论文标题
冲击速度和角度对变形加热和影响后温度的影响
Effect of impact velocity and angle on deformational heating and post-impact temperature
论文作者
论文摘要
陨石中影响诱发的冲击热的记录是理解太阳系碰撞历史的重要关键。材料强度对于冲击加热很重要,但是冲击角度和冲击速度对剪切加热的影响仍然很少了解。在这里,我们报告了三维倾斜冲击模拟,该模拟确认了由于材料强度而增加的加热并探索冲击角度和冲击速度的影响。我们发现,倾斜的撞击角度的冲击角度比45度更陡峭的撞击角产生的加热质量与垂直冲击相似。另一方面,与陡峭的角度相比,放牧的影响会产生较少的加热质量和较小的加热区域。我们得出了加热质量的经验公式,这是冲击角度和速度的函数。该公式可用于估计发生的影响条件(速度和角度),并导致陨石母体的AR损失。此外,我们的结果表明,在较高影响速度下的放牧影响可能会产生与较低速度下的垂直影响相似的加热材料。由于放牧影响产生的加热材料的压力远低于垂直影响加热的材料,因此我们的结果表明,放牧影响可能会产生弱冲击加热的陨石。
The record of impact induced shock-heating in meteorites is an important key for understanding the collisional history of the solar system. Material strength is important for impact heating, but the effect of impact angle and impact velocity on shear heating remains poorly understood. Here, we report three-dimensional oblique impact simulations, which confirm the enhanced heating due to material strength and explore the effects of impact angle and impact velocity. We find that oblique impacts with an impact angle that is steeper than 45 degree produce a similar amount of heated mass as vertical impacts. On the other hand, grazing impacts produce less heated mass and smaller heated regions compared to impacts at steeper angles. We derive an empirical formula of the heated mass, as a function of the impact angle and velocity. This formula can be used to estimate the impact conditions (velocity and angle) that had occurred and caused Ar loss in the meteoritic parent bodies. Furthermore, our results indicate that grazing impacts at higher impact velocities could generate a similar amount of heated material as vertical impacts at lower velocities. As the heated material produced by grazing impacts has experienced lower pressure than the material heated by vertical impacts, our results imply that grazing impacts may produce weakly shock-heated meteorites.