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Research on Human Thermal Comfort Model Based on Multiple Physiological Parameters

机译:基于多种生理参数的人体热舒适模型研究

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Currently, the demand on thermal comfort of architectural environment is becoming higher and higher, the establishment of thermal comfort model based on the physiological parameters plays an important role in improving the indoor thermal comfort and building energy efficiency. The mean skin temperature, skin conductance, and heart rate are three main physiological parameters used to characterize the thermal comfort state of the human body, which will be of great significance to establish the thermal comfort model. In this paper, the physiological experimental program was designed in detail and the subjective questionnaires ruler was classified involving thermal sensation, thermal comfort, and sweat rate. Then, the human subjective thermal response distribution and the regular pattern were analyzed according to the vote on the state of thermal comfort and physiological parameters of subjects under five experimental conditions. As a result, the multiple physiological modeling of indoor human thermal comfort was performed by using partial least squares (PLS) method based on mean skin temperature, skin conductance, and heart rate. Furthermore, the experiments aimed at evaluating the accuracy of the established indoor human thermal comfort model were performed, the results indicate the accuracy of the established model is satisfactory.
机译:目前,对建筑环境的热舒适性的需求越来越高,基于生理参数的热舒适模型的建立在提高室内热舒适度和建筑能效方面发挥着重要作用。平均皮肤温度,皮肤电导和心率是三个主要的生理参数,用于表征人体的热舒适状态,这对于建立热舒适模型将具有重要意义。在本文中,详细设计了生理实验程序,主观调查尺尺寸涉及热敏,热舒适度和汗水率。然后,根据在5个实验条件下对受试者的热舒适和生理参数的表决进行分析人类主观热响应分布和规则模式。结果,通过使用基于平均皮肤温度,皮肤传导和心率的部分最小二乘(PLS)方法进行室内人热舒适性的多种生理建模。此外,旨在评估所建立的室内人热舒适模型的准确性的实验,结果表明既定模型的准确性令人满意。

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