激波诱导的介粒子和湍流的发生

T. Khantuleva, Y. Meshcheryakov
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引用次数: 1

摘要

基于开放系统中高度非平衡过程的非局部建模,发展了一种描述凝聚态湍流运动的新方法,同时进行了研究动态变形固体细观结构的实验。在实时记录的传播波形中,冲击诱导的介观结构形成允许定性和定量地揭示非平衡过程的瞬态阶段。在非平衡统计物理中得到的非局部和延迟输运方程的基础上,提出了一种新的非局部方法来描述湍流的发生。在该方法中,过渡到湍流的原因是非平衡时空相关函数在中尺度上以有限大小簇的形式产生动态结构,具有几乎相同的宏观密度值,几乎可以作为可以相互作用和旋转的固体颗粒移动。撞击时时空相关性的破碎形成了以不同速度移动并传递质量、动量和类似能量的波包的介粒子。在两个尺度上同时记录的运动表明它们之间的能量交换。它的描述需要重新定义远离局部热力学平衡的能量概念。实验结果表明,动态细观结构的不可逆部分仍以新的缺陷形式冻结成材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shock-Induced Mesoparticles and Turbulence Occurrence
The development of a new approach to describe turbulent motions in condensed matter on the basis of nonlocal modeling of highly non-equilibrium processes in open systems is performed in parallel with an experiment studying the mesostructure of dynamically deformed solids. The shock-induced mesostructure formation inside the propagating waveform registered in real time allows the transient stages of non-equilibrium processes to be qualitatively and quantitatively revealed. A new nonlocal approach, developed on the basis of the nonlocal and retarded transport equations obtained within the non-equilibrium statistical physics, is used to describe the occurrence of turbulence. Within the approach, the reason for the transition to turbulence is that the non-equilibrium spatiotemporal correlation function generates the dynamic structures in the form of finite-size clusters on the mesoscale, with almost identical values of macroscopic densities moving as almost solid particles that can interact and rotate. The fragmentation of spatiotemporal correlations upon impact forms the mesoparticles that move at different speeds and transfer mass, momentum and energy-like wave packets. The movements recorded simultaneously at two scale levels indicate the energy exchange between them. Its description required a redefinition of the concept of energy far from local thermodynamic equilibrium. The experimental results show that the irreversible part of the dynamic mesostructure remains frozen into material as a new defect.
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