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LES investigation on cavitating flow structures and loads of water-exiting submerged vehicles using a uniform filter of octree-based grids

机译:利用八大桥纤维滤波器测定空化流动结构和荷载淹没车辆的负荷

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摘要

The water-exit course of a submerged vehicle launched underwater that moves into the atmosphere is one of the most important considerations in naval applications. In the present work, a large-eddy simulation with a uniform filter of an octree-based isotropic mesh and a high-resolution interface-capturing algorithm is employed to investigate this issue, with a special emphasis on the flow structures and pressure features. Various launch parameters, including the immersion depth, navigation speed, and angle of attack are discussed. The flow structures sensitive to adverse pressure relevant to the water-exit angle are captured and discussed. The flow experiences a laminar-turbulent transition and forms coherent turbulence structures, which develop a series of primary and secondary hairpin vortices. The distribution of pressure is more monotonic and regular on the pressure side of the vehicle as the angle increases, while a propagation of disturbance and a transition to turbulence can occur across the lateral side. Based on the clearly captured evolution of the water surface and cavitation, the cavity shedding induced by a pinch-off effect of the travelling liquid-vapor contact lines is found and investigated. The structural features of turbulence are greatly affected in this case, which contrasts with the noncavitating features. The structures are tuned due to the existence of cavitation, which blocks the hairpin-vortex generation mechanism. The cavity surface is full of Tollmien-Schlichting wave-like vortical structures caused by liquid-vapor interface shearing. Hundreds of monitors are intensively arranged on the vehicle's surface to capture the transient pressure signals, through which the crucial pressure features induced by the growth and collapse of the cavitation are captured.
机译:淹没车辆的水出口过程推出水下,移动到大气中是海军应用中最重要的考虑之一。在本作工作中,采用具有八大的各向同性网格的均匀滤波器和高分辨率接口捕获算法的大涡流模拟来研究该问题,特别强调流动结构和压力特征。讨论了各种发射参数,包括浸没深度,导航速度和攻角和攻角。捕获并讨论对与水出口角度相关的不利压力敏感的流动结构。流动经历层流湍流过渡并形成相干湍流结构,其开发一系列初级和次级发夹涡流。随着角度增加,压力分布在车辆的压力侧上的单调和规则在车辆的压力侧,而横向侧可以发生干扰的传播和过渡到湍流。基于水面和空化的清晰捕获的进化,发现并研究了由行进液 - 蒸汽接触线的夹紧效应引起的腔缩。在这种情况下,湍流的结构特征在这种情况下很大影响,这与非舒适特征形成鲜明对比。由于空化的存在,该结构被调整,这阻挡了发夹 - 涡流产生机制。腔表面充满了由液态蒸汽接口剪切引起的Tollmien-Schlichting波状涡旋结构。在车辆表面上集中布置数百个监视器以捕获瞬态压力信号,通过该瞬态压力信号通过该瞬态压力信号捕获空化的生长和塌陷引起的关键压力特征。

著录项

  • 来源
    《Ocean Engineering》 |2021年第1期|108811.1-108811.19|共19页
  • 作者单位

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean & Civil Engn Key Lab Hydrodynam Minist Educ Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean & Civil Engn Key Lab Hydrodynam Minist Educ Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean & Civil Engn Key Lab Hydrodynam Minist Educ Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean & Civil Engn Key Lab Hydrodynam Minist Educ Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean & Civil Engn Key Lab Hydrodynam Minist Educ Shanghai 200240 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cavitation; Water-exit; Large-eddy simulation; Submerged vehicle;

    机译:空化;水出口;大涡模拟;淹没车辆;

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