连续介质力学的基本假设及其行形成原理表

IF 0.5 4区 工程技术 Q4 MECHANICS
D.V. Georgievskii
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引用次数: 0

摘要

连续介质力学的单一积分形式的公设写成一定数量的变化规律(守恒),用公设表表示。假设在连续介质中,发生纯力学和各种非力学相互作用,这些相互作用由标量、矢量和二阶张量的能量共轭对来描述,其中一个描述过程,另一个定义环境对该过程的响应。公设表的前三行用来构造第四行和第五行,这两行对应于内能的变化规律,在热力学对的情况下,“温度-熵”与熵是一致的。结果表明,在公设表的第四和第五行中,对源、边界通量和产生的赋值实际上使这些行定义。推广了非等温力学中用于建立连接各类型相互作用的依赖和独立状态变量的本构关系的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TABLE OF POSTULATES OF CONTINUUM MECHANICS AND PRINCIPLES OF FORMING ITS ROWS

The single integral form of the postulates of continuum mechanics written as laws of change (conservation) of certain quantities is represented as a table of postulates. It is assumed that in a continuous medium, both purely mechanical and various non-mechanical interactions occur, which are described by scalar, vector, and second-rank tensor energetically conjugate pairs of quantities, one of which characterizes a process and the other defines the response of the environment to this process. The first three rows of the table of postulates are used to construct the fourth and fifth rows corresponding to the laws of change of internal energy and the quantity that, in the case of the thermodynamic pair “temperature–entropy" coincides with entropy. It is shown that the assignment of sources, fluxes through the boundary, and productions in the fourth and fifth rows of the table of postulates actually makes these rows definitions. The principles used in nonisothermal mechanics to construct constitutive relations linking dependent and independent state variables for each type of interaction are generalized.

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来源期刊
CiteScore
1.20
自引率
16.70%
发文量
43
审稿时长
4-8 weeks
期刊介绍: Journal of Applied Mechanics and Technical Physics is a journal published in collaboration with the Siberian Branch of the Russian Academy of Sciences. The Journal presents papers on fluid mechanics and applied physics. Each issue contains valuable contributions on hypersonic flows; boundary layer theory; turbulence and hydrodynamic stability; free boundary flows; plasma physics; shock waves; explosives and detonation processes; combustion theory; multiphase flows; heat and mass transfer; composite materials and thermal properties of new materials, plasticity, creep, and failure.
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