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Stress Waves in Polymeric Fluids

Stress Waves in Polymeric Fluids
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摘要 This paper demonstrates the existence, propagation, transmission, reflection, and interaction of deviatoric stress waves in polymeric fluids for which the mathematical models are derived using conservation and balance laws (CBL) of Classical Continuum Mechanics (CCM) and the constitutive theories are based on the entropy inequality and representation theorem. The physical mechanisms of deformation in polymeric liquids that enable the stress wave physics are identified and are demonstrated to be valid using Maxwell, Oldroyd-B, and Giesekus polymeric fluids, and are illustrated using model problem studies. We assume polymeric fluids to be isotropic and homogeneous at the macro scale so that the CBL of the CCM can be used to derive their mathematical models. For simplicity, we assume the polymeric fluids to be incompressible in the present work. This paper demonstrates the existence, propagation, transmission, reflection, and interaction of deviatoric stress waves in polymeric fluids for which the mathematical models are derived using conservation and balance laws (CBL) of Classical Continuum Mechanics (CCM) and the constitutive theories are based on the entropy inequality and representation theorem. The physical mechanisms of deformation in polymeric liquids that enable the stress wave physics are identified and are demonstrated to be valid using Maxwell, Oldroyd-B, and Giesekus polymeric fluids, and are illustrated using model problem studies. We assume polymeric fluids to be isotropic and homogeneous at the macro scale so that the CBL of the CCM can be used to derive their mathematical models. For simplicity, we assume the polymeric fluids to be incompressible in the present work.
作者 Karan S. Surana Michael D. Kitchen Karan S. Surana;Michael D. Kitchen(Mechanical Engineering, University of Kansas, Lawrence, Kansas, USA)
机构地区 Mechanical Engineering
出处 《American Journal of Computational Mathematics》 2022年第1期87-118,共32页 美国计算数学期刊(英文)
关键词 Classical Continuum Theory Viscoelastic Fluids Polymeric Liquids Stress Waves MEMORY RHEOLOGY Classical Continuum Theory Viscoelastic Fluids Polymeric Liquids Stress Waves Memory Rheology
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