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Computational fluid dynamics simulation of thermal comfort in naturally ventilated room by the fresh air valve installed in an external wall

机译:外墙上的新鲜空气阀门自然通风房中热舒适性的计算流体动力学模拟

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The use of computational fluid dynamics (CFD) to evaluate the thermal comfort distribution in residential buildings has grown in importance in recent years. Convection and radiation are the dominant forms of heat and mass transfer in rooms, during heating period, and CFD simulations is necessary to achieve a good understanding of the thermal environment. In naturally ventilated rooms, sidewall openings have important influence on air change rate and airflow conditions. Fresh air valve is installed in occupied spaces, in the external wall. During heating period, it has a major effect on mixing indoor and outdoor air, profiles of temperature of indoor air and on the thermal condition and indoor air quality of the rooms. The article presents numerical simulations conducted by solving partial differential equations for three dimensional heat transfer. For the simulations it was applied Computational Fluid Dynamics (CFD) technique. A series of simulations has been carried out to profiles of temperature and velocity of indoor air in naturally ventilated room with fresh air valve, installed in external wall on different height. Obtained results prove correlation with calculations of profiles of indoor air temperature, estimated using thermometer. It is recommended to consider the inlet size and location of fresh air valve to set the best results to assess thermal comfort in naturally ventilated rooms.
机译:近年来,使用计算流体动力学(CFD)以评估住宅建筑中的热舒适分布。对流和辐射是在加热期间的房间中的主要和质量传递的主要形式,并且在加热期间,需要CFD模拟来实现对热环境的良好理解。在天然通风的房间里,侧壁开口对空气变化率和气流条件具有重要影响。新鲜空气阀安装在占用空间,在外墙中。在加热期间,它对混合室内和室外空气,室内空气温度和室内空气质量的热量和室内空气质量具有重大影响。该物品通过求解三维传热来求解局部微分方程进行的数值模拟。对于模拟,它是应用的计算流体动力学(CFD)技术。已经对带有新鲜空气阀的自然通风室内室内空气的温度和速度进行了一系列模拟,安装在不同高度的外墙上。获得的结果证明了使用温度计估计的室内空气温度谱的计算相关性。建议考虑新鲜空气阀的入口尺寸和位置,以便在自然通风房中评估热舒适度的最佳效果。

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