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Title: PELEC

Abstract

PeleC is an adaptive-mesh compressible hydrodynamics code for reacting flows. It solves the compressible Navier-Stokes with multispecies transport in a block structured framework. The resulting algorithm is well suited for flows with localized resolution requirements and robust to discontinuities. User controllable refinement crieteria has the potential to result in extremely small numerical dissipation and dispersion, making this code appropriate for both research and applied usage. The code is built on the AMReX library which facilitates hierarchical parallelism and manages distributed memory parallism. PeleC algorithms are implemented to express shared memory parallelism.

Publication Date:
Research Org.:
National Renewable Energy Lab. (NREL), Golden, CO (United States); Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Sponsoring Org.:
USDOE Office of Science (SC), Advanced Scientific Computing Research (ASCR) (SC-21)
Contributing Org.:
National Renewable Energy Laboratory (NREL), Lawrence Berkeley National Laboratory (LBNL)
OSTI Identifier:
1374142
Report Number(s):
PELEC; 005401MLTPL00
SWR 17-35
DOE Contract Number:  
AC36-08GO28308
Resource Type:
Software
Software Revision:
00
Software Package Number:
005401
Software CPU:
MLTPL
Open Source:
Yes
https://github.com/jrood-nrel/PeleStuff
Source Code Available:
No
Related Software:
PelePhysics
Country of Publication:
United States

Citation Formats

. PELEC. Computer software. https://www.osti.gov//servlets/purl/1374142. Vers. 00. USDOE Office of Science (SC), Advanced Scientific Computing Research (ASCR) (SC-21). 17 May. 2017. Web.
. (2017, May 17). PELEC (Version 00) [Computer software]. https://www.osti.gov//servlets/purl/1374142.
. PELEC. Computer software. Version 00. May 17, 2017. https://www.osti.gov//servlets/purl/1374142.
@misc{osti_1374142,
title = {PELEC, Version 00},
author = {},
abstractNote = {PeleC is an adaptive-mesh compressible hydrodynamics code for reacting flows. It solves the compressible Navier-Stokes with multispecies transport in a block structured framework. The resulting algorithm is well suited for flows with localized resolution requirements and robust to discontinuities. User controllable refinement crieteria has the potential to result in extremely small numerical dissipation and dispersion, making this code appropriate for both research and applied usage. The code is built on the AMReX library which facilitates hierarchical parallelism and manages distributed memory parallism. PeleC algorithms are implemented to express shared memory parallelism.},
url = {https://www.osti.gov//servlets/purl/1374142},
doi = {},
year = {Wed May 17 00:00:00 EDT 2017},
month = {Wed May 17 00:00:00 EDT 2017},
note =
}

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