This paper presents some recent efforts carried out on the expansion of the scalability of TermoFluids multi-physics Computational Fluid Dynamics (CFD) code, aiming to achieve petascale capacity for a single simulation. We describe different aspects that we have improved in our code in order to efficiently run it on 131,072 CPU-cores. This work has been developed using the BlueGene/Q Mira supercomputer of the Argonne Leadership Computing Facility, where we have obtained feedback at the targeted scale. In summary, this is a practical paper showing our experience at reaching the petascale paradigm for a single simulation with TermoFluids.Peer ReviewedPostprint (author's final draft
The Petascale Simulation Initiative LDRD project began in May 2004 and ended in April 2007. The over...
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The Petascale Simulation Initiative LDRD project began in May 2004 and ended in April 2007. The over...
AbstractThe increased availability of modern embedded many-core architectures supporting floating- p...
Million-core supercomputers have become a reality in 2012 with LLNL's Sequoia supercomputer. Followi...
This paper presents some recent efforts carried out on the expansion of the scalability of TermoFlui...
After a decade where HEC (high-end computing) capability was dominated by the rapid pace of improvem...
Abstract. With teraflops-scale computational modeling expected to be routine by 2003-04, under the t...
Although the challenges to achieving petascale computing within the next decade are daunting, severa...
Since 2004, supercomputer growth hasbeen constrained by energy efficiency rather than raw hardware s...
We develop scalable algorithms and object-oriented code frameworks for terascale scientific simulati...
Scientific applications in nanoscience, combustion modeling, fusion energy simulations, climate mode...
AbstractThe execution of scientific codes will introdu ce a number of new challenges and intensify s...
We present the outline of a research project aimed at designing and constructing a hybrid computing ...
Computational fluid dynamics (CFD) is the main field of computational mechanics that has historicall...
The path to exascale computational fluid dynamics requires novel and disruptive hardware architectur...
This paper describes performance tuning experiences with a parallel CFD code to enhance its performa...
The Petascale Simulation Initiative LDRD project began in May 2004 and ended in April 2007. The over...
AbstractThe increased availability of modern embedded many-core architectures supporting floating- p...
Million-core supercomputers have become a reality in 2012 with LLNL's Sequoia supercomputer. Followi...