Wan M P, Chao C Y
Department of Mechanical Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong.
Indoor Air. 2005 Oct;15(5):342-55. doi: 10.1111/j.1600-0668.2005.00378.x.
Airflow and temperature distributions in an enclosure with heat sources ventilated by floor supply jets with floor or ceiling air exit vents were investigated using experimental and numerical approaches. These ventilation configurations represent the floor return or the top return underfloor ventilation systems found in real applications. Experiments and numerical simulations were performed on a full-sized environmental chamber. The results reveal that the temperature stratification in the enclosure highly depended on the thermal length scale of the floor supply jets. When the thermal length scale of the supply jet was >>1, temperature stratification was minor for all tested heat densities and air distribution methods. Significant vertical temperature gradients occurred when the jet thermal length scale was <<1. Changes in air distribution methods also became significant for temperature stratification at small supply jet thermal length scales. Temperature stratification also affected the terminal height of the momentum-dominant region of the vertical buoyant supply jets. The applicability of these results to underfloor ventilation design was also discussed.
In designing underfloor ventilation systems, supply jet conditions and heat load density have to be considered to avoid thermal discomfort because of excessive temperature stratifications. This study demonstrated, by both numerical simulations and experiments, that thermal length scale can be used as a design indicator to predict thermal stratifications under a floor return and a top return underfloor ventilation setting.
采用实验和数值方法研究了在带有热源的封闭空间内,通过带有地板或天花板出风口的地板送风射流进行通风时的气流和温度分布。这些通风配置代表了实际应用中发现的地板回风或顶部回风的地板下通风系统。在一个全尺寸环境舱内进行了实验和数值模拟。结果表明,封闭空间内的温度分层高度依赖于地板送风射流的热长度尺度。当送风射流的热长度尺度>>1时,对于所有测试的热密度和空气分布方法,温度分层较小。当射流热长度尺度<<1时,会出现显著的垂直温度梯度。在送风射流热长度尺度较小时,空气分布方法的变化对温度分层也变得显著。温度分层还影响了垂直浮力送风射流动量主导区域的终端高度。还讨论了这些结果在地板下通风设计中的适用性。
在设计地板下通风系统时,必须考虑送风射流条件和热负荷密度,以避免因过度的温度分层而导致热不适。本研究通过数值模拟和实验都证明,热长度尺度可以用作设计指标,以预测地板回风和顶部回风地板下通风设置下的热分层情况。