个人信息Personal Information
教授
博士生导师
硕士生导师
主要任职:大连理工大学白俄罗斯国立大学联合学院院长、直属党支部书记
其他任职:辽宁省极地海洋专业技术创新中心主任
性别:男
出生日期:1972-12-30
毕业院校:大连理工大学
学位:博士
所在单位:力学与航空航天学院
学科:计算力学. 固体力学. 工程力学. 船舶与海洋结构物设计制造. 岩土与环境力学
办公地点:大连理工大学主校区海宇楼(1号实验楼)607室
联系方式:0411-84708683
电子邮箱:jisy@dlut.edu.cn
Meshless generalized finite difference method for water wave interactions with multiple-bottom-seated-cylinder-array structures
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论文类型:期刊论文
发表时间:2020-01-01
发表刊物:OCEAN ENGINEERING
收录刊物:EI、SCIE
卷号:195
ISSN号:0029-8018
关键字:Generalized finite difference method; Absorbing boundary conditions; Perfectly matched layer; Near trapped mode; Water wave-structure interaction
摘要:This paper presents the meshless generalized finite difference method (GFDM) in conjunction with the truncated treatments of infinite domain for simulating water wave interactions with multiple-bottom-seated-cylinder-array structures. In the proposed scheme, the truncated treatments are introduced to deal with the infinite domain. Based on the moving least squares theory and second-order Taylor series expansion, the GFDM approximation formulation is constructed for water wave-structure interactions. It introduces the stencil selection algorithms to choose the stencil support of a certain node from the whole discretization nodes. In comparison with traditional finite difference methods, the proposed GFDM is free of mesh and available for irregular discretization nodes. Numerical investigations are presented to demonstrate the effectiveness of the proposed GFDM with two truncated treatments, absorbing boundary conditions (ABC) and perfectly matched layer (PML), for simulating water wave interactions with single- and four-cylinder-array structures. Then it successfully revisits the near trapped mode phenomenon of specific four-cylinder-array structures and the peak normalized horizontal forces around the cylinders with specific incident water wave. Finally numerical demonstration shows that the structures with porous outer wall can eliminate the near trapped mode phenomenon and reduce the peak normalized horizontal force of multiple-cylinder-array structures.