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Modeling additional solar constraints on a human being inside a room

机译:模拟房间内人的额外太阳约束

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Sun fluxes induce additional heterogeneous thermal constraints in buildings and may also lead to discomfort for the inhabitant. To calculate the local thermal sensation of a human being totally or partially situated in the sunlight, the solar radiation inside a room and its detailed distribution on parts of the human body are modeled. The present study focuses on the solar gains part of a complete modeling tool simulating an occupied building. The irradiated areas are calculated with a ray tracing method taking shadow into account. Solar fluxes are computed. Fluxes can be absorbed by each surface or reflected. The reflected fluxes are then absorbed at the next impact. A multi-node thermoregulation model (MARCL) represents the thermal behavior of the human body and all its heat exchanges with the environment. The thermal transient simulation of the whole occupied building is performed in TRNSYS simulation software. In the case presented here, the results show that, when a person is inside the building, the skin and clothing temperatures of the irradiated segments increase more or less depending on the segments but the global thermal equilibrium of the body is maintained thanks to strong physiological reactions.
机译:太阳通量会在建筑物中引起其他不均匀的热约束,也可能导致居民不适。为了计算全部或部分位于阳光下的人的局部热感,对室内的太阳辐射及其在人体各部位的详细分布进行建模。本研究着重于模拟完整建筑模型的完整建模工具的太阳能获取部分。考虑到阴影,通过射线追踪法计算出照射面积。计算太阳通量。助焊剂可以被每个表面吸收或反射。然后在下一次冲击时吸收反射的通量。多节点温度调节模型(MARCL)代表了人体的热行为及其与环境的所有热交换。在TRNSYS仿真软件中对整个建筑物的热瞬态进行仿真。在此处显示的情况下,结果表明,当一个人在建筑物内时,受辐照部分的皮肤和衣服温度或多或少地取决于这些部分,但是由于强大的生理功能,人体的整体热平衡得以维持。反应。

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