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Turbulence modeling and simulation and related effects on helicopter response with wake dynamics using finite elements and parallelism.

机译:湍流建模和仿真及其对直升机响应的影响以及有限元和并行度的尾流动力学。

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摘要

Future helicopters will require all-weather capability for stabilized flight through severe atmospheric turbulence. This requirement has brought into focus the effect of turbulence on handling qualities. Accordingly, there is renewed interest in modeling and simulating turbulence and predicting turbulence-induced rotor oscillations. This thesis addresses three fundamental aspects of the problem: (1) modeling and simulation of turbulence including cross-correlation; (2) three-dimensional dynamic-wake effects on rotor response to turbulence and (3) prediction of turbulence and response statistics. The analysis is based on the theory of isotropic and homogeneous turbulence and Taylor's frozen-field approximation. Quasisteady airfoil aerodynamics and a three-dimensional wake are used. Both the isolated blades and isolated rotors are treated. The parallelization is carried out on a massively parallel MasPar SIMD computer. Major conclusions include: (i) The effects of cross-correlation are negligible when two stations lie on the same blade and appreciable when two stations lie on different blades. (ii) In modeling the three-dimensional wake, 3 harmonics are required and dynamic wake has dominant influence on response statistics. (iii) With increasing comprehensiveness of helicopter-turbulence modeling, the sequential execution times increase dramatically; by comparison, the parallel execution times are far lower and, more significantly, remain nearly constant.
机译:未来的直升机将需要全天候能力,以通过严重的大气湍流来稳定飞行。这项要求已使湍流对处理质量的影响成为焦点。因此,人们对建模和模拟湍流以及预测湍流引起的转子振动有了新的兴趣。本文主要研究了该问题的三个基本方面:(1)包括互相关的湍流建模与仿真; (2)三维动态唤醒对转子对湍流响应的影响,以及(3)湍流预测和响应统计。该分析基于各向同性和均质湍流理论以及泰勒的冻结场近似。使用了拟稳定的翼型空气动力学和三维尾流。隔离叶片和隔离转子都经过处理。并行化是在大规模并行MasPar SIMD计算机上进行的。主要结论包括:(i)当两个站点位于同一刀片上时互相关的影响可忽略不计,而当两个站点位于不同刀片上时互相关的影响则可忽略不计。 (ii)在建模三维唤醒时,需要3次谐波,而动态唤醒对响应统计具有主要影响。 (iii)随着直升机湍流建模的全面性提高,相继执行时间急剧增加;相比之下,并行执行时间要短得多,并且更重要的是,几乎保持不变。

著录项

  • 作者

    Dang, Ying Yi.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Engineering Aerospace.;Computer Science.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 1995
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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