The aim of this work is to construct efficient finite volume schemes for the numerical study of sediment transport in shallow water, in the framework of the Exner model.In most cases, the velocity related to the sediment is much lower that the fluid velocity, which, in turn, may be much lower that the free-surface wave speed. Explicit methods that resolve all waves require small time steps due to the CFL stability restriction because of fast surface waves. Furthermore, if Rusanov flux is adopted, slow sediment waves may be affected by the large numerical diffusion. The objective of the present work is to drastically improve the efficiency in the computation of the evolution of the sediment by treating water waves implicitly, thus allowing much larger time steps than the one required by fully explicit schemes. The goal is reached by suitably semi-implicit schemes obtained by the use of implicit-explicit Runge-Kutta methods.
翻译:这项工作的目的是在Exner模型的框架内,为浅水沉积物迁移的数字研究制定高效的有限量计划。 在多数情况下,与沉积物有关的速度要低得多,因为流体速度可能比自由地表波速度要低得多,而流体速度反过来可能比自由地表波速度要低得多。由于快速地表波的CFL稳定性限制,解决所有波的清晰方法需要小的时间步骤。此外,如果采用Rusanov通量,缓慢的沉积物波可能受到大量数字扩散的影响。目前工作的目标是通过暗中处理水波,从而大大提高沉积物演变的计算效率,从而允许比完全明确的计划所要求的步骤大得多的时间步骤。通过使用隐含的Runge-Kutta方法获得的适当的半隐含办法,从而达到这一目标。</s>