WebFeb 26, 2024 · The high-Reynolds-number axisymmetric wake of a slender body with a turbulent boundary layer is investigated using a hybrid simulation. The wake generator is a 6:1 prolate spheroid and... WebThe flow Reynolds number in the corresponding range 0.09 × 10 7 < R e < 1.85 × 10 7 considered did not have a significant effect on the results. The verification and mesh convergence are described in Section 5.1 and Section 5.2 respectively, and the results of the WAM-V 16 simulations are provided in the remainder of this section.
High-Reynolds-number wake of a slender body - Semantic Scholar
WebMay 11, 2024 · Abstract The high-Reynolds-number axisymmetric wake of a slender body with a turbulent boundary layer is investigated using a hybrid simulation. The wake generator is a $6:1$ prolate spheroid and the Reynolds number based … WebMay 29, 2024 · The flow over a slender cylindrical body with a hemisphere end was studied experimentally using a combination of force balance and time-resolved particle image velocity measurements. The investigation was performed at a subcritical Reynolds number ( Re = 11 000) over a range of high incidence angles from 30° to 90°. little brickhill to tunbridge wells
High-Reynolds-number wake of a slender body
WebNov 1, 2024 · In the present paper, the characteristics of the weak surface flow induced by body-generated IWs of a slender body in a sharp stratified fluid at F ri = 0.547~2.189 and high Reynolds number(Re = 2.0 × 10 6 ~8.0 × 10 6) are investigated numerically and experimentally. The source-sink distribution method is used to calculate velocity field ... WebReynolds number increases the variation in the drag coefficient (based on cross-sectional area) decreases, and over a large range in Reynolds number it is nearly constant. Figure 2. number for smooth circular cylinders and smooth spheres. Figure 3. number = 0.2; (B) 12; (C) 120; (D) 30,000; (E) 500,000. Patterns correspond to the WebFeb 27, 2024 · Abstract:The high-Reynolds-number wake of a slender body with a turbulent boundary layer is investigated using a hybrid simulation. The wake generator is a 6:1 prolate spheroid and the Reynolds number based on the diameter $D$ is $Re = 10^5$. The transition of the unstratified wake to a state of complete little brick edmonton