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首页> 外文期刊>Journal of geophysical research. Planets >Effect of impact velocity and acoustic fluidization on the simple-to-complex transition of lunar craters
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Effect of impact velocity and acoustic fluidization on the simple-to-complex transition of lunar craters

机译:冲击速度和声流放对月球陨石坑简单转变的影响

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We use numerical modeling to investigate the combined effects of impact velocity and acoustic fluidization on lunar craters in the simple-to-complex transition regime. To investigate the full scope of the problem, we employed the two widely adopted Block-Model of acoustic fluidization scaling assumptions (scaling block size by impactor size and scaling by coupling parameter) and compared their outcomes. Impactor size and velocity were varied, such that large/slow and small/fast impactors would produce craters of the same diameter within a suite of simulations, ranging in diameter from 10 to 26 km, which straddles the simple-to-complex crater transition on the Moon. Our study suggests that the transition from simple to complex structures is highly sensitive to the choice of the time decay and viscosity constants in the Block-Model of acoustic fluidization. Moreover, the combination of impactor size and velocity plays a greater role than previously thought in the morphology of craters in the simple-to-complex size range. We propose that scaling of block size by impactor size is an appropriate choice for modeling simple-to-complex craters on planetary surfaces, including both varying and constant impact velocities, as the modeling results are more consistent with the observed morphology of lunar craters. This scaling suggests that the simple-to-complex transition occurs at a larger crater size, if higher impact velocities are considered, and is consistent with the observation that the simple-to-complex transition occurs at larger sizes on Mercury than Mars.
机译:我们使用数值模型来研究易于复杂的过渡制度中的撞击速度和声学流化对月球陨石坑的综合影响。为了调查问题的全部范围,我们采用了两个广泛采用的声学流化缩放假设模型(通过耦合参数通过撞击器尺寸和缩放缩放块大小),并比较其结果。影响力尺寸和速度变化,使得大/慢速和小/快冲击器会在模拟套件内产生相同直径的陨石坑,直径为10到26公里,跨越简单复杂的火山口转换月亮。我们的研究表明,从简单到复杂结构的过渡对声学流化块模型中的时间衰减和粘度常数的选择非常敏感。此外,撞击器尺寸和速度的组合在简单到复杂的尺寸范围内的陨石坑的形态中比以前思想起着更大的作用。 We propose that scaling of block size by impactor size is an appropriate choice for modeling simple-to-complex craters on planetary surfaces, including both varying and constant impact velocities, as the modeling results are more consistent with the observed morphology of lunar craters.这种缩放表明,如果考虑更高的冲击速度,则在较大的撞击口尺寸下发生简单到复杂的过渡,并且与观察结果一致,即在汞的较大尺寸上发生的简单复杂的过渡比火星更大的尺寸。

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