物理
机械
马赫数
压缩性
湍流
剪应力
雷诺数
寄生阻力
雷诺应力
剪切(地质)
动量(技术分析)
经典力学
可压缩流
回流
剪切速度
压力(语言学)
剪切流
明渠流量
涡流
直接数值模拟
作者
Haoqi Fei,Rui Wang,Feng Wang,Dewu Yang,Lin Shi,Hui Xu
摘要
The contribution of extreme wall shear stress (WSS) events to skin friction is investigated by direct numerical simulations of compressible turbulent channel flows at bulk Mach numbers of 0.7, 2.0, and 3.0. The results demonstrate that extreme positive events contribute appreciably to the skin friction, whereas backflow events exhibit a notably weaker effect. This behavior is explained by locally intensified Reynolds shear stress and the consequent enhancement of turbulent momentum transfers near the wall. Furthermore, a clear Mach-number dependence is observed. As the Mach number increases, both the probability and the intensity of extreme WSS events decline, thereby reducing their overall contribution to skin friction.
科研通智能强力驱动
Strongly Powered by AbleSci AI