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自适应理性热舒适模型:具有可变自适应系数的自适应预测平均投票。

Adaptive-rational thermal comfort model: Adaptive predicted mean vote with variable adaptive coefficient.

机构信息

Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong, China.

Division of Building Science and Technology, City University of Hong Kong, Hong Kong, China.

出版信息

Indoor Air. 2020 Sep;30(5):1052-1062. doi: 10.1111/ina.12665. Epub 2020 Mar 23.

Abstract

Thermal adaptations, as feedbacks of occupants to physical stimuli, extend thermal comfort zone thereby reducing building energy consumption effectively. The rational approach models thermal comfort from the perspective of the body's heat balance, but is limited in explaining the thermal adaptations. The adaptive approach of modeling thermal comfort can fully account for the thermal adaptations, but ignores the body's heat balance. To improve thermal comfort prediction, this study proposes an adaptive-rational thermal comfort model, that is, an adaptive predicted mean vote with a variable adaptive coefficient (termed as arPMV). By linearly linking the negative feedback effects of the thermal adaptations to the ambient temperature according to the adaptive approach, the variable adaptive coefficient is linearly related to the reciprocal of the ambient temperature with two constants. The variable adaptive coefficient is determined by explicitly quantifying the two constants as the functions of the predicted mean vote, thermal sensation vote, and ambient temperature. The proposed arPMV is validated for naturally ventilated, air-conditioned, and mixed-mode buildings, with the mean absolute error and the robustness of the thermal sensation prediction reduced by 24.8%-83.5% and improved by 49.7%-83.4%, respectively.

摘要

热适应作为居住者对物理刺激的反馈,扩大了热舒适区,从而有效地降低了建筑能耗。理性方法从人体热平衡的角度来模拟热舒适,但在解释热适应方面存在局限性。而从热适应角度来模拟热舒适的适应性方法可以充分考虑热适应,但忽略了人体的热平衡。为了提高热舒适预测的准确性,本研究提出了一种适应性-理性热舒适模型,即具有可变适应性系数的适应性预测平均投票(arPMV)。该模型通过根据适应性方法将热适应的负反馈效应线性关联到环境温度,从而使可变适应性系数与环境温度的倒数呈线性关系,其中有两个常数。通过明确将这两个常数量化为预测平均投票、热感觉投票和环境温度的函数,确定了可变适应性系数。所提出的 arPMV 经过自然通风、空调和混合模式建筑的验证,其热感觉预测的平均绝对误差和稳健性分别降低了 24.8%-83.5%和提高了 49.7%-83.4%。

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