Direct numerical simulation of 45° oblique flow past surface-mounted square cylinder

IF 3.6 2区 工程技术 Q1 MECHANICS Journal of Fluid Mechanics Pub Date : 2024-08-27 DOI:10.1017/jfm.2024.554
Dung Viet Duong, Luc Van Nguyen, Duc Van Nguyen, Truong Cong Dinh, Lavi Rizki Zuhal, Long Ich Ngo
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Abstract

Comprehensive coherent structures around a surface-mounted low aspect ratio square cylinder in uniform flow with an oblique angle of $45^{\circ }$ were investigated for cylinder-width-based Reynolds numbers of 3000 and 10 000 by direct numerical simulation based on a topology-confined mesh refinement framework. High-resolution simulations and the critical-point concept were scrutinized to reveal for the first time the reasonable and compatible topologies of flow separation and complete near-wall structures, due to their extensive impact on various engineering applications. Large-scale horseshoe vortices are observed at two notable foci in the viscous sublayer. Within this layer, a wall-parallel jet is formed by downflow intruding into the bottom surface at the half-saddle point, then deflecting in the upstream direction and finally penetrating the bottom surface until the half-saddle point. A pair of conical vortices on the cylinder's top surface switch themselves on two sides of the square cylinder, where the switching frequency is identical with that of the sway of the side shear layer. The undulation of the Kelvin–Helmholtz instability is identified in the instantaneous development of a conical vortex and side shear layer, where the scaling of the ratio of the Kelvin–Helmholtz and von Kármán frequencies follows the power-law relation obtained by Lander et al. (J. Fluid Mech., vol. 849, 2018, pp. 1096–1119). Large-scale arch-shaped vortex is often detected in the intermediate wake region of a square cylinder, involving two interconnected portions, such as the leg portion separated from leeward surfaces and head portion rolled up from the top surface. The leg portion of the arch-shaped vortex was rooted by two foci near the bottom-surface plane.
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45° 斜向流经表面安装方形圆筒的直接数值模拟
通过基于拓扑约束网格细化框架的直接数值模拟,研究了在斜角为 $45^{\circ }$ 的均匀流中,基于圆柱体宽度的雷诺数为 3000 和 10 000 时,表面安装的低纵横比方形圆柱体周围的综合相干结构。由于高分辨率模拟和临界点概念对各种工程应用的广泛影响,研究首次揭示了流体分离和完整近壁结构的合理兼容拓扑结构。在粘性子层的两个显著焦点处观察到了大尺度马蹄涡。在这一层中,下流在半鞍点侵入底面,然后向上游方向偏转,最后穿透底面直至半鞍点,形成了与壁面平行的射流。圆柱体顶面的一对锥形涡流在方形圆柱体的两侧切换,切换频率与侧剪切层的摇摆频率相同。开尔文-赫尔姆霍兹不稳定性的起伏在锥形涡旋和侧剪切层的瞬时发展中得以确定,其中开尔文-赫尔姆霍兹频率和冯-卡尔曼频率的比例关系遵循 Lander 等人获得的幂律关系(《流体力学》,第 849 卷,2018 年,第 1096-1119 页)。在方形圆柱体的中间尾流区域经常检测到大尺度拱形涡旋,涉及两个相互连接的部分,如与背风面分离的腿部和从顶面卷起的头部。拱形涡旋的腿部由靠近底面平面的两个焦点构成。
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来源期刊
CiteScore
6.50
自引率
27.00%
发文量
945
审稿时长
5.1 months
期刊介绍: Journal of Fluid Mechanics is the leading international journal in the field and is essential reading for all those concerned with developments in fluid mechanics. It publishes authoritative articles covering theoretical, computational and experimental investigations of all aspects of the mechanics of fluids. Each issue contains papers on both the fundamental aspects of fluid mechanics, and their applications to other fields such as aeronautics, astrophysics, biology, chemical and mechanical engineering, hydraulics, meteorology, oceanography, geology, acoustics and combustion.
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