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THEORETICAL AND EXPERIMENTAL INVESTIGATION OF THE ISOTHERMAL AXISYMMETRIC TURBULENT FREE JET (CIRCULAR, BOUNDARY).

机译:等温轴对称湍流自由射流(圆形,边界)的理论和实验研究。

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摘要

The development of the isothermal axisymmetric turbulent free jet is traced experimentally and theoretically from the jet source through the near-field into the fully developed region. The experimental and numerical investigations are described in detail and include description of experimental apparatus and technique, numerical analysis, and empirical and numeric results.; Hot-film anemometry data for two differing jets are computer reduced to yield extensive mean velocity and turbulence intensity profiles throughout the regions of jet development. These data are compared to that of previous studies and subsequently validated as a result of its close correlation to existing empirical models.; The generalized governing equations of anisotropic turbulence based on a Boussinesq/Prandlt viscosity model are derived for a cartesian geometry. This derivation includes a physically realistic and complete energy spectrum equation in the form of the so-called Reynolds-stress closure viscosity models. The cartesian system is transformed to cylindrical geometry and the boundary layer assumptions are applied together with the boundary conditions associated with axisymmetric free jet and dimensionless parameters to yield a dimensionless governing equation set for the jet problem at hand.; A simple Boussinesq/Prandlt kinematic viscosity model is assumed and the governing equations (excluding the more complex energy spectrum equation) are numerically solved with a finite element approach which utilized a cubic basis function to match numeric profiles to experimental data, thereby characterizing the assumed turbulent kinematic viscosity throughout the development region. The exponential viscosity profile derived as a result of this characterization is shown to correlate closely with known jet behavior and is proposed as a bench-mark for future modeling of the energy spectrum Reynolds-stress closure model as presented herein.
机译:等温轴对称湍流自由射流的发展在实验和理论上都从射流源经过近场进入了完全发达的区域。对实验和数值研究进行了详细描述,包括实验设备和技术的描述,数值分析以及经验和数值结果。计算机将两个不同射流的热膜风速数据进行计算机缩减,以在整个射流发展区域产生广泛的平均速度和湍流强度分布。这些数据与以前的研究进行了比较,随后由于与现有经验模型的密切相关而得到验证。对于笛卡尔几何,导出了基于Boussinesq / Prandlt粘度模型的各向异性湍流的广义控制方程。该推导包括一个物理上现实的,完整的能谱方程,其形式为所谓的雷诺应力封闭粘度模型。将笛卡尔系统转换为圆柱几何形状,并应用边界层假设以及与轴对称自由射流和无量纲参数相关的边界条件,以得出针对当前射流问题的无量纲控制方程式。假设一个简单的Boussinesq / Prandlt运动粘度模型,并使用有限元方法对控制方程(不包括更复杂的能谱方程)进行数值求解,该方法利用三次基函数将数值轮廓与实验数据进行匹配,从而表征假定的湍流整个开发区域的运动粘度。结果表明,由该特性得出的指数粘度曲线与已知的射流行为密切相关,并被提议作为本文中介绍的能谱雷诺应力封闭模型的未来模型的基准。

著录项

  • 作者

    BELL, DAVID A.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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