Rényi Thermodynamics as a Mandatory Supporting Basis for Adequate Modeling of the Evolution of a Protoplanetary Gas-Dust Disk with a Fractal Structure

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
A. V. Kolesnichenko
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Abstract

In the context of the problem of mathematical modeling of the processes of formation of protoplanetesimals in the Solar protoplanetary disk, taking into account fractal concepts about the properties of dispersed dust aggregates in the disk medium, in the paper, on the basis of the parametric Rényi entropy, statistical thermodynamics for nonextensive fractal systems has been constructed and its properties have been determined. It has been established that between the Rényi thermodynamics of nonextensive systems, on the one hand, and the technique of obtaining fractal and multifractal dimensions, based on geometry and stochastics, on the other hand, there is a close relationship. It has been shown that the time evolution of a closed thermodynamic systems to the equilibrium state depends on the sign of the deformation parameter, which is a measure of the nonextensiveness of the fractal system. Various options for constructing fractal dimensions of different orders for fractals and multifractals were discussed and their features have been analyzed. The developed approach allows, from a unified position based on generalized hydrodynamics with fractional derivatives and thermodynamics for fractal media, to model the evolution of cosmological and cosmogonic objects from galaxies and gas-dust astrophysical disks to cosmic dust, a specific feature of which is the remoteness and globality of force interactions between elements of the system, the hierarchy (usually multifractality) of geometric and phase spaces, a large range of spatio-temporal correlations, as well as the presence of asymptotically power statistical distributions.

Abstract Image

针对太阳原行星盘中原行星形成过程的数学建模问题,考虑到有关行星盘介质中分散尘埃聚集体性质的分形概念,本文在参数雷尼熵的基础上,构建了非广延性分形系统的统计热力学,并确定了其性质。研究证实,非广延性系统的雷尼热力学与基于几何和随机技术的分形和多分形维度的获取技术之间存在密切关系。研究表明,封闭热力学系统到达平衡态的时间演化取决于变形参数的符号,而变形参数是分形系统非广延性的度量。讨论了为分形和多分形构建不同阶分形维度的各种方案,并分析了它们的特征。基于分形介质的分形导数和热力学的广义流体力学的统一立场,所开发的方法可以模拟从星系、气体尘埃天体物理盘到宇宙尘埃的宇宙学和宇宙天体的演化、这些模型的一个具体特点是系统元素之间的力相互作用的遥远性和全局性、几何空间和相空间的层次性(通常是多分形)、大量的时空相关性以及渐近幂统计分布的存在。
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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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