全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

RSFVMWQ-2D水动力模型数据交互接口研究
Study on Data Interaction Interface of RSFVMWQ-2D Hydrodynamic Model

DOI: 10.12677/JWRR.2021.106066, PP. 609-616

Keywords: 二维水动力模型,数据库,数据交互,接口处理
Two Dimensional Hydrodynamic Model
, Database, Data Interaction, Interface Processing

Full-Text   Cite this paper   Add to My Lib

Abstract:

水动力模型I/O处理需占用大量时间,对其数据交互接口研究,优化系统I/O效率、降低人工干预、提高模型利用率,具有广泛需求。本文简要给出了国内外几款水动力模型计算数据交互管理方式,对其计算I/O处理接口进行了归纳;介绍了RSFVMWQ-2D模型的数学方法、适用范围,以及I/O数据内容、处理方法;针对RSFVMWQ-2D模型研究了一套完整的数据库与计算文件之间数据自动交换组织处理方法,开发了可视化操作界面,该方法可适用于其他以数据文件进行I/O交互的模型,具有较好的推广性。
The I/O processing of hydrodynamic model takes a lot of time. There is a wide demand to study its data interaction interface, optimize the system I/O efficiency, reduce manual intervention and improve the utilization of the model. In this paper, several interactive management methods of hydrodynamic model calculation data at home and abroad are briefly given, and their calculation I/O processing interfaces are summarized. The mathematical method, application scope, I/O data content and processing method of RSFVMWQ-2D model are introduced. Aiming at RSFVMWQ-2D model, a complete set of data automatic exchange organization and processing method between database and calculation file is studied, and a visual operation interface is developed. This method can be applied to other models with I/O interaction based on data file, and has good popularization.

References

[1]  陈鹏宇. 城市洪涝一维二维耦合模型与系统开发研究[D]: [硕士学位论文]. 济南: 山东大学, 2016. CHEN Pengyu. Study on one dimensional and two dimensional coupling model and system development of urban flood. Master’s Thesis. Ji’nan: Shandong University, 2016.
[2]  黄海, 关见朝, 张磊, 王大宇. 安澜模拟系统的构建与应用[J]. 中国水利水电科学研究院学报, 2021, 19(1): 173-182+188. HUANG Hai, GUAN Jianzhao, ZHANG Lei, and WANG Dayu. Construction and application of cross-scale all-dimensional environment simulation system. Journal of China Institute of Water Resource and Hydro-Power Research, 2021, 19(1): 173-182+188. (in Chinese)
[3]  黄士力, 金惠英, 周凡, 冯泾, 潘崇伦. 面向数据驱动应用的水务信息一体化数据组织与管理[J]. 水利水文自动化, 2008(3): 1-5. HUANG Shili, JIN Huiying, ZHOU Fan, FENG Jing, and PAN Chonglun. Data organization and management for data-driven oriented water affairs information integration. Automation in Water Resources and Hydrology, 2008(3): 1-5. (in Chinese)
[4]  王世旭. 基于MIKE FLOOD的济南市雨洪模拟及其应用研究[D]: [博士学位论文]. 济南: 山东师范大学, 2015. WANG Shixu. The study of simulation and application of rainwater and flood based on MIKE FLOOD model in Ji’nan City. Ph.D. Thesis. Ji’nan: Shandong Normal University, 2015. (in Chinese)
[5]  赵棣华, 沈福新, 颜志俊, 卢恭和. 基于有限体积法及FDS格式的感潮河段二维泥沙冲淤模型[J]. 水动力学研究与进展(A辑), 2004, 19(1): 98-103. ZHAO Dihua, SHEN Fuxin, YAN Zhijun, and LU Gonghe. A 2-D sediment transport model based on the FVM with FDS for tidal rivers. Journal of Hydrodynamics, 2004, 19(1): 98-103. (in Chinese)
[6]  龚春生, 姚琪, 赵棣华, 吴云海, 丰茂武. 浅水湖泊平面二维水流-水质-底泥污染模型研究[J]. 水科学进展, 2006, 17(4): 496-501. GONG Chunsheng, YAO Qi, ZHAO Dihua, WU Yunhai, and FENG Maowu. Plane 2-D flow-water quality-sediment pollution couple model in shallow lake. Advances in Water Science, 2006, 17(4): 496-501. (in Chinese)
[7]  赵棣华, 李褆来, 陆家驹. 长江江苏段二维水流-水质模拟[J]. 水利学报, 2003(6): 72-77. ZHAO Dihua, LI Tilai, and LU Jiaju. 2-D depth-averaged flow-pollutions model for Jiangsu reaches in Yangtze River. Shuili Xuebao, 2003(6): 72-77. (in Chinese)
[8]  LIU, L., WANG, J., ZHANG, Y., TANG, K., and MA, T. Coupling characteristics between bubble and free surface in a shallow water environment. Ocean Engineering, 2021, 237: 109577.
[9]  许仁义, 汪凌翔, 王远见, 方浩川, 王俊贤, 戴惠东. 浅水方程源项处理的研究进展[J]. 人民黄河, 2021, 43(7): 35-40+83. XU Renyi, WANG Lingxiang, WANG Yuanjian, FANG Haochuan, WANG Junxian, and DAI Huidong. Research progress on source term treatment of shallow water equation. Yellow River, 2021, 43(7): 35-40+83. (in Chinese)
[10]  中华人民共和国水利部. SL323-2011实时雨水情数据库表结构与标识符[S]. 北京: 中国水利水电出版社, 2011. Ministry of Water Resources of the People’s Republic of China. SL323-2011 structure and identifier for real-time hydrological information. Beijing: China Water & Power Press, 2011. (in Chinese)

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133