首页> 外文期刊>Pure and Applied Geophysics >Tsunami Excitation by Submarine Slides in Shallow-water Approximation
【24h】

Tsunami Excitation by Submarine Slides in Shallow-water Approximation

机译:潜水艇在浅水近似中的海啸激励

获取原文
获取原文并翻译 | 示例
           

摘要

— Landslide-induced tsunamis are receiving increased attention since there is evidence that recent large devastating events have been caused by underwater mass failures. Normally, numerical models are used to simulate tsunami excitation, most of which are based on shallow water, known also as long wave, approximation to the full equations of hydrodynamics. Analytical studies may handle only simplified problems, but help understand the basic features of physical processes. This paper is an analytical investigation of long-water waves excited by rigid bodies sliding on the sea bottom, based on the shallow-water approximation, which is here derived by properly scaling Euler equations for an inviscid, incompressible and irrotational ocean. In one-dimensional (1-D) cases (where motion depends only on one horizontal coordinate), under the further assumptions of small-height slide, which permits the recourse to linear theory, and of flat ocean floor, a solution for arbitrary body shape and velocity is deduced by applying the Duhamel theorem. It is also shown that this theorem can be advantageously used to obtain a general solution in case of a non-flat ocean floor, when the sea bottom follows a special power law, that can be adapted to study reasonable bottom profiles. The characteristics of the excited tsunamis are then evaluated by computing solutions in numerous examples, with special focus on wave pattern and wave evolution. The energy of the wave system is shown to depend on time: it grows expectedly in the initial phase of tsunami generation, when the moving body transfers energy to the water, but it may also diminish later, implying that a certain amount of energy may pass back from water waves to the slide.
机译:-滑坡引起的海啸受到越来越多的关注,因为有证据表明,最近的大规模破坏性事件是由水下大规模破坏引起的。通常,使用数值模型来模拟海啸激发,其中大多数是基于浅水(也称为长波),近似于流体力学的完整方程。分析研究可能只处理简化的问题,但有助于理解物理过程的基本特征。本文是根据浅水近似值对由在海底滑动的刚体激发的长水波进行的分析研究,该浅水近似值是通过对无粘性,不可压缩且不可旋转的海洋正确缩放欧拉方程而得出的。在一维(1-D)情况下(运动仅取决于一个水平坐标),在进一步假设小高度滑动的情况下,它可以求助于线性理论,而在平坦海底的情况下,则可以解决任意物体的问题形状和速度是通过应用Duhamel定理推导出来的。还表明,当海底遵循特殊的幂定律时,该定理可以有利地用于获得非平坦海床的一般解,该定律可以用于研究合理的海底剖面。然后,在众多示例中,通过计算解决方案来评估受激海啸的特征,其中特别关注波型和波演化。波浪系统的能量显示为取决于时间的:它在海啸发生的初始阶段预期会增长,这是在移动体将能量转移到水中时,但随后也可能减少,这意味着一定量的能量可能会通过从水浪回到滑梯。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号