小行星在大气层中的破坏导致金星上的撞击结构

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS Solar System Research Pub Date : 2024-05-20 DOI:10.1134/s0038094623700089
V. V. Shuvalov, B. A. Ivanov
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引用次数: 0

摘要

摘要--金星厚厚的大气层能够摧毁小行星等千米大小的天体,在表面形成各种痕迹。较大的宇宙天体能够到达地表,形成撞击坑或陨石坑扩散场,而较小的天体则能有效地将初始动能转移到大气层中,在一定高度形成 "大气爆炸"。在这些情况下,金星表面上最明显的痕迹是由大气冲击波和冲击波前沿后方的气体流从固体表面反射造成的。在大气层中碎裂但到达地表的撞击物的过渡尺寸会产生陨石坑群。论文首次提出了金星大气层中岩质小行星破坏的三维计算结果,表明与简单的二维轴对称计算有显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Impact Structures on Venus as a Result of Asteroid Destruction in the Atmosphere

Abstract

Venus’ thick atmosphere is capable of destroying kilometer-sized bodies such as asteroids, creating various types of traces on the surface. While larger cosmic bodies are able to reach the surface, creating impact craters or crater dispersion fields, smaller bodies effectively transfer the initial kinetic energy into the atmosphere, resulting in an “atmospheric explosion” at some altitude. In these cases, the most visible marks on the surface of Venus are created by atmospheric shock waves and the flow of gas behind the shock fronts reflected from the solid surface. The transitional sizes of impactors that break up in the atmosphere but reach the surface give rise to clusters of craters. The paper presents the first results of three-dimensional calculations of the destruction of rocky asteroids in the atmosphere of Venus, indicating significant differences from simple two-dimensional axisymmetric calculations.

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来源期刊
Solar System Research
Solar System Research 地学天文-天文与天体物理
CiteScore
1.60
自引率
33.30%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Solar System Research publishes articles concerning the bodies of the Solar System, i.e., planets and their satellites, asteroids, comets, meteoric substances, and cosmic dust. The articles consider physics, dynamics and composition of these bodies, and techniques of their exploration. The journal addresses the problems of comparative planetology, physics of the planetary atmospheres and interiors, cosmochemistry, as well as planetary plasma environment and heliosphere, specifically those related to solar-planetary interactions. Attention is paid to studies of exoplanets and complex problems of the origin and evolution of planetary systems including the solar system, based on the results of astronomical observations, laboratory studies of meteorites, relevant theoretical approaches and mathematical modeling. Alongside with the original results of experimental and theoretical studies, the journal publishes scientific reviews in the field of planetary exploration, and notes on observational results.
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