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Research on a Secondary Airflow-Relay System to Improve Ventilation Performance of Nozzle Supply in Large Space Buildings

机译:二级气流继电器系统,提高大型空间建筑喷嘴供应通风性能的研究

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In large space buildings, jet flow nozzle is usually used for ventilation and air conditioning. A secondary airflow-relay system is proposed for situations that building span is larger than the primary jet flow range. A physical experiment is conducted to investigate the effect of such secondary airflow-relay;; a CFD model is built up to research the secondary airflow velocity and relative location of primary and secondary terminal on the ventilation performance. The CFD result is validated by experimentally measured vertical temperature distribution in certain points. Various indices including ADPI, PD and CV of temperature and velocity at breathing level is used to quantitatively evaluate the ventilation performance of different configurations. It is found that the secondary airflow system should be properly specified in order to improve the ventilation performance of a large space building The secondary airflow-relay may potentially increase the cooling energy consumption as indicated by CFD result.
机译:在大型空间建筑中,喷射流量喷嘴通常用于通风和空调。提出了一种二级气流 - 中继系统,用于建筑跨度大于主要喷射流量范围的情况。进行物理实验,以研究这种二级气流继电器的效果;建立了CFD模型,以研究初级气流速度和初级端子的相对位置,对通风性能。通过实验测量的垂直温度分布在某些点处验证CFD结果。在包括ADPI,Pd和CV的各种指标用于在呼吸水平时的温度和速度包括速度和速度,用于定量评估不同配置的通风性能。结果发现,辅助气流系统应适当地指定,以提高大型空间的通风性能,次级气流继电器可能会增加CFD结果所示的冷却能耗。

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