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Applications of the OpenCAL scientific library in the context of CFD: Applications to debris flows

机译:CFD中OpenCAL科学库的应用:泥石流的应用

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We here present computational results as performed by the new OpenCAL scientific library for seamless implementation of models referred to Computational Fluid Dynamics (CFD). In particular, OpenCAL allows for the straightforward definition of Cellular Automata- and Finite Differences-based simulation models of complex systems, by also supporting Extended Cellular Automata and all those computing paradigms based on regular computational grids. Two different parallel implementations are presented, which permit to exploit both multi-core CPUs on shared memory computers, and a wide range of heterogeneous devices like GPUs and other many-core coprocessors. Experiments, referred to a well-known cellular automata, namely the SCIDDICA S model for landslide simulation, exhibit good scalability, and numerical correctness and efficiency have been assessed on both multi-core CPUs and different many-core coprocessors. The good performances that were achieved in all benchmarks confirm the library's suitability for model development of complex systems and their execution on parallel heterogeneous computational devices.
机译:我们在这里介绍由新的OpenCAL科学库执行的计算结果,以无缝实施称为计算流体动力学(CFD)的模型。特别是,OpenCAL还支持扩展的细胞自动机和所有基于常规计算网格的计算范例,从而可以直接定义复杂系统的基于细胞自动机和有限差分的仿真模型。提出了两种不同的并行实现,这些实现既可以利用共享存储计算机上的多核CPU,又可以利用各种各样的异构设备,例如GPU和其他多核协处理器。实验被称为众所周知的细胞自动机,即用于滑坡模拟的SCIDDICA S模型,具有良好的可扩展性,并且已经在多核CPU和不同的多核协处理器上评估了数值的正确性和效率。在所有基准测试中均取得的良好性能证实了该库适用于复杂系统的模型开发以及它们在并行异构计算设备上的执行。

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