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Development of a multi-nodal thermal regulation and comfort model for the outdoor environment assessment

机译:开发户外环境评估的多节点热调节和舒适模型

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The growing need for planning eco-cities is calling on a tool that can give better prediction of the thermal comfort conditions for a specific microclimate. A multi-nodal thermal regulation model can potentially factor in the impacts of the transient and asymmetric thermal conditions on human subjects. In this study, Human subjects were invited to experience various kinds of urban open spaces and to express their thermal feelings, while skin temperatures of 17 local body segments were measured. We tested the multi-nodal thermal regulation model developed by UC Berkeley by comparing its predictions of human body skin temperature, thermal sensation vote (TSV), and thermal comfort vote (TCV) with our onsite human subject measurements and questionnaire survey, in order to identify the causes of the errors between the prediction and measurements. Corresponding to the thermal neutral status, the field-measured data recorded wider local skin temperature ranges than the simulated ones. We proposed using a "null zone" instead of "set-point" in the thermal comfort model to accommodate the possible adaptation of human subjects to the highly fluctuating wind environment in open spaces. It was proposed that the forehead was counted as one of the dominant local body parts when defining the overall thermal sensation. The correlation coefficient R-2 between the prediction and the field measured TSV improved to 93.7% for the revised model from 76.2% of the original model.
机译:规划生态城市的日益增长的需求呼吁一种工具,可以更好地预测特定微气密的热舒适条件。多节点热调节模型可能会对人类受试者对瞬态和不对称热条件的影响。在这项研究中,邀请人类受试者体验各种城市开放空间,并表达其热情,而17个局部体段的皮肤温度是测量的。我们通过比较其对人体皮肤温度,热敏投票(TSV)的预测,通过我们的现场人类对象测量和问卷调查,通过比较了UC Berkeley开发的多节点热调节模型。确定预测和测量之间的错误的原因。对应于热中性状态,现场测量数据记录更宽的局部皮肤温度范围而不是模拟的数据。我们在热舒适模型中使用“空区”而不是“设定点”,以适应人类受试者在开放空间中的高波动风环境中的适应。建议在定义整体热敏时,额头被计数为主导局部体部件之一。预测与现场之间的相关系数R-2测量TSV从原始模型的76.2%的修订模型提高到93.7%。

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