行星和实验室尺度下地质物质激波压缩中的波结构

IF 11.3 1区 地球科学 Q1 ASTRONOMY & ASTROPHYSICS
Dennis Grady
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引用次数: 0

摘要

地质物质在遭受大规模撞击或爆炸时的反应取决于周围冲击波的时程。激波引起的局部物理和化学转变动力学响应于这一时间历史。介质的固体粘度是建立激波时程的原因。2003年,研究人员H. Jay Melosh认识到有必要了解岩石学和岩性尺度上的固体粘度,因此,他对可用的核地面冲击测量进行了评估和分析。这篇评论进一步推动了米洛什史诗般的努力。在研究核地面冲击数据和辅助实验室测试数据时,它采用了在各自尺度上确定和计算固体材料粘度的方法。此外,粘弹性模型在关注尺度上的冲击响应建模中的适用性得到了证明和应用。最后讨论了固体材料中激波黏性时程的普遍特征。提出了固体粘度作为绝热不变量,并指出了固体激波与海浪非线性动力学的共性。▪本文回顾了Melosh对核地面冲击测量的分析,并将其应用于冲击波结构粘度。■讨论了粘弹性计算在脆性颗粒固体中核地面冲击和实验室冲击波波结构中的应用,并考虑了粘性冲击波结构的普遍特征和耗散作用的不变性。▪它还讨论了海浪的非线性动力学和固体物质中激波的稳定波结构中的波作用不变性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wave Structuring in the Shock Compression of Geologic Matter at the Planetary and Laboratory Scales
The response of geologic matter when subjected to large-scale impact or explosion is dependent on the time history of the encompassing shock wave. The kinetics of localized physical and chemical transitions brought about by the shock wave are responsive to this time history. Solid-state viscosity of the media is responsible for establishing the time history of a shock wave. In 2003, researcher H. Jay Melosh recognized the need for an understanding of solid viscosity spanning the petrologic and lithologic scales, and accordingly, he undertook the assessment and analysis of available nuclear ground shock measurements. This review furthers Melosh's epic efforts. In pursuing both the nuclear ground shock data and supporting laboratory test data, it undertakes methods for determining and calculations of the viscosity of solid materials on the respective scales. Further, applicability of viscoelasticity in modeling the shock response on the scales of concern is demonstrated and applied. The review closes with a discussion of universal features of the shock wave viscous time history in solid materials. Solid viscosity as an adiabatic invariant is presented, and commonalties of the solid shock wave with the nonlinear dynamics of ocean waves are noted. This article reviews Melosh's analysis of nuclear ground shock measurements with application to shock wave structuring viscosity. It discusses viscoelastic calculations with application to wave structure of nuclear ground shocks and laboratory shock waves in brittle granular solids, and universal features of the viscous shock wave structure and invariance of the dissipative action are considered. It also discusses wave action invariance in both the nonlinear dynamics of ocean waves and the steady wave structure of shock waves in solid matter.
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来源期刊
Annual Review of Earth and Planetary Sciences
Annual Review of Earth and Planetary Sciences 地学天文-地球科学综合
CiteScore
25.10
自引率
0.00%
发文量
25
期刊介绍: Since its establishment in 1973, the Annual Review of Earth and Planetary Sciences has been dedicated to providing comprehensive coverage of advancements in the field. This esteemed publication examines various aspects of earth and planetary sciences, encompassing climate, environment, geological hazards, planet formation, and the evolution of life. To ensure wider accessibility, the latest volume of the journal has transitioned from a gated model to open access through the Subscribe to Open program by Annual Reviews. Consequently, all articles published in this volume are now available under the Creative Commons Attribution (CC BY) license.
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