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Influence of human body geometry, posture and the surrounding environment on body heat loss based on a validated numerical model

机译:基于验证的数值模型,人体的几何形状,姿势和周围环境对人体热量散失的影响

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For accurate prediction of human thermal comfort in indoor space, a fully validated human body-environment interface model is the key factor. In this study, a numerical model for heat transfer simulation between the human body and the environment was developed. Three parameters, including air speed, air temperature, and total heat transfer coefficient at the body surface, were validated against experiments including a manikin placed in a climatic chamber. Based on the verified model, a set of human body-environment parameters were investigated to quantify their relevance for thermal simulations. The parameters included three body geometries with different simplification levels, three body postures, and three kinds of environments differing in room configuration, size, and wall emissivity. The investigations revealed that body geometry simplification had only a moderate influence on overall heat transfer between the body and environment, while greatly influencing local heat transfer. Body posture showed a more prominent impact on heat transfer than the geometry, especially on the radiative heat transfer, due to the view factor change caused by local body orientation. The room configuration largely influenced the airflow pattern and, thus, convective heat transfer, while room size and wall emissivity only had an influence on radiative heat transfer. A similar environmental setup and body posture with the real situation would be suggested as the premise for the body-environment modelling work. The validated numerical model, along with the set of body-environment parameters, can be used for a large range of investigations on human physiological response in varying thermal environments.
机译:为了准确预测室内空间中的人体热舒适度,一个经过充分验证的人体-环境界面模型是关键因素。在这项研究中,建立了一个模拟人体与环境之间传热的数值模型。通过包括放置在气候室内的人体模型在内的实验,验证了三个参数,包括风速,空气温度和人体表面的总传热系数。基于已验证的模型,研究了一组人体环境参数,以量化它们与热模拟的相关性。这些参数包括三个具有不同简化级别的人体几何形状,三个人体姿势以及三种在房间配置,大小和壁发射率方面不同的环境。调查显示,简化人体几何形状对人体与环境之间的整体热传递仅具有中等影响,同时极大地影响了局部热传递。由于局部身体取向引起的视角因素变化,身体姿势对传热的影响比几何形状更显着,尤其是对辐射传热。房间的配置极大地影响了气流的模式,从而影响了对流的热传递,而房间的大小和壁的发射率仅影响辐射的热传递。建议将与实际情况相似的环境设置和身体姿势作为人体环境建模工作的前提。经过验证的数值模型以及人体环境参数集可用于在变化的热环境下进行的大量人体生理反应研究。

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