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A numerical investigation of the aerodynamic noise generation mechanism in transonic cavity flows

机译:跨音速腔内空气动力噪声产生机理的数值研究

摘要

An overview of the progress of research work on the aerodyamics and aeroacoustics of three-dimensional cavities at transonic speeds is presented with special attention to identify the flow structures responsible for resonant tones. The cavity length to depth (L=D) ratio values were chosen to focus the investigations mainly in the open cavity flow regime. The cavity geometries considered also included the cavities with stores. In the first part of this project, a two-step computational solver which involves the solution of the Navier-Stokes equations in the first step, and an integral surface solution of the Ffowcs-Williams and Hawkings equation in the subsequent step, is developed especially for the accurate capturing of aeroacoustic phenomena. The solver developed is validated using a wide range of test cases and it also used to study an empty cavity unsteady flow problem at transonic speed. In addition, the solver was tested for its robustness by computing flow around an isolated landing gear. In the second part of the thesis, a general purpose CFD solver was used to tackle complex geometry problems which included cavities with missiles and spoilers. The flow field within the cavities investigated is shown to be dominated by highly unsteady periodic phenomena. The oscillation mechanism and the internal flow structures are found to remain largely unaected by the presence of stores, however, the spanwise variation on the flow is limited.
机译:概述了跨音速下三维空腔的气动和航空声学研究工作的进展,并特别注意确定引起共振音的流动结构。选择腔长与深度(L = D)的比值以将研究重点集中在开放腔流动状态中。所考虑的型腔几何形状还包括带有存储的型腔。在该项目的第一部分中,特别开发了一个两步计算求解器,其中涉及第一步的Navier-Stokes方程的求解,以及后续步骤中的Ffowcs-Williams和Hawkings方程的积分表面求解。用于精确捕获空气声学现象。所开发的求解器已通过广泛的测试用例进行了验证,并且还用于研究跨音速下的空腔非定常流动问题。此外,还通过计算隔离起落架周围的流量来测试求解器的鲁棒性。在论文的第二部分中,通用CFD求解器用于解决复杂的几何问题,其中包括带有导弹和扰流板的空腔。研究表明,腔内的流场受高度不稳定的周期性现象支配。发现振动机制和内部流动结构在很大程度上不受存储物的影响,但是,流动的跨度变化受到限制。

著录项

  • 作者

    Khanal B;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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