陆倩, 龚政, 周曾, 张长宽. 淤泥质海岸入海河口闸下港道河相关系[J]. 水科学进展, 2016, 27(5): 751-762. DOI: 10.14042/j.cnki.32.1309.2016.05.013
引用本文: 陆倩, 龚政, 周曾, 张长宽. 淤泥质海岸入海河口闸下港道河相关系[J]. 水科学进展, 2016, 27(5): 751-762. DOI: 10.14042/j.cnki.32.1309.2016.05.013
LU Qian, GONG Zheng, ZHOU Zeng, ZHANG Changkuan. Hydro-geometric relation of tidally-influenced channels downstream of floodgates along muddy coasts[J]. Advances in Water Science, 2016, 27(5): 751-762. DOI: 10.14042/j.cnki.32.1309.2016.05.013
Citation: LU Qian, GONG Zheng, ZHOU Zeng, ZHANG Changkuan. Hydro-geometric relation of tidally-influenced channels downstream of floodgates along muddy coasts[J]. Advances in Water Science, 2016, 27(5): 751-762. DOI: 10.14042/j.cnki.32.1309.2016.05.013

淤泥质海岸入海河口闸下港道河相关系

Hydro-geometric relation of tidally-influenced channels downstream of floodgates along muddy coasts

  • 摘要: 以江苏沿海北部的射阳河闸下港道为原型,建立二维水动力及泥沙输运概化数学模型,模拟了淤泥质海岸闸下港道淤积过程。分别在不考虑径流年内分配变化和考虑径流年内分配变化的情况下,研究了入海径流对港道内水沙动力和冲淤演变的影响。参考前人研究成果,结合量纲和谐准则,根据模型的计算结果,建立了淤泥质海岸闸下港道年均平衡流量与汛期排水比例、河床断面积、外海潮差、潮波变形、港道长度等因素间的河相关系式,对在实际情况中达到动态冲淤平衡的某条特定港道,可简化为港道年均流量与河床断面积间关系式的简化形式,并通过分析实测资料,对公式的简化形式加以佐证。

     

    Abstract: Taking a channel downstream the Sheyang sluice as a prototype, a two-dimensional generalized morphodynamic model is established to investigate the siltation mechanism of a typical channel downstream floodgate in muddy coasts, China. The influence of runoff on hydro-sediment dynamics, as well as the souring and silting evolution in the channel, has been explored with and without considering the change of annual runoff distribution, respectively. A semi-empirical equation describing the relation between the equilibrium discharge and the ratio of runoff volume in flood season, channel averaged cross-section, offshore tidal range, tidal wave deformation, channel length and other related factors is established. For a particular channel which is practically in dynamic equilibrium state of erosion-siltation, the above-mentioned equation can be simplified as a simple form of expression of equilibrium discharge and channel averaged cross-section. And the simplified form of this formula is validated by observational data.

     

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