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基于波长调制器的海上结构物散射特性操控(英文)

Manipulating Scattering Performance of Offshore Structures in Water Waves Using a Wavelength Modulator

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【作者】 张志刚; 厉运周; 何广华; 栾政晓; 赵强; 张继明; 王军成;

【Author】 Zhigang Zhang;Yunzhou Li;Guanghua He;Zhengxiao Luan;Qiang Zhao;Jiming Zhang;Juncheng Wang;School of Mechanical Engineering, Shandong University;Key Laboratory of High Efficiency and Clean Mechanical Manufacture at Shandong University, Ministry of Education;Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences);State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology;School of Ocean Engineering, Harbin Institute of Technology;

【通讯作者】 张志刚;

【机构】 School of Mechanical Engineering, Shandong University; Key Laboratory of High Efficiency and Clean Mechanical Manufacture at Shandong University, Ministry of Education; Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences); State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology; School of Ocean Engineering, Harbin Institute of Technology;

【摘要】 Through active manipulation of wavelengths, a structure exposed to a water-wave field can achieve a target hydrodynamic performance. Based on the form invariance of the governing equation for shallow water waves, wavelength modulators have been proposed using the space transformation method, which enables wavelength manipulation by distributing an anisotropic medium that incorporates water depth and gravitational acceleration within the modulation space. First, annular wavelength modulators were designed using the space transformation method to reduce or amplify the wavelength of shallow water waves. The control method of wavelength scaling ratios was investigated. In addition to plane waves, the wavelength modulator was applied to manipulate the wavelength of cylindrical waves. Furthermore, the interactions between a vertical cylinder and modulated water waves were studied. Results indicate that the wavelength can be arbitrarily reduced or amplified by adjusting the dimensional parameters of the modulator. Additionally, the modulator is effective for plane waves and cylindrical waves. This wavelength modulator can enable the structure to achieve the desired scattering characteristics at the target wavelength.

【Abstract】 Through active manipulation of wavelengths, a structure exposed to a water-wave field can achieve a target hydrodynamic performance. Based on the form invariance of the governing equation for shallow water waves, wavelength modulators have been proposed using the space transformation method, which enables wavelength manipulation by distributing an anisotropic medium that incorporates water depth and gravitational acceleration within the modulation space. First, annular wavelength modulators were designed using the space transformation method to reduce or amplify the wavelength of shallow water waves. The control method of wavelength scaling ratios was investigated. In addition to plane waves, the wavelength modulator was applied to manipulate the wavelength of cylindrical waves. Furthermore, the interactions between a vertical cylinder and modulated water waves were studied. Results indicate that the wavelength can be arbitrarily reduced or amplified by adjusting the dimensional parameters of the modulator. Additionally, the modulator is effective for plane waves and cylindrical waves. This wavelength modulator can enable the structure to achieve the desired scattering characteristics at the target wavelength.

【基金】 supported by National Key R&D Program of China (2022YFC3104200);the China Postdoctoral Science Foundation (2023M742157);the Shandong Province Taishan Scholars Project (tsqn201909172);the Shandong Provincial Natural Science Foundation (ZR2023QA097);the Open Research Fund Program of State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology (LP2309);the Innovation Project of Qingdao Post-Doctoral (QDBSH20230202121)
  • 【文献出处】 Journal of Marine Science and Application ,哈尔滨工程大学学报(英文版) , 编辑部邮箱 ,2025年06期
  • 【分类号】P75
  • 【下载频次】2
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