长江口北槽深水航道回淤量变化宏观动力原因分析
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Analysis of macro dynamic reasons for change of back silting amount in deepwater channel project at north passage of the Yangtze estuary
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    摘要:

    根据实测资料、物理模型试验结果和有关文献成果对影响长江口北槽深水航道回淤量的宏观动力原因进行了分析。取得新的认识:1)与枯季相比,长江口拦门沙河段洪季波浪中的长周期波浪显著增多,其中8.0 s及以上周期的波浪能量占总波能的比例由枯季的3.2%增加至洪季的40.6%;2)高能波浪运动对北槽航道回淤产生了显著的不利影响,与北槽航道回淤量的增加息息相关;3)12.5 m航道开挖后,北槽航道内水流冲刷能力沿程均有增强,有利于槽内泥沙往两侧高滩运移;4)长江口拦门沙河段泥沙自身交换量远大于河口上游来沙,洪水不是造成北槽航道回淤量发生显著变化的主导性宏观动力原因;5)波浪作用是长江口北槽航道回淤量发生显著变化的主导性宏观动力原因,“消浪”应成为今后北槽深水航道减淤工程以及长江口南槽、北港和北支下段航道整治工程设计研究工作中不可忽视的指导性原则之一。

    Abstract:

    Based on experiment, observed in-situ data and results of the literature, the macroscopic dynamic reasons for change of back silting amount in the deepwater channel project at north passage of the Yangtze estuary are studied. The results show that: 1) Compared with the dry season, the long-period waves in the flood season increase significantly, the proportion of wave energy with the period range of 8.0s to higher in total wave energy increases from 3.2 % in the dry season to 40.6% in the flood season; 2) High-energy wave motion produces significant adverse effects on siltation in navigation channel at the north passage, it is closely related to the increase of back silting amount; 3) The current scouring capability in the north channel along the way increases after the channel depth dredged to 12.5 m, it is beneficial for the sediment in channel to move higher; 4) The quantity of own sediment exchange in the mouth bars of the Yangtze estuary is far more than that from upstream, flood is not the dominant macro power reason that causes significant change of back silting amount in the deepwater channel project at the north passage; 5) Wave is the dominant macro power reason that causes significant change of back silting amount in the deepwater channel project at the north passage, in the future “wave dissipation” should become one of the guiding principles that shall not be ignored in design research work of deposition reduction project of the deepwater channel project at the north passage and waterway regulation engineering at the south passage, the north channel and the north branch of the Yangtze estuary.

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刘 猛,李为华.长江口北槽深水航道回淤量变化宏观动力原因分析[J].水运工程,2013(3):129-139.

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  • 在线发布日期: 2013-03-25
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