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System Development & Application
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188-192,205

Software and hardware adaptation method of hydrodynamic model based on container technologies

Zhang Haijia1,2
Liu Jiahong1,2,3
Mei Chao2,3
Wang Jia2,3
Gao Xichao2,3
1. Faculty of Architecture, Civil & Transportation Engineering, Beijing University of Technology, Beijing 100124, China
2. State Key Laboratory of Simulation & Regulation of Water Cycle in River Basin, China Institute of Water Resources & Hydropower Research, Beijing 100038, China
3. Key Laboratory of River Basin Digital Twinning of Ministry of Water Resources, Beijing 100038, China

Abstract

With the development and popularity of advanced RISC machines(ARM), adapting the X86-based scientific computing software to ARM-based computing platforms is one of the key issues for scientific research and operational applications. It is urgent to explore the software-hardware-adaptation methods of advanced RISC machines for professional computational models. This paper systematically analysed the key points for software hardware adaptation of ARM. By comparing the existing software adaptation technologies, it selected container technology to enable the hydrodynamic model to run on ARM-based computing platforms. Container technology could package the application software and its dependencies into a portable container, which made the suggested software run freely without any dependency on the underlying architecture and operating system. Taking the hydrological hydrodynamic model, TELEMAC, as an example, it explained the principle of Docker image composition in detail, and built the TELEMAC image environment through Dockerfile. The method was verified by carrying out the computational cases. The results show that the TELEMAC image can run safely on the Kunpeng 920 processor-based openEuler and Kirin V10. The case calculation results are consistent with the standard results, and the model calculation efficiency is high. The proposed method realizes the adaptation from an X86-based platform to ARM-based computing platforms for professional scientific computing models. This study can also provide a reference for the localization adaptation of other software.

Foundation Support

国家重点研发计划资助项目(2022YFC3090600)
国家自然科学基金资助项目(52192671)

Publish Information

DOI: 10.19734/j.issn.1001-3695.2023.05.0200
Publish at: Application Research of Computers Printed Article, Vol. 41, 2024 No. 1
Section: System Development & Application
Pages: 188-192,205
Serial Number: 1001-3695(2024)01-028-0188-05

Publish History

[2023-07-21] Accepted Paper
[2024-01-05] Printed Article

Cite This Article

张海嘉, 刘家宏, 梅超, 等. 基于容器技术的水文水动力模型软硬件适配方法 [J]. 计算机应用研究, 2024, 41 (1): 188-192,205. (Zhang Haijia, Liu Jiahong, Mei Chao, et al. Software and hardware adaptation method of hydrodynamic model based on container technologies [J]. Application Research of Computers, 2024, 41 (1): 188-192,205. )

About the Journal

  • Application Research of Computers Monthly Journal
  • Journal ID ISSN 1001-3695
    CN  51-1196/TP

Application Research of Computers, founded in 1984, is an academic journal of computing technology sponsored by Sichuan Institute of Computer Sciences under the Science and Technology Department of Sichuan Province.

Aiming at the urgently needed cutting-edge technology in this discipline, Application Research of Computers reflects the mainstream technology, hot technology and the latest development trend of computer application research at home and abroad in a timely manner. The main contents of the journal include high-level academic papers in this discipline, the latest scientific research results and major application results. The contents of the columns involve new theories of computer discipline, basic computer theory, algorithm theory research, algorithm design and analysis, blockchain technology, system software and software engineering technology, pattern recognition and artificial intelligence, architecture, advanced computing, parallel processing, database technology, computer network and communication technology, information security technology, computer image graphics and its latest hot application technology.

Application Research of Computers has many high-level readers and authors, and its readers are mainly senior and middle-level researchers and engineers engaged in the field of computer science, as well as teachers and students majoring in computer science and related majors in colleges and universities. Over the years, the total citation frequency and Web download rate of Application Research of Computers have been ranked among the top of similar academic journals in this discipline, and the academic papers published are highly popular among the readers for their novelty, academics, foresight, orientation and practicality.


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