首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >WAVE FLUME TESTS TO CHECK A SEMI-ANALYTICAL METHOD FOR CALCULATING SOLITARY WAVE LOADS ON HORIZONTAL CYLINDERS
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WAVE FLUME TESTS TO CHECK A SEMI-ANALYTICAL METHOD FOR CALCULATING SOLITARY WAVE LOADS ON HORIZONTAL CYLINDERS

机译:波浪烟气测试以检验半解析法计算水平圆柱体上的孤波载荷

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In this work, the solitary wave loads on a submerged horizontal circular cylinder are studied by comparing new analytical results with ad-hoc experimental data. The proposed analytical solution has been recently proposed by Gurnari and Filianoti (2017) and represents an extension of the formulation developed by Filianoti and Piscopo (2008) to assess the solitary wave loads acting on a submerged breakwater and tested in a wave flume on a small-scale model (Filianoti and Di Risio, 2012). Here we deal with a submerged horizontal cylinder following the concept that a solitary wave is subjected to a slowdown passing over a submerged cylinder. A laboratory investigation was addressed to calibrate the adopted semi-analytical method. The speed of the solitary wave celerity crossing the solid submerged cylinder was measured for several wave amplitudes. In the adopted wave flume at the University of Calabria equipped by a piston-type wavemaker, an horizontal cylinder with diameter D= 0.127 m was posed with its center at a depth of 0.2 m. Twelve transducers measured the instantaneous pressures along the external contour of the body. A battery of wave gauges measured the free surface elevation to evaluate the celerity crossing the equivalent water cylinder. Tests confirmed the existence of the slowing down of the celerity of the wave pressure. In other words, we found that the pressure wave is nearly double the time necessary to cross the cylinder with respect to the time necessary to cover the same distance in the undisturbed field, for solitary waves amplitudes ranging from about 0.08 and 0.19 times the water depth. The slowing down increases the horizontal wave force on the solid body with respect to the Froude-Krylov one. Moreover, it appears that in the adopted experimental range the wave force is essentially inertial if compared to the drag one, enabling us to rely upon a simplified analytical model to obtain an effective estimate of the horizontal force produced by a solitary wave on a cylinder.
机译:在这项工作中,通过将新的分析结果与临时实验数据进行比较,研究了浸入式水平圆柱体上的孤立波载荷。拟议的分析解决方案最近由Gurnari和Filianoti(2017)提出,代表了Filianoti和Piscopo(2008)开发的公式的扩展,用于评估作用于淹没防波堤上的孤波载荷,并在小型水槽中进行了测试。规模模型(Filianoti和Di Risio,2012年)。在此,我们根据一个概念,即一个孤波受到减速作用而经过一个浸入式圆柱体,从而处理了一个浸入式卧式圆柱体。进行了实验室调查,以校准所采用的半分析方法。对于几个波幅,测量了穿过固体浸没圆柱的孤波速度的速度。在卡拉布里亚大学采用的配备有活塞式造波器的波浪形水槽中,放置一个直径D = 0.127 m的水平圆柱体,其中心深度为0.2 m。十二个换能器测量沿人体外部轮廓的瞬时压力。一组波形仪测量了自由表面的高度,以评估穿过等效水缸的速度。测试证实了波浪压力的速度变慢的存在。换句话说,对于孤立波振幅大约为水深0.08到0.19倍的波,我们发现压力波几乎是穿越圆柱体所需时间的两倍,相对于在不受干扰的场中覆盖相同距离的时间而言,它是两倍。 。相对于Froude-Krylov而言,减速增加了固体上的水平波力。此外,似乎在所采用的实验范围内,与阻力相比,波浪力基本上是惯性的,这使我们能够依靠简化的分析模型来获得对孤立波在圆柱体上产生的水平力的有效估计。

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