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首页> 外文期刊>Bulletin of engineering geology and the environment >Numerical simulation of non-rigid landslide into reservoir with erodible sediment bed using SPH method
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Numerical simulation of non-rigid landslide into reservoir with erodible sediment bed using SPH method

机译:使用SPH法用蚀沉积物贮存器中的非刚性滑坡进入水库的数值模拟

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Landslide phenomenon in accumulated erodible bed sediments in a reservoir is one of the issues in hydraulic and sedimentation sciences that has received little attention. We intend to model two-dimensional changes of the water surface in a reservoir and of an erodible bed caused by a non-rigid landslide using a particle-based meshless approach. In this study, a fully explicit three-step algorithm is used. In this method, approximate numerical solution to the equations of the fluid dynamics is obtained by replacing the fluid with a set of particles. The governing equations for water flow and sand mass movement are solved for each particle. The movement of each particle, which is in interaction with other particles, is tracked. Experiments of a dam break on a dry bed, and submarine rigid and non-rigid landslides have been used to validate the method. Results indicate that the model was successfully calibrated against the measured data. Moreover, good agreement with the measured data demonstrates high capabilities of this method in simulating free-surface flows and wave-related phenomena. After the model validation, changes of erodible bed in a reservoir due to a non-rigid landslide were modelled. In this study, non-rigid landslide masses and sediment materials were modelled by non-Newtonian Carreau-Yasuda fluid, which is the novelty in the analysis of this type of natural hazard. Two possible scenarios were analyzed-one with the sliding material lighter, and the other with the sliding material heavier than the deposited sediments. The model was run until the landslide completely collapsed and its full impact was applied to the reservoir bed sediments. Additionally, we waited until the water level reached a steady state. These examples demonstrate that the model presented in this paper can be used as a reliable tool for modelling these phenomena.
机译:水库积累的可蚀床沉积物中的滑坡现象是液压和沉降科学中的问题之一,它受到了很少的关注。我们打算在储存器中模拟水面的二维变化,并使用颗粒基无纤维方法由非刚性滑坡引起的可侵蚀床的侵蚀床。在本研究中,使用完全显式的三步算法。在该方法中,通过用一组颗粒替换流体来获得对流体动力学的等式的近似数值解决方案。对每个颗粒求解水流和砂质量运动的控制方程。跟踪与其他颗粒相互作用的每种颗粒的运动。干燥床上的坝体突破的实验,并且潜艇刚性和非刚性滑坡用于验证该方法。结果表明该模型成功校准了测量数据。此外,与测量数据的良好一致性符合该方法在模拟自由表面流动和相关的现象方面的高能力。在模型验证之后,建模了由于非刚性滑坡引起的储层中蚀刻床的变化。在这项研究中,非刚性滑坡质量和沉积物是由非牛顿古犬 - yasuda液体建模的,这是分析这种类型的自然灾害的新颖性。分析了两个可能的场景 - 用滑动材料打火机,另一个具有比沉积沉积物更重的滑动材料。运行该模型,直到滑坡完全坍塌,并将其完全撞击应用于储层床沉积物。此外,我们等待直到水位达到稳定状态。这些例子表明,本文提出的模型可用作用于建模这些现象的可靠工具。

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