer is of significance to reduce the peak heat transfer load and the capacity of air-conditioning system. Taking a case building as an example, EnergyPlus and orthogonal experimental design methods are used to study the change law of the TLDF characteristics and peak heat transfer cooling load of different exterior wall combinations. The results show that the external disturbance of each wall combination has different TLDF characteristics, resulting in a difference in the peak cooling load, and the maximum difference is 11.8%. An optimization method for the peak heat transfer of exterior walls is proposed, based on the fact that the peak heat transfer of different exterior walls appears at different times and can reduce the total heat transfer peak value after superposition. The peak shifting indicator (PSI) is introduced into the inner surface temperature relation of each facing wall to adjust the time lags of the wall combination. The PSI is introduced into the inner surface temperature relation of each facing wall to adjust the time lags of the wall combination. The PSI and the wall total heat transfer peak value are taken as design variables and objective functions, respectively. The optimal time lags of each facing wall are obtained by optimizing the solution, and then the optimal wall combination is obtained. The method is used to calculate the case building, and the results show that the total heat transfer peak value is reduced by 19.1% after the optimal combination of the exterior wall.

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杨昌智 ?,陈王小琛.建筑外墙延迟衰减特性的组合优化方法[J].湖南大学学报:自然科学版,2023,(5):231~240

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  • 在线发布日期: 2023-06-05
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