一种为可持续建筑和城市设计提供支持的局部服装隔热预测新方法。

IF 3 3区 地球科学 Q2 BIOPHYSICS
Junwei Lin, Ying Jiang, Yongxin Xie, Jianlei Niu
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引用次数: 0

摘要

在热舒适评价中,服装是至关重要的,它影响着人体与环境之间的热交换。假设即使是跨身体部分的衣服隔热也会导致不准确的预测,影响建筑和城市设计策略。本研究处理了240套服装的绝缘数据,得出了局部绝缘值。建立了回归模型,将局部和总体绝缘值联系起来,允许对任何给定的总体值快速估计局部绝缘分布。为了验证所提出方法预测的局部服装保温值的有效性,从现场实验中收集了实时测量的皮肤温度,并与预测值进行了比较。结果表明,结合所提出的局部服装绝缘估计方法,通过温度调节模拟预测局部皮肤温度的准确性有显着提高。雅卡德相似系数(JSC)平均提高了0.21,头、脖子、肩膀、背部和手臂等身体部位的改善接近0.4或更多。这些局部隔热测定函数与多节点热调节模型一起使用,提供了一种更简单、更有效的方法来提高热舒适评估的准确性。通过提供更精确的局部隔热值,这些功能可以帮助优化建筑设计和城市规划策略,从而为居住者带来更好的热舒适性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel method for local clothing insulation prediction to support sustainable building and urban design.

Clothing is crucial in thermal comfort evaluation, affecting heat exchange between the body and the environment. Assuming even clothing insulation across body segments can lead to inaccurate predictions, affecting building and urban design strategies. This study processed insulation data from 240 clothing ensembles to derive local insulation values. Regression models were developed to relate local and overall insulation values, allowing fast estimation of local insulation distribution for any given overall value. To validate the effectiveness of local clothing insulation values predicted by the proposed methods, measured real-time skin temperatures were collected from field experiments and compared with predicted values. Results demonstrated a significant accuracy improvement in the predicted local skin temperature from thermoregulation simulation combined with the proposed local clothing insulation estimation methods. The Jaccard Similarity Coefficient (JSC) increased by an average of 0.21, with body segments like the head, neck, shoulders, back, and arms showing nearly 0.4 or more improvement. These local insulation determination functions, used with a multi-nodal thermoregulation model, offer a simpler and more effective way to enhance thermal comfort assessment accuracy. By providing more precise local insulation values, these functions can help optimize building designs and urban planning strategies, leading to better thermal comfort for occupants.

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来源期刊
CiteScore
6.40
自引率
9.40%
发文量
183
审稿时长
1 months
期刊介绍: The Journal publishes original research papers, review articles and short communications on studies examining the interactions between living organisms and factors of the natural and artificial atmospheric environment. Living organisms extend from single cell organisms, to plants and animals, including humans. The atmospheric environment includes climate and weather, electromagnetic radiation, and chemical and biological pollutants. The journal embraces basic and applied research and practical aspects such as living conditions, agriculture, forestry, and health. The journal is published for the International Society of Biometeorology, and most membership categories include a subscription to the Journal.
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