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Modeling ice jam release waves with consideration for ice effects

机译:考虑冰效应对冰堵释放波建模

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The sudden release of a river ice jam can produce a dramatic ice run and rapidly rising water levels, resulting in a significant threat to human safety and property. Therefore, it is highly desirable to have reliable forecasting models for these events. Previous investigations suggest that models should consider the effects of ice to achieve accurate prediction of such events; however, the effects of ice on the propagating release wave are not yet well understood. This paper explores the extent of ice complexity necessary to successfully model ice jam release events. Simplified ice effects were incorporated into a fully dynamic one-dimensional hydraulic model. In the model, ice mass continuity is solved with the total ice-water mass and momentum equations in an uncoupled sequence. The ice momentum effects are empirically considered by introducing ice resistance and ice diffusion terms into the model. A hypothetical ice jam release is simulated to illustrate the model's performance in comparison with published results for a more sophisticated ice process model which considers ice effects deterministically, and the proposed model is shown to perform well. In addition, application of the proposed model to two actual ice jam release events further proves the applicability of this approximate formulation for modeling ice jam release events. From these results it appears that ice effects are most significant in the first few jam lengths of propagation, as noted by other researchers for field events.
机译:河流冰堵的突然释放会产生剧烈的冰流和水位迅速上升,从而对人类安全和财产构成重大威胁。因此,非常需要为这些事件提供可靠的预测模型。先前的研究表明,模型应考虑冰的影响,以实现对此类事件的准确预测。但是,冰对传播的释放波的影响尚不十分清楚。本文探讨了成功模拟冰堵释放事件所需的冰复杂程度。简化的冰效应被合并到全动态的一维水力模型中。在该模型中,用总的冰水质量和动量方程以不耦合的顺序求解冰块的连续性。通过在模型中引入冰阻力和冰扩散项,可以凭经验考虑冰动量效应。通过模拟假设的冰堵释放来说明该模型的性能,并与已发布的结果进行了比较,该结果与更复杂的制冰过程模型(确定性地考虑冰效应)相比较,并且所提出的模型显示出良好的性能。另外,将所提出的模型应用于两个实际的冰果酱释放事件进一步证明了该近似公式用于模拟冰果酱释放事件的适用性。从这些结果看来,在传播的最初几个果酱长度中,冰效应最为显着,正如其他研究人员针对田间事件所指出的那样。

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