New computer program for three-dimensional relativistic hydrodynamical model

D. Kikoła, W. Peryt, Y. Sinyukov, M. Slodkowski, M. Szuba
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引用次数: 1

Abstract

An effective computer program for three-dimensional relativistic hydrodynamical model has been developed. It implements a new approach to the early hot phase of relativistic heavy-ion collisions. The computer program simulates time-space evolution of nuclear matter in terms of ideal-fluid dynamics. Equations of motions of hydrodynamics are solved making use of finite difference methods. Commonly-used algorithms of numerical relativistic hydrodynamics RHLLE and MUSTA-FORCE have been applied in simulations. To speed-up calculations, parallel processing has been made available for solving hydrodynamical equations. The test results of simulations for 3D, 2D and Bjorken expansion are reported in this paper. As a next step we plan to implement the hadronization algorithm by implementing the continuous particle emission for freeze-out and comparing it with Cooper-Frye formula.
三维相对论流体力学模型的新计算机程序
开发了一个有效的三维相对论流体力学模型计算程序。它实现了一种研究相对论性重离子碰撞早期热相的新方法。该计算机程序以理想流体动力学的方式模拟核物质的时空演化。用有限差分法求解了流体力学运动方程。常用的数值相对论流体力学算法RHLLE和MUSTA-FORCE在模拟中得到了应用。为了加快计算速度,并行处理已被用于求解流体动力学方程。本文报道了三维、二维和比约肯展开的模拟试验结果。下一步,我们计划通过实现冻结的连续粒子发射来实现强子化算法,并将其与Cooper-Frye公式进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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