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台风浪对长江口深水航道骤淤的影响研究 被引量:13
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作者 徐福敏 张长宽 《水动力学研究与进展(A辑)》 CSCD 北大核心 2004年第2期137-143,共7页
 概述风暴对长江口航槽短期地形变化的影响和研究现状,将缓坡方程、Boussinesq方程和动谱平衡方程进行分析比较,选择后者做为长江口台风浪数值预报模式。介绍球坐标下动谱平衡方程模型及方程右端源汇项的处理方法,以9912号台风对波浪...  概述风暴对长江口航槽短期地形变化的影响和研究现状,将缓坡方程、Boussinesq方程和动谱平衡方程进行分析比较,选择后者做为长江口台风浪数值预报模式。介绍球坐标下动谱平衡方程模型及方程右端源汇项的处理方法,以9912号台风对波浪数值模型进行验证。数值预报EES向20m/s风场下深水航道水域波浪要素:有效波高分布和波浪水质点底部轨迹运动速度分布。由泥沙起动底流速公式得到深水航道水域底沙起动底流速场,根据长江口波浪水质点底部轨迹运动速度的均方根值与泥沙的起动底流速之差的分布场进行骤淤机理分析。结果表明在EES向20m/s风场作用下横沙浅滩和九段沙浅滩的大部分水域底部泥沙将被掀扬至水体,部分泥沙在跨槽水流带动下会进入航道而造成严重淤积。最后提出研究长江口深水航道风暴骤淤问题的进一步工作。 展开更多
关键词 长江口 台风浪 动谱平衡方程 起动底流速 骤淤 波浪水质点底部轨迹运动速度
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Effects of storm waves on rapid deposition of sediment in the Yangtze Estuary channel 被引量:2
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作者 Xu Fumin Zhang Changkuan +1 位作者 Mao Lihua Tao Jianfeng 《Water Science and Engineering》 EI CAS 2008年第1期27-36,共10页
Recent research on short-term topographic change in the Yangtze Estuary channel under storm surge conditions is briefly summarized. The mild-slope, Boussinesq and action balance equations are compared and analyzed. Th... Recent research on short-term topographic change in the Yangtze Estuary channel under storm surge conditions is briefly summarized. The mild-slope, Boussinesq and action balance equations are compared and analyzed. The action balance equation, SWAN, was used as a wave numerical model to forecast strong storm waves in the Yangtze Estuary. The spherical coordinate system and source terms used in the equation are described in this paper. The significant wave height and the wave orbital motion velocity near the bottom of the channel during 20 m/s winds in the EES direction were simulated, and the model was calibrated with observation data of winds and waves generated by Tropical Cyclone 9912. The distribution of critical velocity for incipient motion along the bottom was computed according to the threshold velocity formula for bottom sediment. The mechanism of rapid deposition is analyzed based on the difference between the root-mean-square value of the near-bottom wave orbital motion velocity and the bottom critical tractive velocity. The results show that a large amount of bottom sediments from Hengsha Shoal and Jiuduan Shoal are lifted into the water body when 20 m/s wind is blowing in the EES direction. Some of the sediments may enter the channel with the cross-channel current, causing serious rapid deposition. Finally, the tendency of the storm to induce rapid deposition in the Yangtze Estuary channel zone is analyzed. 展开更多
关键词 Yangtze Estuary storm waves action balance equation wave orbital motion velocity near thebottom bottom critical velocity rapid deposition
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