Research products associated with 1D modeling of rivers, river networks, and urban water system hydraulics.
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1 to 6 of 6 Results
PipeAC(University of Texas at Austin)
May 14, 2020
Artificial compressibility model for free-surface and surcharged pipe flow using Saint-Venant equations. PipeAC code is Python 3.7 scripting. Code is published as public domain software. Scripts for analysis and model results are provided.
ReferenceSlope(University of Texas at Austin)
Sep 20, 2019
Reference slope method for treating bottom slope in Saint-Venant solutions of 1D channel flow.
SvePy Flow Over a Bump test case output(University of Texas at Austin)
Jul 8, 2019SvePy
Output data from SvePy model of flow over a bump from SWASHES test case. Number in the file name provides the number of finite-volume elements in the simulation. Baseline simulation uses the momentum matching algorithm for the hydraulic jump. Simplejump simulations use extrapolat...
SvePy Waller Creek test case output(University of Texas at Austin)
Jul 8, 2019SvePy
SvePy model results for test case of flow in Waller Creek. File name information is parsed as follows: momentumjump or simplejump is type of hydraulic jump algorithm T00, T10, T20 denote different free-surface/bottom quadrature algorithms dx## denotes nominal grid scale (in m) Co...
SvePy code and documents(University of Texas at Austin)
Jul 8, 2019SvePy
Source code, input files, and processing files for running SvePy
SvePy(University of Texas at Austin)
Jul 8, 2019
SvePy code and supporting data (Saint-Venant solver Python)
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