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首页> 外文期刊>European physical journal >Comparing the first- and second-order theories of?relativistic?dissipative fluid dynamics using the?1+1?dimensional relativistic flux corrected transport algorithm
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Comparing the first- and second-order theories of?relativistic?dissipative fluid dynamics using the?1+1?dimensional relativistic flux corrected transport algorithm

机译:使用“ 1 + 1”维相对论通量校正输运算法比较“相对论”耗散流体动力学的一阶和二阶理论

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Focusing on the numerical aspects and accuracy we study a class of bulk viscosity driven expansion scenarios using the relativistic Navier–Stokes and truncated Israel–Stewart form of the equations of relativistic dissipative fluids in 1+1 dimensions. The numerical calculations of conservation and transport equations are performed using the numerical framework of flux corrected transport. We show that the results of the Israel–Stewart causal fluid dynamics are numerically much more stable and smoother than the results of the standard relativistic Navier–Stokes equations.
机译:关注数值方面和精度,我们使用相对论性耗散流体方程的相对论性Navier-Stokes和截断的Israel-Stewart形式研究了一类由体积粘度驱动的膨胀方案,其尺寸为1 + 1。守恒和输运方程的数值计算是使用通量校正输运的数值框架进行的。我们表明,以色列-斯图尔特因果流体动力学的结果在数值上比标准的相对论纳维尔-斯托克斯方程式的结果更稳定和更平滑。

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