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Power production locality of bluff body flutter mills using fully coupled 2D direct numerical simulation.

机译:使用完全耦合的2D直接数值模拟的钝体扑磨机的发电位置。

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摘要

Two-dimensional fully coupled direct numerical simulations (DNS) are conducted to examine the local energy dynamics of a flexible cantilever plate in the wake of a two-dimensional circular cylinder. The motion of the cantilever plate is described using a finite element formulation and a fully compressible, finite volume Navier Stokes solver is used to compute the flow field. A sharp interface level set method is employed in conjunction with a ghost fluid method to describe the immersed boundaries of the bluff body and flexible plate. DNS is first conducted to validate the numerical methodology. The results are compared with previous studies of flexible cantilever plates and flow over bluff bodies showing excellent agreement. A newly defined power production / loss geometry metric is introduced based on surface curvature and plate velocity. The metric is found to be useful for determining which sections of the plate will produce energy based on curvature and deflection rate. Scatter plots and probability measures are presented showing a high correlation between the direction of energy transfer (i.e., to or from the plate) and the sign of the newly defined curvature-deflection-rate metric. The findings from this study suggest that a simple local geometry/kinematic based metric can be devised to aid in the development and design of flexible wind energy harvesting flutter mills.
机译:进行了二维全耦合直接数值模拟(DNS),以检查二维圆柱后的柔性悬臂板的局部能量动力学。使用有限元公式描述悬臂板的运动,并使用完全可压缩的有限体积的Navier Stokes解算器来计算流场。锐利的界面水平设置方法与重影流体方法结合使用来描述钝体和柔性板的沉浸边界。首先进行DNS来验证数值方法。将结果与以前的柔性悬臂板研究以及在非流线形物体上的流动进行了比较,显示出极好的一致性。基于表面曲率和板速度引入了新定义的功率产生/损耗几何度量。发现该度量对于基于曲率和偏转率确定板的哪些部分将产生能量是有用的。给出了散点图和概率测度,表明能量传递的方向(即到板或从板传出)与新定义的曲率-偏转率度量的符号之间具有高度相关性。这项研究的发现表明,可以设计出一种基于局部几何/运动学的简单度量标准,以帮助开发和设计柔性风能收集扑磨机。

著录项

  • 作者

    Kuhl, Jared Michael.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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