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Flow-Field Characteristics of High-Temperature Annular Buoyant Jets and Their Development Laws Influenced by Ventilation System

机译:高温环形浮力射流的流场特性及其受通风系统影响的发展规律

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摘要

The flow-field characteristics of high-temperature annular buoyant jets as well as the development laws influenced by ventilation system were studied using numerical methods to eliminate the pollutants effectively in this paper. The development laws of high-temperature annular buoyant jets were analyzed and compared with previous studies, including radial velocity distribution, axial velocity and temperature decay, reattachment position, cross-section diameter, volumetric flow rate, and velocity field characteristics with different pressures at the exhaust hood inlet. The results showed that when the ratio of outer diameter to inner diameter of the annulus was smaller than 5/2, the flow-field characteristics had significant difference compared to circular buoyant jets with the same outer diameter. For similar diameter ratios, reattachment in this paper occurred further downstream in contrast to previous study. Besides, the development laws of volumetric flow rate and cross-section diameter were given with different initial parameters. In addition, through analyzing air distribution characteristics under the coupling effect of high-temperature annular buoyant jets and ventilation system, it could be found that the position where maximum axial velocity occurred was changing gradually when the pressure at the exhaust hood inlet changed from 0 Pa to −5 Pa.
机译:本文采用数值方法研究了高温环形浮力射流的流场特征以及受通风系统影响的发展规律,以有效地消除污染物。分析了高温环形浮力射流的发展规律,并与以前的研究进行了比较,包括径向速度分布,轴向速度和温度衰减,重新附着位置,横截面直径,体积流量和在不同压力下的速度场特性。排气罩入口。结果表明,当环的外径与内径之比小于5/2时,与具有相同外径的圆形浮力射流相比,流场特性具有显着差异。对于类似的直径比,与以前的研究相比,本文的重新连接发生在更下游。此外,给出了不同初始参数下体积流量和横截面直径的发展规律。另外,通过分析高温环形浮力射流与通风系统耦合作用下的空气分布特性,发现当排气罩入口压力从0 Pa变化时,最大轴向速度发生位置逐渐变化。至-5 Pa。

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