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Building microclimate and summer thermal comfort in free-running buildings with diverse spaces

机译:在自由运行建筑物内建设小气候和夏季热舒适度,拥有多种空间

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In this paper, the authors first clarify the definition of building microclimate in free-running buildings and the relationship with summer thermal comfort. Next, field measurements were conducted to investigate the microclimate in a Chinese traditional vernacular house. Subsequently, the results of measurements were compared with a dynamic thermal and a CFD simulation in order to determine thenbsp;building microclimate and thermal comfort of the present vernacular house over the period of an entire summer. The field measurements show the present Chinese vernacular house has its own independent building microclimate in summer, which is in accordance with the main character of microclimate in terms of different distributions of solar gain, air temperature and wind velocity in different spaces. The simulation results of the vernacular house could be matched well with the field measurements. According to the simulations, at night, a comfortable temperature could be obtained throughout most of the summer period whereas in the daytime the operative temperature was higher than the comfortable temperature for one-third of the summer period. Wind velocity in the semi-outdoor and outdoor spaces however, improves the thermal comfort significantly. The thermal comfort environment can thus not only change in time but also in space. This example of the vernacular building shows that it is possible to create comfortable conditions for the inhabitants when not only the indoor climate is taken into account but the whole building microclimate as defined in this paper. This paper also shows that the simulations can predict the building microclimate.
机译:在本文中,作者首先阐明了在自由运行建筑物中建设小气门的定义以及与夏季热舒适的关系。接下来,进行现场测量以调查中国传统风格房屋的微气门。随后,将测量结果与动态热和CFD仿真进行比较,以便在整个夏天的时间内建立当前白话房屋的微气候和热舒适性。现场测量展示了本综合房屋在夏季拥有自己独立的建筑微气门,这是根据不同空间在不同空间中的不同空间分布的微气密的主要特征。白天房屋的仿真结果可以很好地与现场测量相匹配。根据仿真,在夜间,在大部分夏季时期可以获得舒适的温度,而在白天,操作温度高于夏季三分之一的舒适温度。然而,半室内和室外空间中的风速显着提高了热舒适度。因此,热舒适环境不仅可以在时间内变化而且在空间中。白话建筑的这个例子表明,当不仅在本文中定义的整个建筑物微气候时,居民可以为居民创造舒适的条件。本文还表明,模拟可以预测建筑物微气密。

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