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A generalized model of human body radiative heat exchanges for optimal design of indoor thermal comfort conditions

机译:人体辐射换热的通用模型,用于室内热舒适条件的最佳设计

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Human thermal sensation depends heavily on radiative exchanges between the human body and the surrounding environment. Because these exchanges play a crucial role in the thermal balance of the human body, about 35% of the process, human thermal sensation should draw the attention of planners when designing both indoor environments and equipment.The present study aims to contribute to this field by proposing a procedure for delineating the optimal comfort conditions for occupants in most of the articulate and realistic configurations of actual indoor environments. Specifically, this procedure enables accurate assessment of the radiant field surrounding a subject in a given indoor realistic environment and considers its variability with space and time along with the presence of high-intensity radiant sources. The proposed simulation tool contains a set of algorithms in which the degree of complexity depends on the level of accuracy for modelling the radiative heat transfer between the occupants and surrounding environment.The feasibility of these algorithms for designers and researchers has also been checked for a single room characterised by the presence of windows in two different exposures. This configuration implies a complex pattern of the sun entering the room, which in turn determines relevant spatial modifications of the indoor comfort thermal conditions. Such complex situations are effectively interpreted by the proposed model.This analysis provides useful indications for suitable design of layouts of the confined space and the size of an effective heating, ventilating, and air conditioning system to limit the discomfort felt inside the room.
机译:人体的热感觉在很大程度上取决于人体与周围环境之间的辐射交换。由于这些交换在人体的热平衡中起着至关重要的作用,约占整个过程的35%,因此,在设计室内环境和设备时,人体的热感应引起规划人员的注意。提出了一种程序,用于在实际室内环境的大多数关节和实际配置中为乘员描绘最佳舒适条件。具体而言,此过程能够准确评估给定室内现实环境中对象周围的辐射场,并考虑其随空间和时间的变化以及高强度辐射源的存在。拟议的仿真工具包含一组算法,其中算法的复杂程度取决于对乘员与周围环境之间的辐射热传递进行建模的准确性水平,并且还针对单个设计人员和研究人员检查了这些算法的可行性房间的特点是在两次不同的曝光中都存在窗户。这种配置意味着太阳进入房间的复杂模式,进而决定了室内舒适性热状况的相关空间变化。所提出的模型可以有效地解释这种复杂情况。该分析为有限空间布局的适当设计以及有效的供暖,通风和空调系统的尺寸提供了有用的指示,以限制室内的不适感。

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