STUDY OF RHEOLOGICAL ICE MODELS BASED ON NUMERICAL SIMULATION OF LOW-VELOCITY IMPACT WITH A BALL INDENTOR

IF 0.6 4区 工程技术 Q4 MECHANICS Journal of Applied Mechanics and Technical Physics Pub Date : 2025-04-18 DOI:10.1134/S0021894424060142
E.K. Guseva, V.I. Golubev, V.P. Epifanov, I.B. Petrov
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Abstract

A method for selecting an appropriate ice model and its parameters using numerical simulation is developed. The process of low-velocity impact of a spherical indenter with an ice plate is studied, and numerical calculation data are compared with experimental data. This paper describes well-known rheological models of elastoplasticity with the von Mises and von Mises–Schleicher yield criteria, as well as an elasticity model with a constant-size elastoplastic inclusion. A system of isotropic linear elasticity equations, solved by the grid-characteristic method, is used as the determining system of equations. The effect of the model parameters on the calculated instantaneous velocities and coordinates of the ball is investigated. Criteria for selecting the model characteristics are formulated, and approximations of dependences of these criteria on various parameters are constructed.

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基于球压头低速冲击数值模拟的流变冰模型研究
提出了一种利用数值模拟选择合适的冰模型及其参数的方法。研究了球形压头与冰板的低速碰撞过程,并将数值计算数据与实验数据进行了比较。本文用von Mises和von Mises - schleicher屈服准则描述了著名的弹塑性流变模型,以及具有等尺寸弹塑性夹杂物的弹性模型。采用网格特征法求解的各向同性线弹性方程组作为确定方程组。研究了模型参数对计算出的球的瞬时速度和坐标的影响。制定了选择模型特征的准则,并构造了这些准则对各种参数的依赖关系的近似。
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来源期刊
CiteScore
1.20
自引率
16.70%
发文量
43
审稿时长
4-8 weeks
期刊介绍: Journal of Applied Mechanics and Technical Physics is a journal published in collaboration with the Siberian Branch of the Russian Academy of Sciences. The Journal presents papers on fluid mechanics and applied physics. Each issue contains valuable contributions on hypersonic flows; boundary layer theory; turbulence and hydrodynamic stability; free boundary flows; plasma physics; shock waves; explosives and detonation processes; combustion theory; multiphase flows; heat and mass transfer; composite materials and thermal properties of new materials, plasticity, creep, and failure.
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