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Direct numerical simulations of reacting flows with detailed chemistry using many-core/GPU acceleration

机译:用许多核/ GPU加速度与详细化学反应流动的直接数值模拟

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A new direct numerical simulation (DNS) code for multi-component gaseous reacting flows has been developed at KAUST, with the state-of-the-art programming model for next generation high performance computing platforms. The code, named KAUST Adaptive Reacting Flows Solver (KARFS), employs the MPI+X programming, and relies on Kokkos for “X” for performance portability to multi-core, many-core and GPUs, providing innovative software development while maintaining backward compatibility with established parallel models and legacy code. The capability and potential of KARFS to perform DNS of reacting flows with large, detailed reaction mechanisms is demonstrated with various model problems involving ignition and turbulent flame propagations with varying degrees of chemical complexities.
机译:在KAURY中开发了一种新的直接数值模拟(DNS)代码,用于多组分气体反应流量,用于下一代高性能计算平台的最先进的编程模型。 代码,命名为KAUST自适应反应流程求解器(KARF),采用MPI + X编程,并依赖于KokkoS的“X”,以实现对多核,许多核心和GPU的性能便携性,提供创新的软件开发,同时保持向后兼容性 具有既定的并行模型和遗留代码。 KARF的能力和潜力执行具有大的反应流动的反应流动的DNS,并以涉及点火和湍流火焰传播的各种模型问题,具有不同程度的化学复杂性。

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