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表面波作用下淹没式悬浮隧道动力响应及系泊力的数值研究

Numerical investigation of dynamic responses and mooring forces of submerged floating tunnel driven by surface waves.

作者信息

Chen Xuebin, Chen Zhiwu, Cai Shuqun, Xu Wei, Zhuo Xianrong, Lv Jiangen, Zhao Jiajian

机构信息

College of Urban and Rural Construction, Zhongkai University of Agriculture and Engineering, Guangzhou, 510225, China.

State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China.

出版信息

Sci Rep. 2020 Nov 2;10(1):18836. doi: 10.1038/s41598-020-75907-8.

Abstract

Based on Navier-Stokes equations, a numerical model for studying the dynamic responses and mooring forces of the moored Submerged Floating Tunnel (SFT) driven by surface waves is presented in this paper. The mechanics models of the vertically and inclinedly moored floating body under wave forces are built, and the overset meshing method is employed to dynamically configure the computational meshes. Two laboratory experiments are used for validating the numerical model in terms of motion responses and mooring forces of the SFT, indicating the proposed model is capable of accurately simulating the instantaneous position of the body under the wave action. This hydrodynamic model is then utilized to simulate the wave-structure interaction of the prototype SFT designed for Qiongzhou Strait located between Mainland China and Hainan Island. The effects of the fundamental structure parameter, or the inclined mooring angle (IMA), on the dynamic responses of SFT are analyzed. The numerical experiments not only shed light on the mooring forces, as well as pitch, sway and heave responses of the SFT with various values of IMA, but also provide guidance for the choice of IMA in engineering design. The range of IMA is separated into five zones, and Zone 2 is regarded as the best choice for the design of IMA for both motion displacements and mooring forces are relatively small in this zone. Zone 3 is considered to be the worst choice as not only are motion responses of SFT severe in this zone, but also the mooring chains are at the risk of going slack under severe wave conditions.

摘要

基于纳维-斯托克斯方程,本文提出了一种用于研究表面波作用下系泊式水下悬浮隧道(SFT)动力响应和系泊力的数值模型。建立了波浪作用下垂直系泊和倾斜系泊浮体的力学模型,并采用重叠网格法动态配置计算网格。通过两个实验室实验对SFT的运动响应和系泊力方面的数值模型进行了验证,表明所提出的模型能够准确模拟波浪作用下物体的瞬时位置。然后利用该水动力模型模拟了为中国大陆与海南岛之间的琼州海峡设计的原型SFT的波-结构相互作用。分析了基本结构参数即倾斜系泊角(IMA)对SFT动力响应的影响。数值实验不仅揭示了不同IMA值下SFT的系泊力以及俯仰、横荡和垂荡响应,还为工程设计中IMA的选择提供了指导。IMA的范围分为五个区域,区域2被认为是IMA设计的最佳选择,因为该区域的运动位移和系泊力相对较小。区域3被认为是最差的选择,因为该区域不仅SFT的运动响应剧烈,而且在恶劣波浪条件下系泊链有松弛的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d390/7608679/8d201ae6fab3/41598_2020_75907_Fig1_HTML.jpg

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