Immiscible two-phase model for air blasts created during natural avalanches

GSA Bulletin Pub Date : 2022-12-20 DOI:10.1130/b36411.1
Jianbo Fei, Z. Liu, Y. Jie
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引用次数: 2

Abstract

An immiscible two-phase model based on the incompressible Navier-Stokes (N-S) equations is used to simulate the air blast generated by an avalanche. For simplicity, the avalanche is treated as an assembly of monodisperse spherical grains and described as a continuous media. The constitutive law of local µ(I) rheology is introduced to model the moving granular material. The motion of the avalanche and the induced air blast fits into a unified framework that combines the N-S−type governing equations with a µ(I)-rheology−based kinematic viscosity and a constant viscosity. The avalanche-air interface is treated using the volume-of-fluid method. A numerical program was developed on the open-source platform OpenFOAM specifically for this model to simulate the entire evolutionary process of the avalanche as well as the air blast generated. The model was validated by comparing the results of numerical simulations with those from inclined-plane laboratory experiments. With terrain input from the Shuttle Radar Topography Mission data, the model was further applied to simulate the air blast generated in two natural avalanches, namely, the Baige and Wenjia valley avalanches fo China, which occurred in 2008 and 2018, respectively. The simulation results were found to be consistent with field observations following a statistical analysis of the properties of the air blast including flow speed and area of impact of the above-mentioned natural events.
自然雪崩中空气爆炸的非混相两相模型
采用基于不可压缩Navier-Stokes (N-S)方程的非混相两相模型来模拟雪崩产生的空气爆炸。为简单起见,我们将雪崩视为单分散球形颗粒的集合,并将其描述为连续介质。引入局部μ (I)流变本构律来模拟运动颗粒材料。雪崩的运动和诱导的空气爆炸符合一个统一的框架,该框架将N-S -型控制方程与基于μ (I)-流变的运动粘度和常数粘度结合在一起。采用流体体积法处理雪崩-空气界面。在开源平台OpenFOAM上专门针对该模型开发了数值程序,模拟雪崩的整个演化过程以及产生的空气冲击波。将数值模拟结果与斜面室内实验结果进行了比较,验证了模型的正确性。利用航天飞机雷达地形任务数据输入的地形,进一步应用该模型模拟了分别发生在2008年和2018年的中国白葛山和文家山两起自然雪崩中产生的空气爆炸。通过对上述自然事件的气流速度和影响面积等特性进行统计分析,发现模拟结果与现场观测结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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