Study on Indoor Thermal Environment of Traditional Dwellings in the Watery Town in Suzhou in Winter

Liao Xueping, Liu Jiao
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Abstract

Traditional dwellings have their own characteristics and values in the construction of indoor thermal environment. In order to analyze the current situation of thermal environment of dwellings in Southern Region of the Yangze River. This paper takes traditional dwellings in the watery town in Suzhou as the research object, and studies the indoor thermal environment in winter through field measurement of indoor and outdoor temperature and relative humidity of dwellings in winter, questionnaire survey and PMV-PPD thermal evaluation system. The results show that the average indoor temperature is 7.5°C, humidity of residential is 72%, the average predicted thermal sensation vote is -2.79, the predicted dissatisfaction is over 90%, and the indoor thermal environment dissatisfaction in public questionnaire survey is 20.83%, which is far from the predicted dissatisfaction PPD. It shows that the vote of hot feeling underestimates the residents' tolerance for the environment, and corrects the deviation of PMV value through adaptive coefficient. The revised aPMV value is greater than PMV value, but the thermal and humidity environment level is still Class III, which does not meet the living conditions. Water source heat pump can be used as a heating method in winter to improve the thermal environment, which can provide reference for improving indoor thermal environment of residential buildings in water towns.
苏州水乡传统民居冬季室内热环境研究
传统民居在室内热环境的营造上有其自身的特点和价值。为了分析江南地区民居热环境的现状。本文以苏州水乡传统民居为研究对象,通过对民居冬季室内外温度、相对湿度的实地测量、问卷调查和PMV-PPD热评价体系对民居冬季室内热环境进行研究。结果表明,室内平均温度为7.5°C,住宅湿度为72%,平均预测热感觉投票为-2.79,预测不满意度超过90%,公众问卷调查室内热环境不满意度为20.83%,与预测不满意度PPD相差甚远。结果表明,热感觉投票低估了居民对环境的容忍度,并通过自适应系数修正了PMV值的偏差。修正后的aPMV值大于PMV值,但热湿环境等级仍为III类,不满足居住条件。水源热泵可作为冬季采暖方式改善热环境,可为改善水乡住宅室内热环境提供参考。
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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