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[1]Xue Hongxiang. The three-dimensional green-water event study on a fixed simplified wall-sided ship under freak waves OCEAN ENGINEERING, 2022,
[2] Numerical investigation of Vortex-Induced Vibration response for a full-scale riser with staggered buoyancy modules OCEAN ENGINEERING, 2022,
[3]Xue Hongxiang. Vortex-induced vibration response characteristics of catenary riser conveying two-phase internal flow OCEAN ENGINEERING, 2022,
[4] Blast wave propagation characteristics in FPSO: Effect of cubical obstacles OCEAN ENGINEERING, 2022,
[5] Numerical investigation of Vortex-Induced Vibration response for a full-scale riser with staggered buoyancy modules OCEAN ENGINEERING, 2022,
[6]Xue Hongxiang. Vortex-induced vibration response characteristics of catenary riser conveying two-phase internal flow OCEAN ENGINEERING, 2022,
[7]Xue Hongxiang. Quantitative analysis of hydrocarbon leaks in offshore installations Proceedings of the International Offshore and Polar Engineering Conference, 2017,
[8] Failure characteristic analysis of tensile armour layer of unbonded flexible riser under axial compression SHIPS AND OFFSHORE STRUCTURES, 2019,
[9] Fatigue Analysis of Vortex-Induced Vibration for Marine Risers with Top-End Platform Motion Excitations Lecture Notes in Civil Engineering,Practical Design of Ships and Other Floating Structures - Proceedings of the 14th International Symposium, 2019,
[10] 火灾升温条件下船体加筋板极限承载能力分析 上海交通大学学报, 2019,
[11]Xue Hongxiang. A numerical investigation on quasi-static configuration and nonlinear dynamic response characteristics of marine towing cable Ocean Engineering, 2021,
[12]Xue Hongxiang. 一种基于分子动力学的网格划分方法 舰船科学技术, 2021,
[13]Xue Hongxiang. 振荡流作用下圆柱体结构的水动力特性研究 海洋工程, 2021,
[14]Xue Hongxiang. 平台运动下悬链线立管涡激振动响应特性分析 船舶工程, 2021,
[15]Xue Hongxiang. 不同载荷形式下复合材料层合板渐进失效行为研究 舰船科学技术, 2021,
total83 2/6
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