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THE PHYSICS OF DUST COAGULATION AND THE STRUCTURE OF DUST AGGREGATES IN SPACE

机译:空间中的尘埃凝聚物理和尘埃团块的结构

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Even though dust coagulation is a very important dust-processing mechanism in interstellar space and protoplanetary disks, there are still important parts of the physics involved that are poorly understood. This imposes a serious problem for model calculations of any kind. In this paper, we attempt to improve the situation by including the effects of tangential forces on the contact in some detail. These have been studied in recent papers. We summarize the main results from these papers and apply them to detailed simulations of the coagulation process and of collisions between dust aggregates. Our results show the following: (1) the growth of aggregates by monomers will normally not involve major restructuring of the aggregates, (2) the classical hit-and-stick assumption is reasonably valid for this case, (3) collisions of aggregates with each other or with large grains can lead to significant compaction, and (4) the results can be easily understood in terms of critical energies for different restructuring processes. We also derive a short summary that may be used as a recipe for determining the outcome of collisions in coagulation calculations. It is shown that turbulent velocity fields in interstellar clouds are capable of producing considerably compressed aggregates, while the small aggregates forming early on in the solar nebula will not be compacted by collisions. However, compaction provides an important energy sink in collisions of larger aggregates in the solar nebula.
机译:尽管凝结尘埃是星际空间和原行星盘中非常重要的尘埃处理机制,但仍涉及的物理学重要部分仍知之甚少。这给任何类型的模型计算都带来了严重的问题。在本文中,我们尝试通过详细介绍切向力对接触的影响来改善这种情况。这些已在最近的论文中进行了研究。我们总结了这些论文的主要结果,并将其应用于凝结过程和粉尘聚集体之间碰撞的详细模拟。我们的结果表明:(1)单体对骨料的生长通常不会涉及骨料的重大重组;(2)经典的即插即用假设在这种情况下是合理有效的;(3)骨料与彼此或具有大晶粒会导致明显的压实,并且(4)对于不同的重组过程,根据临界能量很容易理解结果。我们还得出了一个简短的摘要,可用作确定混凝计算中碰撞结果的方法。结果表明,星际云中的湍流速度场能够产生相当大的压缩团聚体,而在太阳星云中较早形成的小团聚体不会因碰撞而被压实。但是,在太阳星云中较大的聚集体碰撞时,压实提供了重要的能量吸收器。

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