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The influence of particle orientation on the loading condition of pebbles in fluvial gravel

机译:颗粒取向对砾石中卵石加载条件的影响

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The loading conditions of pebbles in fluvial gravel deposits were studied with different degrees of preferred particle orientation. Sediments that are comprised of non-spherical particles often show a preferred particle orientation, due to dynamic sedimentation. Here, the impact of this effect on the loading conditions of the particles and its implication on particle breakage was investigated by using discrete element simulations in three dimensions. The numerical models are based on the size and shape distribution of pebbles from a natural gravel sample. In addition, the particle size in some of the models was chosen to be uniform, to study the influence of the particle size distribution on the loading condition. Fluvial pebbles, whose shapes can be at best approximated by ellipsoids, were efficiently simulated in the discrete element models by the use of clumps. The results show that a preferred orientation of approximate ellipsoidal sedimentary particles has only a minor effect on the number and the position of particle contacts but leads to a significant load transfer from the rim to the centre of the oblate sides of the ellipsoidal particles, in comparison to an assembly of arbitrarily oriented particles. The comparison of the different particle size models indicates that the influence of the particle size distribution on the loading condition is relatively low. The results have significant implications for the breakage rate of non-spherical particles in sediments under load.
机译:研究了砾石沉积物中卵石的加载条件,以及不同程度的优选颗粒取向。由于动态沉降,由非球形颗粒组成的沉积物通常表现出优选的颗粒方向。在此,通过使用三维三维离散元模拟研究了这种效应对颗粒加载条件的影响及其对颗粒破碎的影响。数值模型基于天然砾石样品中卵石的大小和形状分布。此外,在某些模型中选择了均匀的粒径,以研究粒径分布对加载条件的影响。通过使用团块,在离散单元模型中可以有效地模拟其卵石的形状最多可以近似为椭圆形。结果表明,与之相比,近似椭圆形沉积颗粒的优选取向仅对颗粒接触的数量和位置产生较小影响,但会导致从边缘到椭圆形颗粒扁边中心的大量载荷转移。组装成任意定向的粒子。不同粒径模型的比较表明,粒径分布对加载条件的影响相对较低。结果对载荷作用下沉积物中非球形颗粒的破碎率具有重要意义。

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