等腰三角形
垂直的
圆柱
几何学
平方(代数)
钻石
三角棱镜
流量(数学)
旋涡脱落
机械
数学
物理
湍流
材料科学
雷诺数
复合材料
作者
V. Tamimi,Seyed Taghi Omid Naeeni,M. Zeinoddini,Mohammad Saeed Seif,Moharram Dolatshahi Pirooz
标识
DOI:10.1080/17445302.2018.1534314
摘要
This in-water experimental study deals with the effects of the after-body on the FIV response of round and sharp edge cylinders. Different circular, square, diamond, and right-angle isosceles triangular cross-sections are investigated. The triangular cylinder is examined in four different symmetrical and unsymmetrical configurations with respect to the incident flow. The current towing tank experiments form a basis for the feasibility study of the isosceles triangular cylinders for FIV energy converters. The results indicate that the cylinders with a flat side perpendicular to the flow have a galloping type of response. In contrast, the cylinders with a sharp vertex pointing the flow show a VIV type of response. The galloping amplitude in the triangular cylinder with similar after-body and separation points to a diamond cylinder is significantly higher than that in the square cylinder. This right isosceles triangular cylinder also displays considerably greater hydroelastic efficiency than other sharp edge oscillators.
科研通智能强力驱动
Strongly Powered by AbleSci AI