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Nonlinear constitutive equations derived for fluids obeying an ideal gas, a Tait-Kirkwood or a B/A type equation of state

机译:用于遵守理想气体的流体的非线性本构方程,胫骨kirkwood或B / A类型方程的流体

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A generalized theoretical framework for acoustic, electromagnetic and elastodynamic waves would give fruitful insights into equivalent phenomena in these physical domains and would form a basis to draw up general analytical or numerical solution methods. In this contribution we adopt the structure of Maxwell's equations for electromagnetic fields, encompassing the formulation of two first-order field equations and two first-order constitutive equations, and we apply it to the area of nonlinear acoustics. We derive the constitutive equations of a fluid directly from its thermodynamic equation of state (EOS). In the constitutive equations, the nonlinear medium behaviour of the fluid is described by a pressure-dependent density and compressibility. The resulting equations are general, making them valid for phenomena occuring in applications with finite amplitude waves of any magnitude, like waveform distortion or radiation pressure. This paper concerns with obtaining constitutive equations for fluids obeying an ideal gas law, a Tait-Kirkwood EOS or a 2-term Taylor approximation of the EOS employing the B/A nonlinearity parameter. The latter EOS is used in many of the classical model equations of nonlinear acoustics. We show that all three types result in simple expressions for the density and compressibility.
机译:为声波,电磁波和弹性动力波的广义理论框架会给卓有成效见解在这些物理域等效现象和将形成基础制定一般分析或数值解的方法。在这方面的贡献,我们采用麦克斯韦方程对电磁场的结构,包含两个第一阶场方程和两个一阶本构方程的制定,我们把它应用到非线性声学领域。我们直接从状态(EOS)的热力学方程导出流体的本构方程。在本构方程,流体的非线性介质行为是由压力依赖性密度和可压缩性说明。将得到的方程是一般,这使得它们适用于现象与任何大小的有限振幅波,像波形失真或辐射压力的应用存在的。本文关注与取得的本构方程用于流体服从理想气体定律,一个大吉-Kirkwood的EOS或采用B / A的非线性参数的EOS的2-术语泰勒近似。后者EOS在许多非线性声学的经典模型方程的使用。我们发现,所有三种类型导致的密度和可压缩简单的表达式。

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