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Obtaining Reflection Coefficients from a Single Point Velocity Measurement

机译:从单点速度测量获得反射系数

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The quantification of the reflection of water waves is of paramount importance in coastal and marine engineering. Reflected waves are produced as a result of an incident wave meeting a reflective boundary e.g., in a wave basin. While reflection can be seen as an undesirable disturbance, for example in experimental tests performed in confined tanks, it can also have a useful purpose such as being directed towards wave energy converters (WECs). Whether useful or not, reflection needs to be accurately quantified. For cases effected by directional spreading such as WECs, the wave height of a reflected wave will be spatially variable. The majority of quantification methods are based on frequency domain analysis of surface elevation data at more than one discrete location over approximately one wavelength. Thus, a method which requires a single point measurement is desirable. This paper presents a novel method derived from Linear Wave theory to quantify reflection coefficients using orbital velocity measurements at one discrete location. An additional advantage of this method is it only requires data over a single wave cycle and thus will be particularly suitable for numerical simulations. In the present form the method is only applicable to monochromatic waves. The theoretical background of the method is explained in detail. An application is demonstrated through a comparison to reflections quantified using surface elevation measurements in Computational Fluid Dynamics (CFD) numerical simulations. It is found that the results of the new proposed method compare to surface elevation methods within the levels of experimental accuracy.
机译:在沿海和海洋工程中,水波反射的量化至关重要。入射波在例如波盆中遇到反射边界的结果是产生反射波。尽管反射可以看作是不希望有的干扰,例如在密闭储罐中进行的实验测试中,但反射也可以有一个有用的目的,例如指向波能转换器(WEC)。不管有用与否,都需要准确地量化反射。对于诸如WEC之类的受方向扩散影响的情况,反射波的波高将在空间上变化。大多数量化方法是基于对大约一个波长上多个离散位置处的表面高程数据进行频域分析。因此,需要一种需要单点测量的方法。本文提出了一种从线性波理论派生的新颖方法,该方法使用一个离散位置的轨道速度测量来量化反射系数。该方法的另一个优点是,它仅需要单个波周期内的数据,因此特别适合于数值模拟。在当前形式中,该方法仅适用于单色波。详细介绍了该方法的理论背景。通过与使用计算流体力学(CFD)数值模拟中的表面高程测量量化的反射进行比较,演示了一种应用。发现新提出的方法的结果在实验精度水平上与表面高程方法相比较。

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