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Three dimensional granular material study numerically with discrete element method and experimentally with magnetic resonance imaging.

机译:三维粒状材料的数值研究采用离散元方法,并通过磁共振成像进行实验。

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摘要

Two new tools were developed in this dissertation. The first tool is the experimental method using the magnetic resonance imaging (MRI) to obtain non-invasively microscopic information of a suitable granular material. The second tool is an improved computer program named ELLIPSE3J.; Simulations of random arrays of spheres and ellipsoids using the discrete element method (DEM) have shown certain macroscopic behavior of granular materials. It is the ultimate goal to obtain microscopic information of these granular materials to aid the development of a micromechanical basis constitutive model. The abundant fabric information produced by DEM can accomplish this goal. However, there is no 3-D experimental data to compare the numerical microscopic observation. It is here to develop a tool that can provide fabric information using MRI technology.; The comparison was conducted under the same conditions. Spherical pharmaceutical pills were selected as the granular material. Tests were conducted to obtain the material properties of these pharmaceutical pills that required for the numerical simulation. The macroscopic and microscopic characteristics were experimentally observed by conducting simple shear tests inside the MRI equipment. The experimental result was simulated by a 3-D DEM program ELLIPSE3. Good agreement was found between the result of the numerical simulation and that of the simple shear test with MRI at both macroscopic and microscopic levels. It reveals that ELLIPSE3 can be used as a reliable tool to study the behavior of granular materials.; In addition, great effort was made to rewrite the 3-D DEM code, ELLIPSE3, written in FORTRAN 77, to ELLIPSE3J, which was written in Java. Although both codes produced identical results, many new options were incorporated in ELLIPSE3J. The new code ELLIPSE3J is user-friendly, easy to maintain, and easy to extend. The new program is menu-driven in lieu of the command driven in ELLIPSE3. One of the advantages is any data can be retrieved at any moment during execution. Also particle visualization, micro- and macro-data analyses, and graphic display are included in this new program that does not require other commercial software.
机译:本文开发了两种新工具。第一种工具是使用磁共振成像(MRI)获得合适颗粒材料的非侵入性显微信息的实验方法。第二个工具是名为ELLIPSE3J的改进的计算机程序。使用离散元方法(DEM)对球体和椭球体的随机阵列进行仿真已显示出颗粒材料的某些宏观行为。获得这些颗粒材料的微观信息以帮助开发微机械基础本构模型是最终目标。 DEM产生的丰富面料信息可以实现此目标。但是,没有3-D实验数据可以比较数值显微镜观察结果。在这里开发一种可以使用MRI技术提供面料信息的工具。比较是在相同条件下进行的。选择球形药物丸剂作为颗粒材料。进行测试以获得数值模拟所需的这些药物丸的材料特性。通过在MRI设备内部进行简单的剪切试验,通过实验观察了宏观和微观特征。实验结果由3-D DEM程序ELLIPSE3模拟。在宏观和微观水平上,数值模拟的结果与采用MRI的简单剪切试验的结果之间找到了很好的一致性。它表明ELLIPSE3可以用作研究粒状材料行为的可靠工具。此外,还付出了巨大的努力将用FORTRAN 77编写的3-D DEM代码ELLIPSE3重写为用Java编写的ELLIPSE3J。尽管两个代码产生的结果相同,但是ELLIPSE3J中包含了许多新选项。新代码ELLIPSE3J易于使用,易于维护和易于扩展。新程序是菜单驱动的,而不是ELLIPSE3中驱动的命令。优点之一是在执行期间的任何时候都可以检索任何数据。这个新程序还包括粒子可视化,微观和宏观数据分析以及图形显示,不需要其他商业软件。

著录项

  • 作者

    Wang, Changming.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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