西安交通大学能源与动力工程学院, 710049,西安
凌伟豪(1999—),男,博士生
王志恒,男,副教授,博士生导师。
收稿:2025-01-02,
网络首发:2025-04-11,
纸质出版:2025-08-10
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凌伟豪, 王志恒, 黄文林, 等. 相邻圆柱/斜坡及其展向间距对平板流动转捩影响的直接数值模拟[J]. 西安交通大学学报, 2025,59(8):32-41.
LING Weihao, WANG Zhiheng, HUANG Wenlin, et al. Direct Numerical Simulation on the Influence of Adjacent Cylinder/Ramp and Spanwise Spacing on the Transition of Flat Plate Flow[J]. Journal of Xi’an Jiaotong University, 2025, 59(8): 32-41.
凌伟豪, 王志恒, 黄文林, 等. 相邻圆柱/斜坡及其展向间距对平板流动转捩影响的直接数值模拟[J]. 西安交通大学学报, 2025,59(8):32-41. DOI: 10.7652/xjtuxb202508004.
LING Weihao, WANG Zhiheng, HUANG Wenlin, et al. Direct Numerical Simulation on the Influence of Adjacent Cylinder/Ramp and Spanwise Spacing on the Transition of Flat Plate Flow[J]. Journal of Xi’an Jiaotong University, 2025, 59(8): 32-41. DOI: 10.7652/xjtuxb202508004.
针对相邻粗糙元对平板转捩的影响尚未阐明的问题,基于直接数值模拟研究了由圆柱和斜坡两种形状组成的展向相邻粗糙元布局诱导平板边界层发生的转捩。粗糙元采用嵌入边界法进行解析,两种形状的粗糙元展向间距分别设为2.5
h
、5
h
,
h
为粗糙元高度。结果表明,强扰动的斜坡会主导发卡涡破碎、转捩的起始点以及平均流向脉动流输送的能量,不考虑斜坡时,展向间距的减小能有效促进转捩。不同形状粗糙元间的耦合作用会产生比相同形状粗糙元下更强的非线性相干结构。斜坡的强扰动主要是对相干结构的壁法向、展向两种脉动波产生贡献,而不是流向脉动波。适当小的展向间距所加强的不同形状相邻粗糙元间的耦合作用,有利于中心位置处非线性结构的演化,并且这种非线性结构可由全频带内的若干线性模态进行近似。当展向间距适当时,不同形状的粗糙元会在近下游的某个位置产生非线性结构的低频共振,这极大地增强了非线性结构的演化。
In order to address the issue of unclarified effect of adjacent roughness elements on plate transition
direct numerical simulation was employed to investigate the transition induced by the spanwise arrangement of adjacent roughness elements
comprising cylinders and ramps. These roughness elements were resolved utilizing the embedded boundary method
with spanwise intervals set at 2.5
h
and 5
h
respectively
where
h
denotes the height of the roughness elements. The study elucidated the effects of transient and time-averaged flow characteristics
coherent structures
and characteristic modes. Findings indicated that ramps with significant disturbances predominantly influenced the breakdown of hairpin vortices
the onset of transition
and the energy transferred from time-averaged flow to the fluctuating flow. With the ramp neglected
a decrease in spanwise spacing effectively promoted transition. The interplay between roughness elements of varying shapes could g
enerate a more potent nonlinear coherent structure than that observed among elements of uniform shape. The intense disturbance caused by the ramp predominantly contributed to the wall-normal and spanwise fluctuating waves of the coherent structure
rather than to the streamwise fluctuating waves. The interaction between adjacent roughness elements of diverse shapes
facilitated by an optimal reduction in spanwise spacing
promoted the evolution of the nonlinear structure at the central position. This structure could be approximated by several linear modes across the full frequency spectrum. When the spanwise spacing was well-chosen
roughness elements with different shapes might induce low-frequency resonance of nonlinear structures in a region near the downstream
substantially enhancing their evolutionary dynamics.
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