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Self-excited oscillations due to flow past slotted plate configurations.

机译:由于流过开槽板配置而产生的自激振荡。

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摘要

Turbulent shear flow past a slotted plate bounded by a cavity is investigated in absence of acoustic resonant and elastic effects. High-image-density particle image velocimetry is employed to determine simultaneously the flow patterns on either side of the slotted plate, as well as within the slots. This imaging is complemented with pressure measurements at the trailing-edge of the plate. Using these approaches, the primary features of the self-excited oscillations were determined for variations in length of the slotted plate, as well as parameters of the individual slots.; It is demonstrated that initially turbulent shear flow along the slotted plate can give rise to a highly coherent, purely hydrodynamic instability. Irrespective of the plate geometry, the generic features of the instability are: a large-scale swirl (vortical structure), which propagates in the streamwise direction; small-scale swirls, which occur in individual slots; a transversely-oriented jet at the trailing-edge of the plate, which alternates direction during an oscillation cycle; and a time-averaged counterflow along the backside of the plate. All of these unsteady and averaged features are associated with well-defined patterns of vorticity. The relationships between the unsteady features are quantitatively interpreted via patterns of phase, and thereby phase shifts, of fluctuations within and along either side of the plate.; The generic type of oscillation described in the foregoing can exist over a range of parameters of the slotted plate; however, when these parameters approach limiting values, the oscillation may be attenuated. At an optimal value of plate thickness, the oscillation attains its largest amplitude. When the thickness becomes relatively large or small, however, substantial attenuation occurs. Moreover, if the gap width of each slot of the plate exceeds a critical value, attenuation sets in. Further techniques of attenuation of the oscillation involve non-homogeneity of the plate, i.e. a non-spatially repetitive plate geometry. Of these approaches, the most effective is blocking a single slot near the trailing-edge of the plate. A different concept involves alteration of the inflow characteristics via generation of a separated shear layer at the leading-edge of the slotted plate; this approach can also lead to effective attenuation, provided the displacement of the layer above the plate exceeds a critical value. For all of the foregoing approaches to attenuation, wholefield imaging is employed to define the underlying physics. Calculation of both the pressure field and an energy integral, along with measurement of pressure, allow further interpretation of selected attenuation techniques.
机译:在没有声波共振和弹性效应的情况下,研究了流过由空腔界定的开槽板的湍流剪切流。采用高图像密度颗粒图像测速仪来同时确定开槽板两侧以及狭缝内的流型。这种成像是在板的后缘进行压力测量的补充。使用这些方法,可以确定开槽板长度的变化以及各个开槽参数的自激振荡的主要特征。事实证明,最初沿开槽板的湍流剪切流会引起高度连贯的纯流体动力学不稳定。无论板的几何形状如何,不稳定性的一般特征是:沿旋流方向传播的大尺度旋涡(旋涡结构);在单个缝隙中发生的小规模旋流;在板的后缘的横向喷射流,在振荡周期内交替改变方向;以及沿板背面的时间平均逆流。所有这些不稳定且平均的特征都与明确定义的涡旋模式相关。非稳态特征之间的关系通过板的内部和沿板的任一侧的波动的相位模式定量地解释,从而相移。前述振动的通用类型可以存在于开槽板的一系列参数中;例如,但是,当这些参数接近极限值时,振荡可能会减弱。在板厚度的最佳值下,振荡达到最大振幅。然而,当厚度变得相对较大或较小时,会发生相当大的衰减。此外,如果板的每个狭槽的间隙宽度超过临界值,则衰减开始。进一步的振荡衰减技术涉及板的不均匀性,即,非空间重复的板几何形状。在这些方法中,最有效的方法是在板的后缘附近阻塞一个槽。不同的概念涉及通过在开槽板的前缘处生成一个单独的剪切层来改变流入特性。只要板上方层的位移超过临界值,此方法也可以导致有效衰减。对于所有上述衰减方法,采用全场成像来定义基础物理。压力场和能量积分的计算以及压力的测量,可以进一步解释选定的衰减技术。

著录项

  • 作者

    Sever, Ahmet Cagri.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Applied Mechanics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用力学;
  • 关键词

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