Please use this identifier to cite or link to this item: https://hdl.handle.net/11681/36993
Title: Theory, formulation, and implementation of the Cartesian and spherical coordinate two-dimensional depth-averaged module of the Adaptive Hydraulics (AdH) finite element numerical code
Authors: Savant, Gaurav, 1979-
Berger, Rutherford C.
Trahan, Corey J.
Brown, Gary L.
Keywords: Finite element method
Hydraulics--Mathematical models
Hydrodynamics--Mathematical models
Numerical analysis
Sediment transport--Mathematical models
Publisher: Coastal and Hydraulics Laboratory (U.S.)
Information Technology Laboratory (U.S.)
Engineer Research and Development Center (U.S.)
Series/Report no.: Technical Report (Engineer Research and Development Center (U.S.)) ; no. ERDC TR-20-8
Abstract: The US Army Engineer Research and Development Center, Coastal and Hydraulics Laboratory, has undertaken the development of the multi-module Adaptive Hydraulics (AdH) hydrodynamic, sediment, water quality, and transport numerical code. This report documents the mathematical formulation and numerical implementation of the two-dimensional depth-averaged module of AdH.
Description: Technical Report
Gov't Doc #: ERDC TR-20-8
Rights: Approved for Public Release; Distribution is Unlimited
URI: https://hdl.handle.net/11681/36993
http://dx.doi.org/10.21079/11681/36993
Size: 73 pages / 1.11 MB
Types of Materials: PDF/A
Appears in Collections:Technical Report

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