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Ultrasonic study on organic liquid and binary organic liquid mixtures by using Schaaffs' collision factor theory 被引量:1
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作者 卢义刚 董彦武 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第9期2030-2035,共6页
Based on Schaaff's collision factor theory (CFT) in liquids, the equations for nonlinear ultrasonic parameters in both organic liquid and binary organic liquid mixtures are deduced. The nonlinear ultrasonic paramet... Based on Schaaff's collision factor theory (CFT) in liquids, the equations for nonlinear ultrasonic parameters in both organic liquid and binary organic liquid mixtures are deduced. The nonlinear ultrasonic parameters, including pressure coefficient, temperature coefficients of ultrasonic velocity, and nonlinear acoustic parameter B/A in both organic liquid and binary organic liquid mixtures, are evaluated for comparison with the measured results and data from other sources. The equations show that the coefficient of ultrasonic velocity and nonlinear acoustic parameter B/A are closely related to molecular interactions. These nonlinear ultrasonic parameters reflect some information of internal structure and outside status of the medium or mixtures. From the exponent of repulsive forces of the molecules, several thermodynamic parameters, pressure and temperature of the medium, the nonlinear ultrasonic parameters and ultrasonic nature of the medium can be evaluated. When evaluating and studying nonlinear acoustic parameter B/A of binary organic liquid mixtures, there is no need to know the nonlinear acoustic parameter B/A of the components. Obviously, the equation reveals the connection between the nonlinear ultrasonic nature and internal structure and outside status of the mixtures more directly and distinctly than traditional mixture law for B/A, e.g. Apfel's and Sehgal's laws for liquid binary mixtures. 展开更多
关键词 nonlinear acoustic parameter b/a coefficient of ultrasonic velocity organic liquid binary organic liquid mixtures
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Computation of the acoustic nonlinearity parameter in organic liquid binary mixtures 被引量:1
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作者 LU Yigang FENG Jinyuan +1 位作者 DONG Yanwu TONG Jie 《Chinese Science Bulletin》 SCIE EI CAS 2000年第5期414-417,共4页
Based on Jacobson’s molecular free length theory in liquids and the relationship between the ultrasonic velocity and the molecular free length in organic liquids, the equation of the acoustic nonlinearity parameter i... Based on Jacobson’s molecular free length theory in liquids and the relationship between the ultrasonic velocity and the molecular free length in organic liquids, the equation of the acoustic nonlinearity parameter in organic liquid binary mixtures is derived. The calculated values from the equation are in good agreement both with those from Apfel’s and from Sehgal’s mixture laws. 展开更多
关键词 acoustic nonlinearITY parameter b/a liquid binary mixtures organic liquids.
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多元有机混合液声速特性与非线性声参量B/A的数值计算
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作者 闫向宏 张亚萍 《计算物理》 CSCD 北大核心 2002年第6期507-511,共5页
根据Jacobson的液体分子自由程理论和液体声速与分子自由程的关系 ,推导出多元有机混合液声速的温度系数、压力系数和非线性声参量B/A的计算公式 ,并根据组成多元有机混合液各组分特性参量 (密度、自由程、非线性声参量B/A、等压膨胀系... 根据Jacobson的液体分子自由程理论和液体声速与分子自由程的关系 ,推导出多元有机混合液声速的温度系数、压力系数和非线性声参量B/A的计算公式 ,并根据组成多元有机混合液各组分特性参量 (密度、自由程、非线性声参量B/A、等压膨胀系数、等温压缩系数等 ) ,利用给出的公式对声速的温度系数、压力系数、非线性声参量B/A进行了数值计算 ,并将计算结果与实验结果进行了比较 . 展开更多
关键词 数值计算 声速特性 非线性声参量b/a 多元混合液 有机液 液体 分子自由程
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有机液及有机混合液非线性声参量表达式——基于声速-碰撞因子理论
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作者 卢义刚 张杨 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2005年第12期96-99,共4页
基于Schaaffs声速-碰撞因子理论,结合有关液体压力和温度对碰撞因子影响的研究结果,导出了有机液及有机混合液的非线性声参量表达式,该表达式给出了B/A参量与各组分的分子排斥力指数、热力学参量及外部温度、压力状态的关系.通过该表达... 基于Schaaffs声速-碰撞因子理论,结合有关液体压力和温度对碰撞因子影响的研究结果,导出了有机液及有机混合液的非线性声参量表达式,该表达式给出了B/A参量与各组分的分子排斥力指数、热力学参量及外部温度、压力状态的关系.通过该表达式,不需知道各组分的B/A参量便能够预测混合液的B/A参量,反之,通过测定混合液的B/A参量,可以了解混合液的内部结构信息. 展开更多
关键词 非线性声参量 声速 有机液 有机混合液 碰撞因子
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