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Comparison of simplified physically based dam breach models

机译:简化的基于物理的大坝破坏模型的比较

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Three simplified physically based earthen embankment breach models, NWS BREACH (Revision 1), HR BREACH (Version 4.1) and DLBreach, are used to calculate the breaching of twelve dams, and the results are compared against the measured data and the predictions by three parametric breach models. It is found that NWS BREACH may have large errors for cohesive embankments, since it uses a noncohesive sediment transport model and does not consider headcut erosion as a typical mode of cohesive dam breach. HR BREACH considers headcut and surface erosion modes and adopts various surface erosion equations for noncohesive and cohesive soils. DLBreach adopts a nonequilibrium total-load sediment transport model and headcut erosion model for noncohesive and cohesive embankment breaching, respectively. All the three physically based models can handle overtopping failure of homogeneous and composite dams, as well as piping failure. HR BREACH and DLBreach consider both one-and two-sided widening, whereas only DLBreach allows subbase erosion. The comparison shows that DLBreach has best overall performance. Sensitivity studies show that sensitivity of these three models to soil erodibility is case dependent, but overall, DLBreach and HR BREACH are more sensitive than NWS BREACH. In addition, it is demonstrated that an adequate physically based breach model can perform better and provide more detailed results than a parametric model.
机译:使用三个简化的基于物理的土路堤破坏模型,即NWS BREACH(修订1),HR BREACH(版本4.1)和DLBreach,来计算十二个大坝的破坏,并将结果与​​实测数据和三个参数的预测值进行比较违反模型。结果发现,NWS BREACH对于粘性路堤可能有较大的误差,因为它使用的是非粘性沉积物传输模型,并且没有将坡口侵蚀视为粘性大坝破坏的典型模式。 HR BREACH考虑了割据和表面侵蚀模式,并针对非粘性和粘性土壤采用了各种表面侵蚀方程。 DLBreach分别采用非平衡式全负荷泥沙输移模型和捷径侵蚀模型处理非粘性堤和粘性堤防。所有这三种基于物理的模型都可以处理均质和复合坝的过顶破坏以及管道故障。 HR BREACH和DLBreach同时考虑了单面和双面加宽,而只有DLBreach允许基底侵蚀。比较表明,DLBreach具有最佳的整体性能。敏感性研究表明,这三种模型对土壤侵蚀性的敏感性取决于具体情况,但总的来说,DLBreach和HR BREACH比NWS BREACH更为敏感。此外,已证明与参数模型相比,适当的基于物理的违规模型可以更好地执行并提供更详细的结果。

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