Numerical Analysis of Stem Wave Control Effect of a Curved Slit Caisson Breakwater

Y. Cho
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引用次数: 1

Abstract

Curved slit caisson has been the preferred structural type of breakwater in South Korea, and effective control of stem waves is a crucial design factor significantly affecting the performance of a curved slit caisson breakwater. Most of the past studies on stem waves heavily relied on wave drivers like the cubic Schrödinger Eq. due to the intrinsic difficulties in analyzing stem waves. However, considering the perturbation method evoked in the derivation of cubic Schrödinger Eq., the wave driver mentioned above could give erroneous results in the rough sea due to the higher-order waves that appeared in the wave field by resonance wave-wave interaction. In this rationale, in this study, the numerical simulation was implemented to verify the stem wave control effect of curved slit caisson using the ihFoam, toolbox having its roots on OpenFoam. It was shown that curved slit caisson breakwater effectively alleviates the scope and height of stem waves.
弯缝沉箱防波堤杆波控制效果的数值分析
弯缝沉箱一直是韩国防波堤的首选结构形式,而有效控制杆波是影响弯缝沉箱防波堤性能的关键设计因素。由于分析干波本身的困难,以往对干波的研究大多依赖于三次Schrödinger方程等波驱动因子。然而,考虑到三次Schrödinger Eq.推导中引起的摄动方法,由于共振波波相互作用在波场中出现了高阶波,上述波浪驱动器在波涛汹涌的海面上可能会给出错误的结果。在此基础上,本研究采用基于OpenFoam的ihFoam工具箱,对弯缝沉箱的杆波控制效果进行了数值模拟验证。结果表明,弯缝式沉箱防波堤能有效地缓解杆波的范围和高度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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