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[1]J. Gao, Y. Wu, Z. Song, M. He, 2026. Influences of low velocity uniform current on characteristics of gap resonance occurring between two adjacent fixed bodies. Mar. Struct. 106, 103961
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[2]M. He, Y. Wang, J. Ma, J. Gao, C. Yang, D. Liang, 2025. Design of submerged floating tunnel subjected to solitary wave impact using SPH method. Marit. Eng. 178(4), 143-156
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[3]Z. Sun, Y. Song, R. Jin, M. He, X. Li, 2025. Experimental study of blockage effect on the dynamic behaviors of a tapered net system under wave-current actions. Ocean Eng. 341, 122486
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[4]张旭峰, 李雪艳, 隋钰程, 曲恒良, 贺铭, 2025. 圆柱形冲箱的线性波生成理论. 海洋工程 43(6), 154-164
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[5]R. Jin, B. Liu, X. Gu, M. He, 2025. Hydrodynamic numerical study of regular wave and mooring hinged multi-module offshore floating photovoltaic platforms. Sustainability 17(18), 8501
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[6]隋钰程, 贺铭, 李雪艳, 孟钰婕, 张旭峰, 2025. 楔形冲箱的椭圆余弦波制造理论及其SPH检验. 哈尔滨工程大学学报 46(7), 1296-1303
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[7]R. Jin, B. Geng, X. Zhao, M. He, 2025. An overview for offshore floating photovoltaic structures and their fluid dynamic issues. Phys. Fluid. 37, 61301
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[8]C. Wan, C. Yang, M. He, T. E. Baldock, P. Nielsen, L. Johanning, 2025. Hydrodynamic and power conversion performance of a hybrid raft-type WEC and breakwater system using SPH method. Renew. Energ. 245, 122753
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[9]孟钰婕, 李雪艳, 贺铭, 隋钰程, 张旭峰, 2025. 淹没水平板-海草床生态型防波堤消浪性能研究. 海洋工程 43(1), 189-199
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[10]H.-F. Mao, Y.-T. Yang, J.-B. Lin, Z.-B. Zhou, M. He, 2024. Numerical examination of wave forces on partially submerged horizontal circular cylinders near free surface. Ocean Eng. 313, 119497
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[11]X. Li, Y. Sui, Y. Meng, X. Zhang, A. Khayyer, M. He, D. Liang, 2024. Theory for plunger-type wavemakers to generate second-order Stokes waves and Smoothed Particle Hydrodynamics verification. Appl. Ocean Res. 153, 104244
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[12]M. He, Y. Wang, J. Ma, C. Yang, D. Liang, 2024. SPH study of hydrodynamic responses of submerged floating tunnels to solitary wave impact. 2024 SPHERIC Zhuhai International Workshop. Oct. 17-20, Zhuhai, China
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[13]R. Jin, M. He, B. Geng, H. Zhang, D. Liang, 2024. SPH study of scale effects of perforated caissons. Ocean Eng. 310, 118665
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[14]Y.-C. Sui, Y.-J. Meng, X.-F. Zhang, H.-L. Qu, X.-Y. Li, M. He, 2024. SPH simulation of cnoidal wave generation by cylinder-shaped plunger. Int. J. Ocean Coast. Eng. 6(1-4), 2440001
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[15]R. Jin, Y. Zhang, Z. Zhou, M. He, 2024. Numerical analysis of hydrodynamic characteristics of two-dimensional submerged structure in irregular waves. Water 16(12), 1693
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[16]M.-M. Liu, C.-W. Yu, Q.-H. Meng, X.-F. Hao, Z.-L. Chen, M. He, 2024. Analysis of fluid force and flow fields during gliding in swimming using smoothed particle hydrodynamics method. Front. Bioeng. Biotech. 12, 1355617
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[17]M. He, M. Pang, N.-Z. Chen, 2023. Engineering critical assessment (ECA) for monopile foundation of an offshore wind turbine subjected to pitting. Ocean Eng. 285, 115400
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[18]Y. Zheng, Y. Zhou, R. Jin, Y. Mu, M. He, L. Zhao, 2023. Experimental study on submerged horizontal perforated plates under irregular wave conditions. Water 15(16), 3015
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[19]M. He, D. Liang, B. Ren, J. Li, S. Shao, 2023. Wave interactions with multi-float structures: SPH model, experimental validation, and parametric study. Coast. Eng. 184, 104333
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[20]隋钰程, 贺铭, 李雪艳, 孟钰婕, 2023. 楔形冲箱的二阶斯托克斯波制造理论及其SPH检验. 中国造船 64(3), 133-143
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[21]C. Yang, Z. Hao, M. He, H. Chen, L. Johanning, 2023. Hydrodynamic investigation on the submerged tunnel suspended from a fixed platform using SPH method. Ocean Eng. 277, 114357
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[22]Y.-c. Sui, M. He, X.-y. Li, Y.-j. Meng, 2023. Generating second-order Stokes waves using a cylinder-shaped plunger - Theoretical derivations and SPH simulations. The 29th International Conference on Computational and Experimental Engineering and Sciences. May 26-29, Shenzhen, China
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[23]成小飞, 宗钟凌, 贺铭, 杨君, 刘畅, 秦翔宇, 2022. 方箱-浮囊组合式浮动消波防浪装备水动力特性数值研究. 第二十届中国海洋(岸)工程学术讨论会. 12月15-17日. 中国湛江
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[24]M. He, M. Pang, N.Z. Chen, 2022. Residual ultimate strength prediction of monopile foundation of offshore wind turbine subjected to pitting. 19th International Congress of the International Maritime Association of the Mediterranean. Sep. 26-29, Istanbul, Turkey
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[25]W. Guo, J. Zou, M. He, H. Mao, Y. Liu, 2022. Comparison of hydrodynamic performance of floating breakwater with taut, slack, and hybrid mooring systems: An SPH-based preliminary investigation. Ocean Eng. 258, 111818
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[26]金瑞佳, 韩丽影, 贺铭, 耿宝磊, 张华庆, 2022. 基于SPH方法的开孔沉箱比尺效应研究. 海洋工程 40(3), 61-68
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[27]M. He., X. Gao, A. Khayyer, 2022. Generating precise solitary waves using arbitrary shaped plunger-type wavemakers - Theoretical derivations and SPH simulations. 2022 SPHERIC Xi'an International Workshop. Mar. 28-Apr. 2, Xi'an, China
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[28]X. Cheng, C. Liu, Q. Zhang, M. He, X. Gao, 2021. Numerical study on the hydrodynamic characteristics of a double row floating breakwater composed of a pontoon and an airbag. J. Mar. Sci. Eng. 9(9), 983
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[29]M. He, A. Khayyer, X. Gao, W. Xu, B. Liu, 2021. Theoretical method for generating solitary waves using plunger-type wavemakers and its Smoothed Particle Hydrodynamics validation. Appl. Ocean Res. 106, 102414
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[30]W.-h. Xu, M. Yang, H.-n. Ai, M. He, M.-h. Li, 2020. Application of helical strakes for suppressing the flow-induced vibration of two side-by-side long flexible cylinders. China Ocean Eng. 34(2), 172-184
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[31]M. He, W. Xu., Xi. Gao, B. Ren, 2017. Application of a coupled SPH-FEM model to the wave-submerged horizontal plate interaction. 2020 SPHERIC Harbin International Workshop. Jan. 13-16, Harbin, China
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[32]贺铭, 徐万海, 高喜峰, 任冰, 2019. 基于楔体入水的孤立波制造理论及其SPH验证. 第十九届中国海洋(岸)工程学术讨论会. 10月11-13日, 中国重庆
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[33]贺铭, 高喜峰, 徐万海, 任冰, 2019. 基于圆柱入水的孤立波生成新方法及其数值模拟检验. 第三十届全国水动力学研讨会暨第十五届全国水动力学学术会议. 8月16-19日, 中国合肥
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[34]M. He, X. Gao, W. Xu, B. Ren, H. Wang, 2019. Potential application of submerged horizontal plate as a wave energy breakwater: A 2D study using the WCSPH method. Ocean Eng. 185, 27-46
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[35]X. Gao, Z. Xu, W. Xu, M. He, 2019. Cross-flow Vortex-Induced Vibration (VIV) responses and hydrodynamic forces of a long flexible and low mass ratio pipe. J. Mar. Sci. Eng. 7(6), 179
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[36]高喜峰, 王洪树, 贺铭, 徐万海, 2019. 考虑潮位变动的淹没水平板防波堤设置方案. 天津大学学报(自然科学与工程技术版) 52(5), 529-538
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[37]M. He, W. Xu, X. Gao, B. Ren, 2018. SPH simulation of wave scattering by a heaving submerged horizontal plate. Int. J. Ocean Coast. Eng. 1(2), 1840004
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[38]M. He, W. Xu, X. Gao, B. Ren, 2018. The layout of submerged horizontal plate breakwater (SHPB) with respect to the tidal-level variation. Coast. Eng. J. 60(3), 280-298
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[39]W.-h. Xu, W.-q. Qin, M. He, X.-f. Gao, 2018. Passive VIV reduction of an inclined flexible cylinder by means of helical strakes with round-section. China Ocean Eng. 32(4), 413-421
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[40]Y. Shi, S. Li, S. Peng, H. Chen, M. He, 2018. Numerical modeling of flexible floating boom using a coupled SPH-FEM model. Coast. Eng. J. 60(2), 140-158
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[41]X. Gao, M. He, W. Xu, H. Wang, 2018. Hydroelastic analysis of a submerged horizontal plate using a coupled SPH-FEM model. The 37th International Conference on Ocean, Offshore and Arctic Engineering. Jun. 17-22, Madrid, Spain
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[42]M. He, X.-f. Gao, W.-h. Xu, 2018. Numerical simulation of wave-current interaction using the SPH method. J. Hydrodyn. 30(3), 535-538
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[43]Y. Shi, S. Li, H. Chen, M. He, S. Shao, 2018. Improved SPH simulation of spilled oil contained by flexible floating boom under wave-current coupling condition. J. Fluids Struct. 76, 272-300
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[44]贺铭, 王洪树, 高喜峰, 徐万海, 2017. 海洋波流环境的拉格朗日数值模拟. 中国造船 58(A1), 19-27
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[45]B. Ren, M. He, Y. Li, P, Dong, 2017. Application of smoothed particle hydrodynamics for modeling the wave-moored floating breakwater interaction. Appl. Ocean Res. 67, 277-290
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[46]Y. Li, M. He, B. Ren, G. Wang, 2017. Numerical simulation of wave interaction with a hinged multi-module floating structure. The 36th International Conference on Ocean, Offshore and Arctic Engineering. Jun. 25-30, Trondheim, Norway
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[47]M. He, B. Ren, D. Qiu, 2016. Experimental study of nonlinear behaviors of a free-floating body in waves. China Ocean Eng. 30(3), 421-430
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[48]王烨, 王永学, 贺铭, 任冰, 2016. 不同锚固方式双方箱浮防波堤水动力特性的SPH模拟. 港工技术 53(1), 7-15
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[49]B. Ren, M. He, P. Dong, H. Wen, 2015. Nonlinear simulations of wave-induced motions of a freely floating body using WCSPH method. Appl. Ocean Res. 50, 1-12
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[50]贺铭, 邱大洪, 2015. 椭圆余弦波浅水变形实用计算法(II)——对《海港水文规范》的一个补充. 水运工程 (502), 13-18
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[51]贺铭, 邱大洪, 2015. 椭圆余弦波浅水变形实用计算法(I)——对《海港水文规范》的一个补充. 水运工程 (499), 1-7
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[52]M. He, B. Ren, F. Jiang, C. Ma, 2013. Simulation of dynamic coupling between waves and a free-floating rectangular box by smoothed particle hydrodynamics. The 32nd International Conference on Ocean, Offshore and Arctic Engineering. Jun. 9-14, Nantes, France
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[53]任冰, 金钊, 高睿, 贺铭, 王永学, 2013. 波浪与斜坡堤护面块体相互作用的SPH-DEM数值模拟. 大连理工大学学报 53(2), 241-248