【24h】

Particle descriptions and grain contact laws for Lunar materials: Their implementation in a discrete element model.

机译:月球材料的颗粒描述和颗粒接触定律:它们在离散元素模型中的实现。

获取原文

摘要

Lunar surface activities engage the mechanical properties of the regolith on a relatively small scale, and there is currently great interest in employing discrete element models to simulate such activities. The validity of this type of model depends critically on employing correct contact laws and particle descriptions (size, shape and surface roughness) for the materials of interest. This need has motivated us to conduct grain-scale experiments on Apollo soils, develop contact laws, and implement these laws in a discrete element model to simulate the engineering-scale behavior of the lunar regolith. The paper presents an overview of our findings with emphasis on the range of contact properties observed primarily for lunar plagioclase and pyroxene grains, with varying degrees of space weathering, and the implementation of the contact laws in a discrete element model of a standard geotechnical triaxial cell. We quantify grain size, aspect ratio, roundness, etc., and use these results to generate virtual particles with the desired population statistics. Carefully oriented SEM micrographs of each grain are used to determine the radius of curvature and surface roughness of the contact patches prior to and after mechanical testing. The paper presents normal and shear contact laws that quantify the elastic and inelastic (e.g., hysteretic) components of deformation. We observed space weathering to have a first-order effect on contact properties, reducing the effective elastic modulus of plagioclase grains by -50% and increasing the hysteretic loss by a factor of 3-4. Implementation of the normal and shear contact models in a discrete element model is described, and the effects of the observed ranges in contact properties on the simulated triaxial behavior are demonstrated.
机译:月球表面活动在相对较小的规模上影响了go石的机械性质,目前人们非常关注采用离散元素模型来模拟此类活动。这种类型的模型的有效性主要取决于对目标材料采用正确的接触定律和颗粒描述(尺寸,形状和表面粗糙度)。这种需求促使我们在阿波罗(Apollo)的土壤上进行粒度实验,制定接触定律,并在离散元素模型中实施这些定律,以模拟月球巨石的工程规模行为。本文概述了我们的发现,重点是主要观察到的月斜长石和辉石晶粒的接触特性范围,以及不同程度的空间风化作用,以及在标准岩土三轴单元的离散元素模型中实现的接触定律。我们对晶粒尺寸,长宽比,圆度等进行量化,并使用这些结果生成具有所需总体统计信息的虚拟粒子。在机械测试之前和之后,使用每个晶粒的精心定向的SEM显微照片确定接触贴片的曲率半径和表面粗糙度。本文介绍了法线和剪力接触定律,它们量化了变形的弹性和非弹性(例如滞后)分量。我们观察到空间风化对接触性能具有一级影响,使斜长石晶粒的有效弹性模量降低了-50%,磁滞损耗增加了3-4倍。描述了在离散元素模型中法向和剪切接触模型的实现,并说明了观察范围的接触特性对模拟三轴行为的影响。

相似文献

  • 外文文献
  • 中文文献
  • 专利
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