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Analysis of thermal comfort during movement in a semi-open transition space

机译:半开过渡空间运动中热舒适性分析

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Urbanization has increasingly drawn attention to outdoor thermal comfort. The most common strategy to avoid direct sunlight is to apply overhead layer eaves. The spaces under the overhead layer are commonly called transition spaces. Experimental studies were completed in a transition space at Guangzhou University to study transient thermal comfort when moving outdoors. At every phase of the experiment, subjects walked for 20 min at different speed levels and then took a 10-min rest. The subjective thermal responses and physical indices were recorded, using the thermal environment parameters measured in the transition space. In addition, to develop a predictive thermal comfort model, the effects of variations in metabolic rates caused by body movement, the relationships between the mean thermal sensation vote (MTSV) and thermal indices, including physiologically equivalent temperature (PET) and universal thermal climate index (UTCI), were analyzed. An improved predictive model accurately predicted thermal comfort, regardless of dynamic walking or static processes. Further, the effect of turbulence intensity on the convective heat transfer of the human body was found to be underestimated, which caused an overestimation of the thermal storage in the human body by approximately 20%. (C) 2020 Elsevier B.V. All rights reserved.
机译:城市化越来越引起了户外热舒适度。避免直接阳光的最常见的策略是应用架空层檐。开销层下的空间通常称为转换空间。在广州大学的过渡空间中完成了实验研究,在户外移动时研究瞬态热舒适度。在实验的每一阶段,受试者以不同的速度水平走20分钟,然后休息10分钟。记录主观热响应和物理指数,使用在过渡空间中测量的热环境参数。此外,为了开发预测的热舒适模型,体内运动引起的代谢率的变化的影响,平均热敏投票(MTSV)与热索引之间的关系,包括生理上等同的温度(PET)和通用热气候指数(UTCI)分析。无论动态行走或静态过程如何,准确地预测热舒适性的改进的预测模型。此外,发现湍流强度对人体对流热转移的影响被低估了,这导致人体中的热储存量高约20%。 (c)2020 Elsevier B.v.保留所有权利。

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