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Granular dynamics simulations of two-dimensional heap formation

机译:二维堆积形成的颗粒动力学模拟

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Granular dynamics simulations have been carried out of vertical feed two-dimensional heap formation by a freefall method using a more realistic granule interaction law than has been employed in previous studies to permit prolonged contacts between adjacent granules. Stable heaps are found to form only on a geometrically rough base comprised of discrete particles, and heap formation is only weakly sensitive to the value of the contact friction coefficient. The appearance of avalanches, the pressure distribution on the base, and the voidage distribution are sensitive to the analytic form of the elastic component of the normal interaction, with a soft-sphere r(-36) potential giving more realistic behavior than an equivalent Hooke law interaction with the same apparent spring constant. The r(-36) interaction gives more realistic assembly dynamics as it introduces medium range collective motion caused by particle roughness and shape found in typical granular materials, without having to model anisotropic particles.
机译:已经通过自由落体法对垂直进料二维堆的形成进行了颗粒动力学模拟,该方法使用比以前的研究更为实际的颗粒相互作用定律,以允许相邻颗粒之间的长时间接触。发现稳定的堆仅在由离散颗粒组成的几何粗糙的基础上形成,并且堆的形成仅对接触摩擦系数的值敏感。雪崩的出现,基部上的压力分布和空隙分布对法向相互作用的弹性分量的解析形式敏感,并且软球体r(-36)的势能比等效的Hooke行为更真实定律相互作用具有相同的表观弹簧常数。 r(-36)相互作用提供了更为现实的装配动力学,因为它引入了中程集体运动,该运动是由典型粒状材料中的颗粒粗糙度和形状引起的,而不必对各向异性颗粒进行建模。

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