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基于比热的完全物态方程∗

范小兵 陈俊祥 向士凯

物理学报2016,Vol.65Issue(23):236401-1-236401-6,6.
物理学报2016,Vol.65Issue(23):236401-1-236401-6,6.DOI:10.7498/aps.65.236401

基于比热的完全物态方程∗

Complete equation of state based on sp ecific heat

范小兵 1陈俊祥 1向士凯1

作者信息

  • 1. 中国工程物理研究院流体物理研究所,冲击波物理与爆轰物理重点实验室,绵阳 621999
  • 折叠

摘要

Abstract

In thermodynamics, the complete equation of state (EOS) for closed system is a functional relation defined by two independent state variables, and all other thermodynamic relations can be deduced by it. For example, Helmholtz free energy F as a function of specific volume v and temperature T of the system is a complete EOS. Unfortunately, the concrete expressions of these complete EOSs are unavailable. Here we establish a practical form of the complete EOS based on the pressure function pT (v) and constant-volume specific heat function Cv(v, T ) This complete EOS is mathematically equivalent to the Helmholtz free energy F . Here pT (v) is determined by the measurement and Cv(v, T ) can be expressed by two parts. One part is the lattice contribution based on the Debye model and the other part is electronic contribution obtained from the free electron model. Using this complete EOS we calculate the isothermal equation for six metals from the Hugoniot data. Good agreement between the isothermal equation and the experimental data verifies the reliability of the complete EOS. Through this complete EOS we can derive the concrete expression of physical parameters, and these physical parameters including the volume expansion coefficient, the volume speed of sound, the adiabatic modulus, and W-J coefficient are calculated by using the experimental data of Cu. Analyzing their variation trends we can timely adjust parameter in the calculation of the EOS. This kind of complete EOS is useful in the field of high temperature and high pressure physics.

关键词

定容比热/完全物态方程/热力学量

Key words

specific heat/complete equation of state/thermodynamic quantity

引用本文复制引用

范小兵,陈俊祥,向士凯..基于比热的完全物态方程∗[J].物理学报,2016,65(23):236401-1-236401-6,6.

基金项目

中国工程物理研究院科学技术发展基金(批准号:2015B0101004)和冲击波与爆轰物理重点实验室基金(批准号:9140C670201140C67282)资助的课题 (批准号:2015B0101004)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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