A Study on Parallel Optimization of Regional Ocean Model Using KISTI 5th Supercomputer Nurion System 


Vol. 47,  No. 1, pp. 1-10, Jan.  2020
10.5626/JOK.2020.47.1.1


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  Abstract

A parrallel optimiztion of the Regional Ocean Modeling system (ROMS) was conducted by analyzing the computational characteristics of the Knights Landing (KNL) system of Nurion, which is the fifth supercomputer at the Korea Institute of Science and Technology Information (KISTI). Although the KNL system comprises more than twice as many cores per node as the Skylake system, the performance of the KNL system is known to be about three times slower than that of Skylake system, when using the same number of cores. However, the KNL performance optimized for the ROMS model in Nurion is only about twice that of the Skylake system suggesting that the KNL system of Nurion is approximately 1.3-fold faster than the normal KNL system. In this study, two types of numerical experiments (ideal & real cases) were conducted to compare the computational capabilities of the KNL and SKL systems; The KNL system has more computational efficiency. The KNL system shows continuous improvement in performance even in maximum core experiments under both ideal and real case simulation, which is an advantage for the simulation of super parallel numerical calculation.


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  Cite this article

[IEEE Style]

D. Kim, C. Lim, M. Joh, J. An, I. Moon, S. Woo, "A Study on Parallel Optimization of Regional Ocean Model Using KISTI 5th Supercomputer Nurion System," Journal of KIISE, JOK, vol. 47, no. 1, pp. 1-10, 2020. DOI: 10.5626/JOK.2020.47.1.1.


[ACM Style]

Dong-Hoon Kim, Chaewook Lim, Min-Su Joh, Jooneun An, Il-Ju Moon, and Seung-Buhm Woo. 2020. A Study on Parallel Optimization of Regional Ocean Model Using KISTI 5th Supercomputer Nurion System. Journal of KIISE, JOK, 47, 1, (2020), 1-10. DOI: 10.5626/JOK.2020.47.1.1.


[KCI Style]

김동훈, 임채욱, 조민수, 안준언, 문일주, 우승범, "KISTI 슈퍼컴퓨터 5호기 누리온 시스템을 이용한 지역해양모델의 병렬 최적화 연구," 한국정보과학회 논문지, 제47권, 제1호, 1~10쪽, 2020. DOI: 10.5626/JOK.2020.47.1.1.


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