gaoran
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- Professor
- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- Name (Pinyin):gaoran
- School/Department:建筑设备科学与工程学院
- Administrative Position:建筑设备科学与工程学院副院长
- Education Level:With Certificate of Graduation for Doctorate Study
- Professional Title:Professor
- Status:Employed
- Academic Titles:西安建筑科技大学建筑设备科学与工程学院副院长
- Other Post:西安建筑科技大学环境与市政工程学院教授
- Teacher College:建筑设备科学与工程学院

- Email:
- Paper Publications
Coupling effect of ventilation duct bend with different shapes and sizes
Release time:2024-08-09 Hits:
- Affiliation of Author(s):建筑设备科学与工程学院
- Journal:Building Simulation
- Key Words:中文关键字:雷诺应力模型;管道;阻力;弯管;耦合弯管;能量耗散,英文关键字:RSM;dust;drag;bend;coupled bend;energy consumption
- Abstract:The coupling effect of local components is common in buildings and results in energy loss and local drag. This effect is significantly influenced by the shape and size of the components. However, only a few studies have focused on this topic. The numerical simulation method of Reynolds stress model (RSM) is adopted in the present study to investigate the typically coupled local components of ventilation and air conditioning ducts, namely, the coupled bend. By focusing on the core speed and segmented drag in the coupled bend, this study explores the effects of aspect ratio and curvature radius on drag and core speed. This study provides a theoretical basis for the design, construction, and operation management of local components of ventilation and air conditioning ducts. Two evident core-speed reduction processes are observed in the coupled bend and its downstream. With increasing curvature radius (R/D), the drop in core speed downstream decreases gradually in the S-shaped and U-shaped bends.
- Note:李安桂
- Co-author:陈仕扩,赵建勋
- First Author:李安桂[重名-待确认],zhangying,gaoran
- Indexed by:Journal paper
- Volume:卷:9
- Issue:期:
- Page Number:页:311-318
- Translation or Not:no
- Date of Publication:2016-12-01