首页> 外文期刊>Natural hazards and earth system sciences >Analysis of the Tangjiaxi landslide-generated waves in the Zhexi Reservoir, China, by a granular flow coupling model
【24h】

Analysis of the Tangjiaxi landslide-generated waves in the Zhexi Reservoir, China, by a granular flow coupling model

机译:浙溪水库唐家溪滑坡产生的波浪基于颗粒流耦合模型的分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A rocky granular flow is commonly formed after the failure of rocky bank slopes. An impulse wave disaster may also be initiated if the rocky granular flow rushes into a river with a high velocity. Currently, the granular masswater body coupling study is an important trend in the field of landslide-induced impulse waves. In this paper, a full coupling numerical model for landslide-induced impulse waves is developed based on a non-coherent granular flow equation, i.e., the Mih equation. In this model, the Mih equation for continuous non-coherent granular flow controls movements of sliding mass, the two-phase flow equation regulates the interaction between sliding mass and water, and the renormalization group (RNG) turbulence model governs the movement of the water body. The proposed model is validated and applied for the 2014 Tangjiaxi landslide of the Zhexi Reservoir located in Hunan Province, China, to analyze the characteristics of both landslide motion and its following impulse waves. On 16 July 2014, a rocky debris flow was formed after the failure of the Tangjiaxi landslide, damming the Tangjiaxi stream and causing an impulse wave disaster with three dead and nine missing bodies. Based on the full coupling numerical analysis, the granular flow impacts the water with a maximum velocity of about 22.5ms(-1). Moreover, the propagation velocity of the generated waves reaches up to 12ms(-1). The maximum calculated run-up of 21.8 m is close enough to the real value of 22.7 m. The predicted landslide final deposit and wave run-up heights are in a good agreement with the field survey data. These facts verify the ability of the proposed model for simulating the real impulse wave generated by rocky granular flow events.
机译:岩石颗粒流通常在岩石岸边坡崩塌后形成。如果岩石颗粒流以高速冲入河流,也可能引发脉冲波灾难。目前,颗粒质量水体耦合研究是滑坡诱发脉冲波领域的一个重要趋势。该文基于非相干颗粒流方程(Mih方程)建立了滑坡诱发脉冲波的全耦合数值模型。该模型中,连续非相干颗粒流的Mih方程控制着滑动质量的运动,两相流方程控制着滑动质量与水的相互作用,重整化群(RNG)湍流模型控制着水体的运动。对湖南省浙溪水库2014年唐家溪滑坡模型进行了验证和应用,分析了滑坡运动及其后续冲击波的特征。2014年7月16日,唐家溪山体滑坡失败后形成石屑流,导致唐家溪水道堵塞,造成冲击波灾难,造成3人死亡,9人失踪。基于全耦合数值分析,颗粒流对水的影响最大速度约为22.5ms(-1)。此外,产生的波的传播速度可达12ms(-1)。计算出的最大爬升速度为21.8米,与实际值22.7米非常接近。预测的滑坡最终沉积量和波浪上升高度与野外调查资料吻合较好。这些事实验证了所提模型模拟岩石颗粒流事件产生的真实脉冲波的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号