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Bragg Reflection In A Fully Nonlinear Numerical Wave Tank Based On Boundary Integral Equation Method

机译:基于边界积分方程法的全非线性数值波箱的布拉格反射

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We investigated the phenomenon of Bragg reflection of submerged structures in a 2D fully nonlinear numerical wave tank (NWT) based on the boundary integral equation method (BIEM). This model was validated by comparing not only the free surface elevations with that of the analytic solution of Stokes' second-order wave theory, but also the reflection coefficients of submerged bars with that from other sources. The results of the present model show that the free surface nonlinear effect on the reflection coefficient of the primary resonance reduces significantly for all of the submerged bars considered. Finally, a case study is presented to demonstrate the reflecting capacity and overall performance of various submerged bars. Results indicate that sinusoidal bar has the maximum reflection capacity at the primary resonance, but the trapezoidal submerged bar is suggested as the better option for the practical convenience of coastal underwater construction.
机译:基于边界积分方程法(BIEM),我们研究了二维全非线性数值波箱(NWT)中水下结构的布拉格反射现象。该模型不仅通过比较自由表面高程与斯托克斯二阶波动理论的解析解的有效性,而且还通过将浸没钢筋的反射系数与其他来源的反射系数进行了比较。本模型的结果表明,对于所考虑的所有浸入式钢筋,自由表面非线性效应对一次共振的反射系数的影响均显着降低。最后,通过案例研究证明了各种浸没钢筋的反射能力和整体性能。结果表明,正弦波条在一次共振时具有最大的反射能力,但梯形浸没条条被认为是更好的选择,以方便沿海水下施工。

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