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Coupled modeling of bank retreat processes in the Upper Jingjiang Reach, China

机译:京江大学银行撤退过程的耦合建模

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Bank retreat processes in the Upper Jingjiang Reach (UJR) have attracted much attention in recent years due to a high occurrence frequency, and these processes can be influenced significantly by the near-bank fluvial erosion and variations in river stage and groundwater level. A coupled model was thus proposed in this study, integrating the module of bank-toe deformation with the modules of groundwater level change and bank stability analysis. The proposed model was validated through comparisons between the calculated and measured bank erosion volumes and bank profiles at four typical sections in the UJR, with relatively close agreement being obtained. Multiple tests were conducted to investigate the model performance. These results show that: (i) a more rapid drawdown of river stage resulted in a more significantly delayed response of groundwater level to river stage, indicating that the bank may suffer a higher pore water pressure at the same river stage during the rapid drawdown period; (ii) a larger bank erosion volume was predicted, with the delayed response of groundwater level being considered. In addition, initial groundwater level may take a great impact on bank erosion simulations, especially for the banks with relatively lower soil permeability and shear strength); (iii) based on the adopted method of bank stability analysis, the occurrence of the first failure may greatly influence the sequential failures, and thus the total number and volume of bank failure; (iv) the calculated bank erosion volume was most sensitive to a change in the critical shear stress, especially to its decrease, when the erodibility coefficient was determined by an empirical function of the critical shear stress. (c) 2018 John Wiley & Sons, Ltd.
机译:由于频率很高,近年来,近年的银行撤退流程(UJR)引起了很多关注,这些过程可以通过近岸河阶段和地下水位的近岸河流侵蚀和变化来影响这些过程。因此,在本研究中提出了一种耦合模型,与地下水位变化和银行稳定性分析的模块集成了银行变形模块。通过在UJR中的四个典型部分之间计算和测量的银行侵蚀卷和银行概况之间的比较验证了所提出的模型,获得了相对较近的协议。进行多次测试以调查模型性能。这些结果表明:(i)河流阶段的更快地缩减导致地下水位延迟到河流阶段的响应,表明该银行在快速绘制期间在同一河流阶段遭受更高的孔隙水压; (ii)预测了较大的银行侵蚀体积,随着地下水位的延迟响应被考虑。此外,初始地下水位可能对银行侵蚀仿真产生很大影响,特别是对渗透性和剪切强度较低的堤岸; (iii)基于采用的银行稳定性分析方法,第一个失败的发生可能会极大地影响顺序失败,从而大大影响银行失败的总数和体积; (iv)当通过临界剪切应力的经验函数确定腐蚀系数确定侵蚀系数时,计算出的银行侵蚀体积对临界剪切应力的变化最敏感,尤其是其降低。 (c)2018 John Wiley&Sons,Ltd。

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