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首页> 外文期刊>Icarus: International Journal of Solar System Studies >A new hybrid framework for simulating hypervelocity asteroid impacts and gravitational reaccumulation
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A new hybrid framework for simulating hypervelocity asteroid impacts and gravitational reaccumulation

机译:一种用于模拟超细型小行星影响和引力reaccumulation的新混合框架

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We present a hybrid approach for simulating hypervelocity impacts onto asteroids. The overall system response is separated into two stages based on their different characteristic timescales. First, the short-timescale fragmentation phase is simulated using a modified version of the Tonge-Ramesh material model implemented in a Material Point Method framework. Then, a consistent hand-off to an N-body gravity code is formulated to execute the long-timescale gravitational reaccumulation calculation. We demonstrate this hybrid approach by considering the 5 km/s head-on impact of a 1.21 km diameter basalt impactor on a 25 km diameter target asteroid. The impact event resulted in the fragmentation, but not complete disruption, of the entire target. A granular core is observed at the end of the fragmentation simulations, which acts as a gravity well over which reaccumulation occurs in the N-body simulations. Our results suggest that disruption thresholds for rocky asteroids are higher when energy-dissipating mechanisms such as granular flow and pore collapse are included.
机译:我们提出了一种混合方法,用于模拟在小行星上的超细差异影响。整体系统响应基于其不同的特征时间尺寸分为两个阶段。首先,使用在材料点法框架中实现的调度幅度材料模型的修改版本来模拟短时间碎片阶段。然后,配制到N身体重力码的一致切换以执行长时间的重力reacumumulation计算。我们通过考虑在25km直径的目标小行星上考虑5km / s头部对1.21 km直径玄武岩撞击器的影响而展示这种混合方法。影响事件导致整个目标的碎片,但不完全破坏。在碎片模拟结束时观察到粒状核心,其用作重力阱,在n身体模拟中发生重热。我们的研究结果表明,当包括粒状流动和孔隙塌陷等能量消散机制时,岩石小行星的破坏阈值更高。

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