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Investigation of outdoor thermal sensation and comfort evaluation methods in severe cold area

机译:严重寒冷地区室外热敏舒适评价方法的研究

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摘要

Comfortable outdoor environment benefits the health of citizens and reduces energy consumption and pollution. This study discusses different outdoor thermal sensation and comfort evaluation methods in severe cold area. The database was from a year-long outdoor thermal comfort survey conducted in Harbin, China. Thermal sensation evaluation was developed using meteorological parameters and three popular thermal comfort indices including Standard Effective Temperature (SET*), Physiologically Equivalent Temperature (PET) and Universal Thermal Climate Index (UTCI). Thermal comfort prediction was developed by the three thermal comfort indices and acceptability. Original thermal sensation scales of SET* and PET were less applicable to predict thermal sensation vote (TSV). Calibrated scales of the three indices were obtained based on linear regression results and probit analysis. The accuracies of calibrated scales of thermal sensation were all below 32.8%. The comfortable thermal sensation range in severe cold area varied from "slightly cool" to "hot". This calibrated range improved accuracies of thermal comfort predicting by around 20%. The unacceptability appropriate to define comfortable range was 9% on the cold thermal sensation side and 26% on the hot side. Adaptation and local exposure also acted on thermal sensation and comfort apart from factors included in thermal comfort indices. Our results provide practical thermal sensation and thermal comfort scales for severe cold area. The discussions indicate the significance of considering adaptation and local exposure for further improving thermal sensation and comfort predicting.
机译:舒适的户外环境有利于公民的健康,减少能源消耗和污染。本研究讨论了严重寒冷地区的不同室外热敏和舒适评价方法。该数据库来自中国哈尔滨的一年漫长的户外热舒适调查。使用气象参数和三个流行的热舒适指数开发了热敏感觉评估,包括标准有效温度(设定*),生理等效温度(PET)和通用热气候指数(UTCI)。通过三种热舒适指数和可接受性开发了热舒适预测。套装*和宠物的原始热敏感觉尺度不太适用于预测热敏投票(TSV)。基于线性回归结果和探测分析获得了三个索引的校准尺度。校准的热敏尺度的准确性均低于32.8%。严重寒冷地区的舒适热感觉范围从“略微凉爽”变化为“热”。这种校准的范围提高了热舒适性预测的精度约为20%。在冷热感光度侧,舒适范围施加舒适范围的不可接受性为9%,在热侧有26%。适应和局部曝光还在热舒适指数中包含的因素外,也作用了热敏感觉和舒适性。我们的结果为严重寒冷地区提供了实用的热敏感觉和热舒适尺度。讨论表明考虑适应和局部暴露的重要性,以进一步提高热敏感觉和舒适预测。

著录项

  • 来源
    《Science of the total environment》 |2020年第20期|141520.1-141520.13|共13页
  • 作者单位

    School of Architecture Harbin Institute of Technology Harbin 150000 China Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology Ministry of Industry and Information Technology Harbin 150000 China;

    School of Architecture Harbin Institute of Technology Harbin 150000 China Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology Ministry of Industry and Information Technology Harbin 150000 China;

    School of Architecture Harbin Institute of Technology Harbin 150000 China Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology Ministry of Industry and Information Technology Harbin 150000 China;

    School of Architecture Harbin Institute of Technology Harbin 150000 China Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology Ministry of Industry and Information Technology Harbin 150000 China;

    School of Architecture Harbin Institute of Technology Harbin 150000 China Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology Ministry of Industry and Information Technology Harbin 150000 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Outdoor thermal comfort; Thermal comfort index; Thermal adaptation; Local exposure;

    机译:户外热舒适;热舒适指数;热适应;当地曝光;

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