Computational experiment in era of HPC

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In this note we discuss the impact of development of architecture and technology of parallel computing on the typical life-cycle of the computational experiment. In particular, it is argued that development and installation of high-performance computing systems is indeed important itself regardless of specific scientific tasks, since the presence of cutting-age HPC systems within an academic infrastructure gives wide possibilities and stimulates new researches.

Sobre autores

Alexander Ayriyan

Joint Institute for Nuclear Research; Computational Physics and IT Division A. I. Alikhanyan National Science Laboratory

Autor responsável pela correspondência
Email: ayriyan@jinr.ru

Researcher of the Laboratory of Information Technologies, Joint Institute for Nuclear Research (Dubna, Russia), and Computational Physics and IT Division, A. I. Alikhanyan National Science Laboratory (Yerevan, Armenia)

6 Joliot-Curie St., Dubna, Moscow Region 141980, Russian Federation; A. I. Alikhanyan National Science Laboratory, Yerevan, Armenia

Bibliografia

  1. “Mathematical modeling and computational experiment [Matematicheskoye modelirovaniye i vychislitel’nyy eksperiment],” Bulletin of USSR Academy of Science [Vestnik AN SSSR], vol. 49, no. 5, A. A. Samarsky, Ed., pp. 38-49, 1979, in Russian.
  2. “Computational experiment in technology problems [Vychislitel’nyy eksperiment v zadachakh tekhnologii],” Bulletin of USSR Academy of Science [Vestnik AN SSSR], vol. 54, no. 3, A. A. Samarsky, Ed., pp. 77- 88, 1984, in Russian.
  3. M. M. Gorbunov-Posadov, Extensible programs [Rasshiryayemyye programmy]. Moscow: Polyptych, 1999, in Russian.
  4. HybriLIT group. (2019). Heterogeneous platform “HybriLIT”, [Online]. Available: http://hlit.jinr.ru/en/.
  5. G. Adam et al., “IT-ecosystem of the HybriLIT heterogeneous platform for high-performance computing and training of IT-specialists,” English, in CEUR Workshop Proceedings, V. Korenkov, A. Nechaevskiy, T. Zaikina, and E. Mazhitova, Eds., vol. 2267, 2018, pp. 638-644.
  6. A. Ayriyan, J. Buša Jr., H. Grigorian, and E. E. Donets, “Solving the optimization problem for designing a pulsed cryogenic cell,” Physics of Particles and Nuclei Letters, vol. 16, no. 5, pp. 300-309, 2019. doi: 10.1134/S1547477119030026.

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