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首页> 外文期刊>The Astrophysical journal >THE PHYSICS OF PROTOPLANETESIMAL DUST AGGLOMERATES. VII. THE LOW-VELOCITY COLLISION BEHAVIOR OF LARGE DUST AGGLOMERATES
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THE PHYSICS OF PROTOPLANETESIMAL DUST AGGLOMERATES. VII. THE LOW-VELOCITY COLLISION BEHAVIOR OF LARGE DUST AGGLOMERATES

机译:原型尘埃团块的物理。七。大型粉尘团聚体的低速碰撞行为

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We performed micro-gravity collision experiments in our laboratory drop tower using 5?cm sized dust agglomerates with volume filling factors of 0.3 and 0.4, respectively. This work is an extension of our previous experiments reported in Beitz et al. to aggregates of more than one order of magnitude higher masses. The dust aggregates consisted of micrometer-sized silica particles and were macroscopically homogeneous. We measured the coefficient of restitution for collision velocities ranging from 1 cm s–1 to 0.5 m s–1, and determined the fragmentation velocity. For low velocities, the coefficient of restitution decreases with increasing impact velocity, in contrast to findings by Beitz et al. At higher velocities, the value of the coefficient of restitution becomes constant, before the aggregates break at the onset of fragmentation. We interpret the qualitative change in the coefficient of restitution as the transition from a solid-body-dominated to a granular-medium-dominated behavior. We complement our experiments by molecular-dynamics simulations of porous aggregates and obtain a reasonable match to the experimental data. We discuss the importance of our experiments for protoplanetary disks, debris disks, and planetary rings. This work is an extension to the previous work of our group and gives new insight into the velocity dependency of the coefficient of restitution due to improved measurements, better statistics, and a theoretical approach.
机译:我们在实验室的滴水塔中使用5?cm大小的粉尘团块进行了微重力碰撞实验,其粉尘填充系数分别为0.3和0.4。这项工作是对我们先前在Beitz等人中进行的实验的扩展。聚集的质量大于一个数量级。粉尘聚集体由微米级的二氧化硅颗粒组成,宏观上是均匀的。我们测量了从1 cm s-1到0.5 m s-1的碰撞速度的恢复系数,并确定了破碎速度。对于低速,恢复系数随冲击速度的增加而减小,这与Beitz等人的发现相反。在较高的速度下,在聚集体在破碎开始时破裂之前,恢复系数的值变得恒定。我们将恢复系数的质变解释为从固体为主的行为过渡到颗粒介质为主的行为的转变。我们通过多孔聚集体的分子动力学模拟对实验进行补充,并获得与实验数据的合理匹配。我们讨论了实验对原行星盘,碎片盘和行星环的重要性。这项工作是对我们小组先前工作的扩展,并且由于改进了测量,提供了更好的统计数据和一种理论方法,使人们对归还系数的速度依赖性有了新的认识。

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