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Radiant Floor Cooling Combined with Mixing Ventilation in a Residential Room:Thermal Comfort and Ventilation Effectiveness

机译:辐射地板冷却与住宅房间的混合通风相结合:热舒适和通风效率

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摘要

Mixing air ventilation system is one of the main ventilation concepts applied in residential buildings. The effect of combining the mixing ventilation system with the radiant floor heating has been well established, whereas the validation of using the floor for cooling in summer is still in progress. An experimental laboratory study in a simulated residential room with a seated occupant simulated by a thermal manikin was performed in order to evaluate thermal comfort and ventilation effectiveness. Thermal comfort was evaluated by means of vertical air temperature and air velocity profiles and by thermal manikin equivalent temperatures. Contaminant removal effectiveness and air change efficiency were used to characterize the ventilation effectiveness. The vertical air temperature differences that occurred when floor cooling was combined with cold conditioned air supply were well within the limits for comfortable thermal environment recommended by the standards. The cooler supply air mixed well and the effect of the position of air terminal devices was small. When warm unconditioned outside air was supplied by mixing ventilation in combination with the radiant floor cooling, low floor temperature was needed to keep the desired room temperature, followed by increased vertical air temperature differences of about 4 °C for a sitting person, and the ventilation effectiveness was dominated by the position of air terminal devices and the supply air flow.
机译:混合空气通风系统是住宅建筑中应用的主要通风概念之一。混合通风系统与辐射地板采暖相结合的效果已得到充分确立,而夏季使用地板进行冷却的验证仍在进行中。为了评估热舒适性和通风效果,在模拟居住室内进行了实验实验室研究,其中乘员由热人体模型模拟。通过垂直空气温度和空气速度曲线以及人体模型等效温度评估热舒适性。使用污染物去除效果和换气效率来表征通风效果。当地板冷却与冷空气供应相结合时发生的垂直空气温度差完全在标准建议的舒适热环境范围内。冷却器的进气混合均匀,空气终端设备位置的影响很小。当通过混合通风与辐射地板冷却相结合来提供温暖的无条件外部空气时,需要较低的地板温度以保持所需的室温,随后对于就座者而言,垂直空气温度差增加约4°C,并且通风效率主要由空气终端设备的位置和送风量决定。

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