哈尔滨工程大学学报(英文版)2024,Vol.23Issue(1) :101-112.DOI:10.1007/s11804-024-00392-8

Artificial Boundary Condition Processing Technique for Phased-Resolved Wave Surface Reconstruction

Xiaolei Liu Hongli Yin Boyu Han Xuewen Ma Yunchi Zhang
哈尔滨工程大学学报(英文版)2024,Vol.23Issue(1) :101-112.DOI:10.1007/s11804-024-00392-8

Artificial Boundary Condition Processing Technique for Phased-Resolved Wave Surface Reconstruction

Xiaolei Liu 1Hongli Yin 2Boyu Han 2Xuewen Ma 3Yunchi Zhang2
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作者信息

  • 1. College of Economics and Management,Harbin Engineering University,Harbin 150000,China
  • 2. College of Shipbuilding Engineering,Harbin Engineering University,Harbin 150000,China
  • 3. College of Shipbuilding Engineering,Harbin Engineering University,Harbin 150000,China;Qingdao Innovation and Development Center of Harbin Engineering University,Qingdao 266000,China
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Abstract

At present,the measurement of the near wave field of ships mostly relies on shipborne radar.The commonly used shipborne radar is incoherent and cannot obtain information on wave surface velocity.Therefore,the mathematical model of wave reconstruction is remarkably complex.As a new type of radar,coherent radar can obtain the radial velocity of the wave surface.Most wave surface reconstruction methods that use wave velocity are currently based on velocity potential.The difficulty of these methods lies in determining the initial value of the velocity integral.This paper proposes a wave surface reconstruction method based on an artificial boundary matrix.Numerical simulation data of regular and short-crest waves are used to verify the accuracy of this method.Simultaneously,the reconstruction stability under different wave velocity measurement errors is analyzed.The calculation results show that the proposed method can effectively realize the reconstruction of wave field.

Key words

Coherent radar/Wave velocity field/Artificial boundary matrix/Wave surface reconstruction/Calculation stability

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基金项目

National Natural Science Foundation of China(51809066)

出版年

2024
哈尔滨工程大学学报(英文版)
哈尔滨工程大学

哈尔滨工程大学学报(英文版)

CSTPCD
影响因子:0.381
ISSN:1671-9433
参考文献量12
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