三峡库区吊嘴危岩崩塌涌浪生成传播及系泊船舶响应的数值模拟研究*
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重庆市水利科技项目(CQSLL-2024021)


Numerical simulation of generation and propagation of surge waves and response of moored ships induced by Diaozui dangerous rock collapse in Three Gorges Reservoir area
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    摘要:

    针对三峡库区库岸带危岩体崩塌入水后引发的涌浪对航运设施及船舶安全造成的威胁问题,开展了“危岩入水-涌浪传播-船舶响应”全链条耦合研究。以奉节段吊嘴危岩体及周边趸船码头-系泊长江江轮系统为对象,利用三维数值模拟方法模拟危岩崩塌入水、涌浪生成与传播过程,分析涌浪作用下趸船与系泊江轮的运动响应特性,总结出吊嘴危岩涌浪生成与传播规律和系泊系统运动响应特征以及安全情况。研究发现,危岩崩塌入水过程仅16 s,首浪高度达26.4 m,涌浪核心区因能量扩散、河床阻力等因素衰减显著,但远端因反射叠加导致最大波高略高于首浪;涌浪作用下,趸船与江轮横摇响应最显著,横荡、纵荡及垂荡运动同步性高,缆绳受力接近破断风险,存在碰撞与失稳隐患;通过提前解缆可使船舶横摇极值大幅降低,其后依靠自身回复力矩快速恢复稳定,有效降低灾害风险。

    Abstract:

    This study addresses the threat posed by surge waves induced by the collapse of unstable rock masses along the bank zone of the Three Gorges Reservoir to navigation facilities and ship safety.A fully coupled analysis covering the entire chain of “rock mass entering water-surge wave propagation-ship response” is carried out.Taking the Diaozui dangerous rock mass in the Fengjie section and the surrounding pontoon terminal-moored Yangtze River ship system as the research objects,a three-dimensional numerical simulation method is adopted to simulate the processes of dangerous rock collapse into water,surge wave generation and propagation.The motion response characteristics of the pontoon and moored Yangtze River ships under the action of surge waves are analyzed,and the laws of surge wave generation and propagation induced by the Diaozui dangerous rock,the motion response characteristics of the mooring system,and its safety status are summarized.The results show that the rock collapse and water entry process lasted only 16 seconds,with an initial wave height of 26.4 m.The surge attenuated significantly in the core zone due to energy dispersion,riverbed resistance and other factors,whereas the maximum wave height at the far end was slightly higher than the initial wave as a result of wave reflection and superposition.Under the action of surge,the pontoon and river vessel exhibited the most significant roll response,with highly synchronized sway,surge and heave motions.The mooring ropes were subjected to tension close to the breaking load,posing risks of collision and instability.Preemptive untying of mooring ropes can substantially reduce the maximum roll amplitude of the vessel,enabling it to quickly restore stability via its own restoring moment and effectively mitigate disaster risks.

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李林洋,钱丽云,邹 韬,等.三峡库区吊嘴危岩崩塌涌浪生成传播及系泊船舶响应的数值模拟研究*[J].水运工程,2026(5):184-191.

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  • 在线发布日期: 2026-05-21
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