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Effect of a Single Particle on Water-Tube Interaction Subjected to Axial Impact Loading

机译:轴向冲击载荷下单个颗粒对水-管相互作用的影响

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This study numerically and experimentally investigated the effect of a single solid particle on the interaction between water and an elastic tube due to a water hammer. The investigation was conducted by impacting a steel cylinder projectile (at a speed of 2.4 m/s) onto the surface of a water–filled polycarbonate tube to initiate the water hammer propagating through both the tube and water. We examined the effect of a single cylindrical particle on the impact tube response for different particle radii and materials (steel, aluminum, and polycarbonate). Computational and experimental strains observed in front of the particle were in good agreement; the radial tube displacement was higher when the particle was made of stiffer material. In the experiment, the tube response in the middle of the particle was strongly affected by the size of the particle rather than the particle’s material. To evaluate the maximum impact response of hoop strains around the particle, a new model was proposed that treats the particle as a rigid body, and it successfully captured the experimental tendencies.
机译:这项研究通过数值和实验研究了单个固体颗粒对水和水锤引起的弹性管之间相互作用的影响。通过将一个钢弹丸(以2.4 m / s的速度)撞击到充水的聚碳酸酯管的表面上以引发水锤在管子和水中传播来进行调查。我们研究了单个圆柱形颗粒对不同颗粒半径和材料(钢,铝和聚碳酸酯)的冲击管响应的影响。在颗粒前面观察到的计算和实验应变非常吻合。当颗粒由较硬的材料制成时,径向管的位移较高。在实验中,粒子中间的管响应受粒子大小而非粒子材料的强烈影响。为了评估环向应变在颗粒周围的最大冲击响应,提出了一种将颗粒视为刚体的新模型,该模型成功地捕获了实验趋势。

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