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首页> 外文期刊>International journal of impact engineering >Dynamic compaction of foam under blast loading considering fluid-structure interaction effects
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Dynamic compaction of foam under blast loading considering fluid-structure interaction effects

机译:考虑流固耦合效应的爆炸载荷下泡沫的动态压实

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摘要

A numerical approach for one-dimensional dynamic compaction of foam produced by a blast pressure wave is presented. Approximate numerical procedures for solving the Riemann problem associated with shock are implemented within the Godunov finite volume scheme for the fluid domain. A numerical framework for enforcing the traction and velocity continuity across the fluid-solid interface is presented. Numerical evaluation is performed considering foams of different strengths. Results of the analysis indicate that the fluid-structure interaction effects are significant only in the early part of the blast pressure history. The energy consumed during the dynamic compaction of foam produced by a blast pressure wave is higher than the energy obtained as the area under the quasi-static stress-strain curve of the material. During the dynamic compaction of foam, there is a difference between the energy absorbed by the foam and the total energy consumed in the compaction of foam, which is available as kinetic energy of the compacted foam. The compaction of the porous material continues even after the blast over-pressure decreases below the crushing strength of the foam because of the kinetic energy available in the compacted foam. The energy transferred from the blast pressure wave to weaker foam is higher than the energy transferred to foam with higher crushing strength. There is a critical length of the foam when the energy absorbed by the foam is totally dissipated by the compaction of the material and the kinetic energy in the compacted foam becomes equal to zero. When the length of foam is greater than the critical length, the impulse of the transmitted pressure pulse is equal to the impulse of the reflected blast over-pressure. There is however a decrease in the pressure amplitude which depends upon the crushing strength of the foam.
机译:提出了一种由爆炸压力波产生的泡沫一维动态压实的数值方法。在流体域的Godunov有限体积方案中,采用了近似的数值程序来解决与冲击有关的Riemann问题。提出了一个在流体-固体界面上加强牵引力和速度连续性的数值框架。考虑不同强度的泡沫进行数值评估。分析结果表明,仅在爆炸压力历史的早期阶段,流固耦合作用才显着。在由爆炸压力波产生的泡沫进行动态压实过程中消耗的能量高于在材料的准静态应力-应变曲线下的面积所获得的能量。在泡沫的动态压实期间,泡沫吸收的能量与泡沫压实消耗的总能量之间存在差异,该差异可作为压实的泡沫的动能获得。甚至在爆炸超压降低到低于泡沫的压碎强度之后,由于压缩的泡沫中可利用的动能,多孔材料的压缩仍在继续。从爆炸压力波传递到较弱泡沫的能量比传递给具有较高抗碎强度的泡沫的能量高。当通过材料的压实完全消散了由泡沫吸收的能量并且在压实的泡沫中的动能变为零时,泡沫具有临界长度。当泡沫的长度大于临界长度时,传递的压力脉冲的脉冲等于反射的爆炸超压的脉冲。然而,取决于泡沫的抗碎强度的压力幅度减小。

著录项

  • 来源
    《International journal of impact engineering》 |2012年第2012期|p.29-39|共11页
  • 作者单位

    Civil Engineering Department, City College of the City University of New York, New York, NY 10031, USA;

    Civil Engineering Department, City College of the City University of New York, New York, NY 10031, USA,Department of Civil Engineering, Indian Institute of Technology, Hyderabad 502205, India;

    Mechanical Engineering Department, City College of the City University of New York, New York, NY 10031, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    foam; compaction; blast; FSI; dissipation;

    机译:泡沫;压实爆破;FSI;耗散;

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