School of Engineering and Technology, China University of Geosciences (Beijing), Beijing 100083, China.
Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong, China.
Int J Environ Res Public Health. 2018 Dec 16;15(12):2884. doi: 10.3390/ijerph15122884.
A uniform push⁻pull ventilation device can effectively improve indoor air quality (IAQ). The 90° rectangular elbow is an important part of the push⁻pull ventilation device. This paper analyzes the flow field characteristics of the 90° rectangular elbows under different working conditions. This was done by using computational fluid dynamics (CFD) simulation (Fluent). The flow lines, velocity and pressure distribution patterns of the elbow flow field are revealed in detail. The wind velocity non-uniformity and wind pressure non-uniformity of the 90° rectangular elbows with different coefficients of radius curvature R and rectangular section height h are also compared. The results show that when R ≥ 2.5 h, the wind flow traces inside the elbow are basically parallel lines. At the same time, the average wind velocity and the average wind pressure are stable. Also, the wind velocity non-uniformity and wind pressure non-uniformity decrease with the increase of R. Therefore, considering the space and material loss caused by an increase in radius of curvature, the elbow with R = 2.5 h can be used as the best design structure for the 90° rectangular elbow, which is of great significance for improving the control effect of dust and toxic pollutants in a uniform push⁻pull ventilation device.
一种均匀的推-拉通风装置可以有效地改善室内空气质量(IAQ)。90°矩形弯头是推-拉通风装置的重要组成部分。本文通过计算流体动力学(CFD)模拟(Fluent)分析了不同工况下 90°矩形弯头的流场特性。详细揭示了弯头流场的流线、速度和压力分布模式。还比较了不同半径曲率系数 R 和矩形截面高度 h 的 90°矩形弯头的风速不均匀性和风压不均匀性。结果表明,当 R≥2.5h 时,弯头内的风流迹线基本为平行线。同时,平均风速和平均风压稳定。而且,随着 R 的增加,风速不均匀性和风压不均匀性减小。因此,考虑到曲率半径增加引起的空间和材料损失,R=2.5h 的弯头可以作为 90°矩形弯头的最佳设计结构,这对提高均匀推-拉通风装置中粉尘和有毒污染物的控制效果具有重要意义。