首页> 外文期刊>Icarus: International Journal of Solar System Studies >Formation of melt droplets, melt fragments, and accretionary impact lapilli during a hypervelocity impact
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Formation of melt droplets, melt fragments, and accretionary impact lapilli during a hypervelocity impact

机译:超高速冲击过程中熔滴,熔体碎片和增生冲击性lapilli的形成

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摘要

We present a model that describes the formation of melt droplets, melt fragments, and accretionary impact lapilli during a hypervelocity impact. Using the iSALE hydrocode, coupled to the ANEOS equation of state for silica, we create high-resolution two-dimensional impact models to track the motion of impact ejecta. We then estimate the size of the ejecta products using simple analytical expressions and information derived from our hydrocode models. Ultimately, our model makes predictions of how the size of the ejecta products depends on impactor size, impact velocity, and ejection velocity. In general, we find that larger impactor sizes result in larger ejecta products and higher ejection velocities result in smaller ejecta product sizes. We find that a 10 km diameter impactor striking at a velocity of 20 km/s creates millimeter scale melt droplets comparable to the melt droplets found in the Chicxulub ejecta curtain layer. Our model also predicts that melt droplets, melt fragments, and accretionary impact lapilli should be found together in well preserved ejecta curtain layers and that all three ejecta products can form even on airless bodies that lack significant volatile content. This prediction agrees with observations of ejecta from the Sudbury and Chicxulub impacts as well as the presence of accretionary impact lapilli in lunar breccia.
机译:我们提出了一个模型,该模型描述了超高速冲击过程中熔滴,熔体碎片和增生冲击青金石的形成。使用iSALE液压代码,再结合二氧化硅的ANEOS状态方程,我们创建了高分辨率的二维冲击模型来跟踪冲击喷射的运动。然后,我们使用简单的分析表达式和从我们的水力代码模型获得的信息来估算喷射产品的尺寸。最终,我们的模型可以预测喷射产品的大小如何取决于撞击器的大小,撞击速度和喷射速度。通常,我们发现较大的撞击器尺寸会导致较大的喷射器产品,而较高的喷射速度会导致较小的喷射器产品尺寸。我们发现,直径为10 km的撞击器以20 km / s的速度撞击时,会产生毫米级的熔滴,可与在Chicxulub喷射幕布层中发现的熔滴相比。我们的模型还预测,应在保存完好的喷射器幕帘层中一起发现熔滴,熔体碎片和增生冲击性lapilli,并且即使没有明显挥发分的无空气物体,所有三种喷射器产品也可以形成。这一预测与从萨德伯里和奇克卢布撞击中喷出的观测结果以及月球角砾岩中增生性撞击青霉的存在相符。

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