Probe - Environmental Science and Technology

  • Home
  • About
    • About the Journal
    • Contact
  • Article
    • Current
    • Archives
  • Submissions
  • Editorial Team
  • Announcements
Register Login

ISSN

2661-3948(Online)

Article Processing Charges (APCs)

US$800

Publication Frequency

Quarterly

Download Full Text PDF

Published

2025-07-16

Issue

Vol 7 No 2 (2025): published

Section

Articles

Research progress in the application of hydrodynamic model of lake and reservoir based on MIKE 21

Haonan Zhao

College of Urban and Rural Construction, Agricultural University of Hebei

Hongquan Liu

College of Urban and Rural Construction, Agricultural University of Hebei

Yongtao Zhu

Hebei Institute of Water Resources Science

Huiling Han

Baoding University

Yuanyuan Ma

College of Urban and Rural Construction, Agricultural University of Hebei

Yuan Li

College of Urban and Rural Construction, Agricultural University of Hebei


DOI: https://doi.org/10.59429/pest.v7i2.10390


Keywords: MIKE 21; Two-dimensional hydrodynamic mode; Lake; Reservoir; Coupling


Abstract

The MIKE 21 hydrodynamic model is a reliable means to study surface water movement. The simulation of two-dimensional flow motion by digital model is of great significance for water condition transformation, hydrologic process calculation and flow trend prediction. MIKE 21 model has been widely used in lake and reservoir area by experts at home and abroad, and has achieved good results. In this paper, the application of MIKE 21 model is reviewed, including the application of two-dimensional hydrodynamic model, coupled one-dimensional hydrodynamic model and water quality model in lake, reservoir and other areas. This paper summarizes the key points in the current application of the model, and grasps the research trends of the MIKE 21 hydrodynamic model in order to provide new ideas for the application and research of the model.


References

[1]Ban Meina, Wu Yongxin. Flood discharging capacity of the outlet section of Nandu river based onMIKE21-FM model. South-to-North Water Transfers and Water Science & Technology, 2018, 16(02): 151-7.

[2]Huang Linyu, Li Mi, Nie Qiuyue, et al. Application of rainstorm waterlogging model based on MIKE FLOOD in Chuansha Area. Journal of Water Resources and Water Engineering, 2017, 28(03): 127-33.

[3]Huang Ming, Ma Feihu, Kuang Wu, et al. Study on the effect of ecological water replenishment on the spatial andtemporal distribution of water quality in Chaohu Lake based on MIKE21. Environmental Pollution & Control, 2024, 46(04): 463-70+77.

[4]Yang Chengyu, Dal Chao, Yl Xuan, et al. Total emission control of water pollutant for the lake basin based onorthogonal experimental design and EFDC Model: A case study of DianchiBasin. China Environmental Science, 2016, 36(12): 3696-702.

[5]Du Fu, Yan Xiaohui, Chen Xiaogiang. Numerical Simulation of Hydrodynamic Water Quality of Daliao River Basedon Delft3D. Water Resources and Power, 2024, 42(01): 32-5+161.

[6]Shi Qi. Application of SMS two-dimensional hydrodynamic mathematical model in Huaigan Fangqiu Lake reach regulation Jianghuai Water Resources Science and Technology, 2011, (03): 11-3.

[7]Mu Cong, Li Jiake, Deng Zhaoxian, et al. Application of MIKE model in urban and basin hydrologicalenvironmental simulation. Journal of Water Resources and Water Engineering, 2019, 30(02): 71-80.

[8]Huang Tingting, Rong Yanshu, Wang Dongmei. Analysis of flood characteristics in lake area of polder dismantling project based on MIKE21 FM Model. Express Water Resources & Hydropower Information,

2021, 42(10): 27-31+7.



ISSN: 2661-3948
21 Woodlands Close #02-10 Primz Bizhub Singapore 737854

Email:editorial_office@as-pub.com