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Indoor clothing insulation and thermal history: A clothing model based on logistic function and running mean outdoor temperature

机译:室内衣物的隔热和散热历史:基于逻辑函数和室外平均运行温度的衣物模型

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摘要

Predicting the pattern of clothing adjustment to climate change can provide important basis for thermal comfort and energy consumption analysis. This study proposed a clothing model (IC-RM model) to predict indoor clothing insulation based on people's thermal history. In the IC-RM model, the running mean (RM) outdoor temperature (exponentially weighted running mean of the past outdoor temperatures) was used as the outdoor climate index to reflect the thermal history. Different from the existing models, the IC-RM model adopted a four parameters logistic function to fit the relation between indoor clothing insulation and the RM outdoor temperature. A longitudinal thermal comfort survey (13 months) was conducted in two different types of naturally ventilated building in Changsha China. The decreased freedom of clothing adjustment at high/low outdoor temperatures and notable effects of the past outdoor temperatures on the indoor clothing insulation were observed. The IC-RM model was implemented using 1427 useful clothing records collected during the survey. The high R-2 value ( 0.9) for the IC-RM model indicated that the proposed model provides an effective method to quantify the change of indoor clothing insulation based on the effect of thermal history. Compared with linear, exponential and power functions, the logistic function exhibited better performance in quantifying the tendency for the variation in the indoor clothing insulation with the RM outdoor temperature.
机译:预测服装适应气候变化的方式可以为热舒适性和能耗分析提供重要依据。这项研究提出了一种服装模型(IC-RM模型),用于根据人们的热历史预测室内服装的隔热性。在IC-RM模型中,室外平均运行温度(RM)(过去室外温度的指数加权运行平均值)被用作室外气候指数,以反映热历史。与现有模型不同,IC-RM模型采用四参数逻辑函数,以适应室内衣物隔热层和RM室外温度之间的关系。在中国长沙的两种不同类型的自然通风建筑中进行了纵向热舒适度调查(13个月)。观察到在高/低室外温度下衣服调节自由度降低,以及过去室外温度对室内衣服隔热层的显着影响。使用调查期间收集到的1427件有用的服装记录来实施IC-RM模型。 IC-RM模型的R-2值较高(> 0.9),表明该模型提供了一种有效的方法,可根据热历史的影响来量化室内衣物隔热的变化。与线性,指数和幂函数相比,逻辑函数在量化室内室外隔热温度随RM室外温度变化趋势方面表现出更好的性能。

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