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首页> 外文期刊>Journal of Fluid Mechanics >Wave interaction with a vertical cylinder: spanwise flow patterns and loading
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Wave interaction with a vertical cylinder: spanwise flow patterns and loading

机译:波与垂直圆柱体的相互作用:翼展方向的流型和载荷

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A vertical cylinder is located in a free-surface wave, and a two-camera version of high-image-density particle image velocimetry is employed to characterize the spanwise modes of the flow structure in terms of instantaneous velocity and vorticity. These modes are classified according to organized patterns of velocity in the near wake, and are further interpreted in terms of distinctive arrangements of streamwise vorticity concentrations. At low Keulegan-Carpenter number, which corresponds to small wave height, locally two-dimensional vortices having small scale and circulation tend to form as a symmetrical pair and remain attached, or in close proximity, to the surface of the cylinder. Along the span of the cylinder, the near wake shows either a sinuous S or a unidirectional U mode. The spanwise wavelength A of the S modes, relative to the cylinder diameter D, lies in the range 1 less than or equal to lambda/D less than or equal to 4.5. These values of lambda/D represent the spacing between extrema of patterns of crossflow velocity, as well as between clusters of streamwise vorticity of like sign. As the free surface is approached, the value of lambda/D scales with the ratio of the minor to major axes of the elliptical particle trajectory of the wave. At moderate values of the Keulegan-Carpenter number, locally two-dimensional vortices having large scale and circulation are shed from the cylinder in an asymmetric arrangement. The corresponding spanwise mode represents the phase variation of this shedding along the span of the cylinder. These sinuous S modes involve large-scale distortions of patterns of both crossflow velocity and streamwise vorticity, which have wavelengths in the range 10 less than or equal to lambda/D less than or equal to 110, in contrast to the spacing between individual concentrations of vorticity, which is 1.5D to 4D. Remarkably, it is possible to attain a unidirectional U mode, whereby the phase of the locally two-dimensional vortex shedding is preserved along the entire extent of the cylinder. Signatures of the moments due to the transverse and in-line forces on the cylinder were acquired simultaneously with the patterns of instantaneous velocity and vorticity. Severe modulations of the moment due to the transverse force are associated with spontaneous transformations between basic forms of the sinuous S and unidirectional U modes. The overall form of the signature of the moment due to the in-line force is, however, not generally affected by the spontaneous transformation between modes, but distortion of its peaks is evident. [References: 31]
机译:垂直圆柱体位于自由表面波中,并采用两相机版本的高图像密度粒子图像测速仪以瞬时速度和涡度表征流动结构的展向模式。这些模式根据近尾的有组织的速度模式进行分类,并根据流向涡度浓度的独特排列进一步解释。在与小波高相对应的低Keulegan-Carpenter数下,具有小规模和环流的局部二维涡流倾向于形成对称的一对,并保持附着或紧密靠近圆柱体的表面。沿着圆柱体的跨度,近尾流显示出正弦S模式或单向U模式。相对于圆柱直径D,S模式的展向波长A在小于或等于λ/ D小于或等于4.5的范围内。这些λ/ D值表示错流速度模式的极值之间,以及类似符号的沿流的涡度簇之间的间隔。随着接近自由表面,λ/ D的值与波浪的椭圆粒子轨迹的短轴和长轴之比成比例。在Keulegan-Carpenter数的适中值下,具有较大比例和循环的局部二维涡旋以不对称的布置从圆柱体上掉落。相应的翼展方向模式表示该脱落沿圆柱体跨度的相位变化。这些弯曲的S模式涉及横流速度和沿流涡旋的模式的大规模变形,其波长范围小于或等于Lambda / D小于或等于110的波长,与单个浓度之间的间距相反。涡度,从1.5D到4D。显着地,可以实现单向U模式,由此沿圆柱体的整个范围保持局部二维涡旋脱落的相位。同时获得瞬时力和涡度模式的圆柱体上的横向力和轴向力所引起的力矩签名。由于横向力而引起的力矩的严重调制与正弦S模式和单向U模式的基本形式之间的自发转换有关。然而,由于轴向力的作用,力矩签名的整体形式通常不受模式之间自发转变的影响,但其峰值的失真是明显的。 [参考:31]

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