ELCIRC

Eulerian-Lagrangian CIRCulation

ocean circulation

true

Contributor(s)

Initial contribute: 2021-09-09

Authorship

:  
Virginia Institute of Marine Science
:  
OGI School of Science & Engineering, Oregon Health & Science University
:  
baptista@ccalmr.ogi.edu
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Classification(s)

Application-focused categoriesNatural-perspectiveOcean regions
Application-focused categoriesIntegrated-perspectiveRegional scale

Detailed Description

English {{currentDetailLanguage}} English

Quote from: https://www.sciencedirect.com/science/article/abs/pii/S0278434304001712

  Challenges posed by the Columbia River estuary–plume–shelf system have led to the development of ELCIRC, a model designed for the effective simulation of 3D baroclinic circulation across river-to-ocean scales. ELCIRC uses a finite-volume/finite-difference Eulerian–Lagrangian algorithm to solve the shallow water equations, written to realistically address a wide range of physical processes and of atmospheric, ocean and river forcings. The numerical algorithm is volume conservative, stable and computationally efficient, and it naturally incorporates wetting and drying of tidal flats. ELCIRC has been subject to systematic benchmarking, and applied to the description of the Columbia River circulation. This paper motivates and describes the formulation, presents and critically analyzes the results of selected benchmarks, and introduces ELCIRC as an open-source code available for community use and enhancement. A companion paper describes the application of ELCIRC to the Columbia River.

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Yinglong Zhang, António M. Baptista (2021). ELCIRC, Model Item, OpenGMS, https://geomodeling.njnu.edu.cn/modelItem/88a244e9-018f-4c77-af9e-6e2f7400088c
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Contributor(s)

Initial contribute : 2021-09-09

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Authorship

:  
Virginia Institute of Marine Science
:  
OGI School of Science & Engineering, Oregon Health & Science University
:  
baptista@ccalmr.ogi.edu
Is authorship not correct? Feed back

History

Last modifier
HaoCheng Wang
Last modify time
2021-09-18
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