首页> 外文期刊>Coastal engineering >An experimental and numerical study of floating breakwaters
【24h】

An experimental and numerical study of floating breakwaters

机译:浮动防波堤的实验和数值研究

获取原文
获取原文并翻译 | 示例
       

摘要

Breakwaters are used to provide sheltered areas for loading and unloading of ships, and coastal protection. Often the breakwaters are bottom mounted such as rubble mound breakwaters. However, there can be several advantages to use a Floating Breakwater (FB). Therefore, the objective of this paper is to study the effect of two different damping mechanisms of a floating breakwater. Three basic cross-sections of FBs were tested and analysed in 2D; a regular pontoon (RG), a regular pontoon with wing plates attached (WP), and a regular pontoon with wing plates and porous media attached to the sides (WP P100). The damping of the FB motions was due to wave radiation and viscous damping. The viscous damping originated mainly from vortex generation around the edges of the structure and due to energy loss inside the porous material attached to the vertical sides of the floating breakwater. Attaching wing plates to the floating breakwater significantly reduced the motion, which was also anticipated. When the porous sides were attached the motion of the FB increased compared to the (WP) crosssection, but the wave transmission was reduced. The possibility for incorporating the effect of the damping in the radiation/diffraction code WAMIT was assessed. The study showed that the cross section with wing plates reduced the motions of the breakwater to the largest extend, while the cross section with wing plates and porous media attached to the sides reduced the reflection and transmission most effectively.
机译:防波堤用于为船舶装卸和海岸保护提供避风港。通常,防波堤是在底部安装的,例如瓦砾防波堤。但是,使用浮动防波堤(FB)可能有几个优点。因此,本文的目的是研究浮动防波堤的两种不同阻尼机制的影响。在二维中测试和分析了FB的三个基本横截面;常规浮桥(RG),带有翼板的常规浮桥(WP)和带有翼板和侧面多孔介质的常规浮桥(WP P100)。 FB运动的阻尼是由于波辐射和粘性阻尼引起的。粘性阻尼主要来自结构边缘周围的涡流产生,以及归因于附着在浮动防波堤垂直侧的多孔材料内部的能量损失。将翼板连接到浮动防波堤上可以大大减少运动,这也是可以预料的。当连接多孔侧时,与(WP)横截面相比,FB的运动增加,但波的透射率降低。评估了将阻尼效应纳入辐射/衍射代码WAMIT的可能性。研究表明,带翼板的横截面将防波堤的运动减至最大程度,而带翼板和多孔介质附在侧面的横截面最有效地减少了反射和透射。

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