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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >A MUSTA-FORCE Algorithm for Solving Partial Differential Equations of Relativistic Hydrodynamics
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A MUSTA-FORCE Algorithm for Solving Partial Differential Equations of Relativistic Hydrodynamics

机译:一种求解相对论流体动力学的局部微分方程的Musta力算法

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摘要

Understanding event-by-event correlations and fluctuations is crucial for the comprehension of the dynamics of heavy ion collisions. Relativistic hydrodynamics is an elegant tool for modelling these phenomena; however, such simulations are time-consuming, and conventional CPU calculations are not suitable for event-by-event calculations. This work presents a feasibility study of a new hydrodynamic code that employs graphics processing units together with a general MUSTA-FORCE algorithm (Multi-Stage Riemann Algorithm – First-Order Centred Scheme) to deliver a high-performance yet universal tool for event-by-event hydrodynamic simulations. We also investigate the performance of selected slope limiters that reduce the amount of numeric oscillations and diffusion in the presence of strong discontinuities and shock waves. The numerical results are compared to the exact solutions to assess the code’s accuracy.
机译:理解逐次相关的相关性和波动对于理解重离子碰撞的动态至关重要。 相对论的流体动力学是一种优雅的工具,用于建模这些现象; 然而,这种模拟是耗时的,并且传统的CPU计算不适用于逐个事件计算。 这项工作提出了一种新的流体动力学代码的可行性研究,该新的流体动力学代码采用了图形处理单元以及通用的Musta-Force算法(多阶段Riemann算法 - 一阶中心方案)来为事件提供高性能但普遍的工具 - 亲戚流体动力模拟。 我们还调查所选择的斜坡限制器的性能,从而在强大的不连续性和冲击波存在下减少数字振荡和扩散量的性能。 将数值结果与精确的解决方案进行比较,以评估代码的准确性。

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