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国家自然科学基金(10476007)

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相关作者:田荣刚孙久勋薛新英更多>>
相关机构:电子科技大学更多>>
发文基金:国家自然科学基金更多>>
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广义Morse流体解析状态方程及对氮的应用(英文)
2009年
根据Ross变分微扰理论以及硬球流体Percus-Yevick(PY)径向分布函数表达式,建立了广义Morse势流体的解析状态方程。与模拟结果的比较一方面证实了广义Morse势模型的合理性;另一方面表明了解析Ross变分微扰理论的精度相当或略好于非解析的Weeks-Chandler-Anderson(mWCA)理论,而优于复杂的优化超网络链积分方程理论(RHNC)。该解析状态方程被应用于拟合处于环境温度和压强小于1 GPa情形流体氮的实验数据,所得到的势能参数被用于预测高温高密度情形氮流体的压强,预测结果证实,该解析状态方程可以很好地适用于较宽的压强和温度范围。
薛新英孙久勋田荣刚
关键词:热力学量解析性变分
Analysis of equation of state and thermodynamic functions for trans-decahydronaphthalene up to 200 MPa and 446 K
2009年
This paper develops a modified Tait equation of state(EOS) for trans-decahydronaphthalene with four parameters A,B,V0 and P0 being treated as linear functions of temperature.The coefficients contained in these functions are determined through fitting the experimental compression data in the literature between 293 K and 446 K and at pressures from 10 to 200 MPa.Expressions for the thermal expansivity,isothermal compressibility and thermodynamic quantities are deduced and the numerical results are analytically derived.The numerical results show that the precision of the modified Tait EOS developed in this paper is superior to the EOS in the literature.
李明陈翠玲孙久勋田荣刚肖剑荣
关键词:热力学函数反分析MPA等温压缩
Analytic equation of state for solids with multi-exponential potential based on analytic mean field potential approach and applied to the epsilon phase of solid oxygen
2008年
The thermodynamic properties of the ε phase of solid oxygen are studied by using the analytic mean field approach (AMFP). Analytic expressions for the Helmholtz free energy, internal energy and equation of state of solid oxygen have been derived based on the multi-exponential potential. The formulism for the case of double-exponential (DE) model is applied to the ε phase of solid oxygen. Its four potential parameters are determined through fitting the experimental compression data of the ε phase of solid oxygen. Numerical results of the pressure dependence of the volume calculated by using the AMFP are in good agreement with the original experimental data. This suggests that the AMFP is a useful approach to study the thermodynamic properties of the ε phase of solid oxygen. Furthermore, we predict the variation of the volume, lattice parameters and intermolecular distances with pressure, and some thermodynamic quantities versus volume, at several higher temperatures.
王立国孙久勋杨维
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