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Numerical study on temperature stratification in a room with underfloor air distribution system

机译:地板下空气分配系统室内温度分层的数值研究

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In this study, numerical prediction using computational fluid dynamics (CFD) was utilized to investigate air temperature stratification in a room with an underfloor air distribution (UFAD) system. The numerical modeling using CFD computation was validated with physical test in a full size experimental room with an UFAD system. The different supply air conditions and heat loads were discussed. The results show that the effect of three parameters, heat load, supply volume flux and supply air velocity, on room air temperature would be expressed by the length scale of the floor supply jet. When the length scale increased from 0.8 to 1.56 m, the ratio of vertical temperature difference between 2.5 and 0.1 m at the occupied zone to the difference between return and supply air temperature decreased from 0.62 to 0.25. When there was only one local heat source in the room, there was a thermal stratified interface at the occupied zone. The interface height was about 1.42 times the length scale. The results may suggest ways to optimize UFAD design and operation.
机译:在这项研究中,利用计算流体动力学(CFD)进行的数值预测被用于研究具有地板下空气分配(UFAD)系统的房间中的空气温度分层。使用CFD计算的数值模型在带有UFAD系统的全尺寸实验室中通过物理测试进行了验证。讨论了不同的送风条件和热负荷。结果表明,热负荷,供气量通量和供气速度这三个参数对室内空气温度的影响将由地板供气口的长度尺度来表示。当长度标度从0.8增加到1.56 m时,在被占区的垂直温度差在2.5和0.1 m之间与回风和送风温度之间的差从0.62减小到0.25。当房间中只有一个局部热源时,在被占用的区域会有一个热分层界面。界面高度约为长度标尺的1.42倍。结果可能会建议优化UFAD设计和操作的方法。

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