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Prediction of vehicle mobility on large-scale soft-soil terrain maps using physics-based simulation

机译:基于物理学仿真预测大型软土地层地图上的车辆移动性

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摘要

A high-fidelity physics-based approach for predicting vehicle mobility over large soft-soil terrain maps is presented. The approach is based on an HPC design-of-experiments (DOE) procedure, and the integration of multibody dynamics for modelling the vehicle and the discrete element method (DEM) for modelling the soil into one solver. A general cohesive soil DEM material model is used which includes the effects of cohesion, elasticity, plasticity/compressibility, damping, friction, and viscosity. To manage problem size, a novel moving soil patch technique is developed in which DEM particles which are behind the vehicle are continuously eliminated and then reemitted in front of the vehicle, levelled and compacted. The DEM inter-particle cohesion and friction are calibrated to the cone index using a simulation of a cone penetrometer. The DOE approach is demonstrated by predicting the speed-made-good distribution on 22 × 22 km terrain map for a 4 × 4 military vehicle. Two terrain parameters are considered in the DOE: terrain positive slope and soil strength.
机译:提出了一种基于高保真的物理学方法,用于预测大型软土地层地图上的车辆移动性。该方法基于HPC设计的实验(DOE)程序,以及用于对车辆和离散元件(DEM)建模的多体动力学的集成,用于将土壤建模成一个求解器。使用一般的粘性土壤DEM材料模型,其包括内聚力,弹性,可塑性/可压缩性,阻尼,摩擦和粘度的影响。为了管理问题尺寸,开发了一种新的移动土壤贴片技术,其中在车辆后面的DEM颗粒中被连续地消除,然后在车辆前方重新形成,水平和压实。使用锥形孔径计的模拟校正DEM间颗粒间凝聚和摩擦。通过预测4×4军用车辆的22×22km地形图的速度良好分布来证明DOE方法。 DOE中考虑了两个地形参数:地形正坡和土壤强度。

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