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首页> 外文期刊>Physical review letters >Non-Newtonian Granular Hydrodynamics. What Do the Inelastic Simple Shear Flow and the Elastic Fourier Flow Have in Common?
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Non-Newtonian Granular Hydrodynamics. What Do the Inelastic Simple Shear Flow and the Elastic Fourier Flow Have in Common?

机译:非牛顿颗粒流体动力学。非弹性简单剪切流和弹性傅立叶流有什么共同点?

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摘要

We describe a special class of steady Couette flows in dilute granular gases admitting a non-Newtonian hydrodynamic description for strong dissipation. The class occurs when viscous heating exactly balances inelastic cooling, resulting in a uniform heat flux. It includes the Fourier flow of ordinary gases and the simple or uniform shear flow (USF) of granular gases as special cases. The rheological functions have the same values as in the USF and generalized thermal conductivity coefficients can be identified. These points are confirmed by molecular dynamics simulations, Monte Carlo simulations of the Boltzmann equation, and analytical results from Grad's 13-moment method.
机译:我们描述了稀颗粒气体中的一类特殊的稳态Couette流,该流允许采用非牛顿流体动力学描述来进行强耗散。当粘性加热恰好平衡了非弹性冷却并导致均匀的热通量时,就会出现此类情况。作为特殊情况,它包括普通气体的傅立叶流和颗粒气体的简单或均匀剪切流(USF)。流变函数的值与USF中的值相同,可以识别出广义的导热系数。分子动力学模拟,玻尔兹曼方程的蒙特卡洛模拟以及Grad的13矩方法的分析结果证实了这些观点。

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