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Evaluation of a multi-nodal thermal regulation model for assessment of outdoor thermal comfort: Sensitivity to wind speed and solar radiation

机译:用于评估室外热舒适性的多节点热调节模型的评估:对风速和太阳辐射的敏感性

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摘要

People's outdoor thermal sensation varies from that indoors. The highly asymmetric solar radiation and transient wind environment are the main causes. The University of California-Berkeley developed a multi-nodal human body thermal regulation model (the UCB model) to predict human thermal sensation and comfort in asymmetric and transient indoor environments. However, few studies compared its predictions with the survey responses outdoors. In this study, subjects' thermal sensations outdoors were surveyed and compared with the UCB model predictions. Meteorological parameters were monitored using a microclimate station, and over a thousand human subjects were surveyed. Results point out that subjects were highly sensitive to the changes in wind speed, especially. under low-radiation conditions. However, the UCB model failed to predict such a high sensitivity. Besides, subjects had a higher tolerance to high air temperatures in outdoor environments when the solar radiation was acceptable, but the UCB model over-predicted the TSV (thermal sensation vote) in such conditions. Both the on-site results and the predictions by UCB model showed that subjects were more sensitive to wind speed in hotter environments while they were least sensitive to solar radiation in neutral thermal conditions. This study helps to reveal the potential of a multi-nodal thermal regulation model to address the asymmetric and transient features of outdoor environments and indicates the need to further refine the model for better quan: titative prediction of outdoor thermal sensations.
机译:人们的室外热感觉与室内的不同。高度不对称的太阳辐射和瞬态风环境是主要原因。加利福尼亚大学伯克利分校开发了一种多节点人体温度调节模型(UCB模型),以预测非对称和瞬态室内环境中的人体热感和舒适度。但是,很少有研究将其预测与户外调查的反应进行比较。在这项研究中,调查对象在户外的热感觉,并将其与UCB模型的预测结果进行比较。使用微气候站监测气象参数,并调查了1,000多名人类受试者。结果指出,受试者对风速的变化特别敏感。在低辐射条件下。但是,UCB模型无法预测如此高的灵敏度。此外,当太阳辐射可以接受时,受试者在室外环境中对高温的耐受性更高,但是UCB模型在这种情况下高估了TSV(热感投票)。现场结果和UCB模型的预测都表明,受试者在较热的环境中对风速更敏感,而在中性热条件下对太阳辐射最不敏感。这项研究有助于揭示多节点热调节模型解决室外环境不对称和瞬态特征的潜力,并表明需要进一步完善模型以更好地量化:室外热感的定量预测。

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