Published October 14, 2008 | Version v1
Report

Analysis of Massively Parallel Discrete-Ordinates Transport Sweep Algorithms with Collisions

Description

We present theoretical scaling models for a variety of discrete-ordinates sweep algorithms. In these models, we pay particular attention to the way each algorithm handles collisions. A collision is defined as a processor having multiple angles with ready to be swept during one stage of the sweep. The models also take into account how subdomains are assigned to processors and how angles are grouped during the sweep. We describe a data driven algorithm that resolves collisions efficiently during the sweep as well as other algorithms that have been designed to avoid collisions completely. Our models are validated using the ARGES and AMTRAN transport codes. We then use the models to study and predict scaling trends in all of the sweep algorithms

Availability note (English)

Available from https://e-reports-ext.llnl.gov/pdf/366590.pdf; PURL: https://www.osti.gov/servlets/purl/952433-K1odt8/

Additional details

Publishing Information

Imprint Pagination
17 p.
Report number
LLNL-CONF--407968

Conference

Title
International Conference on Mathematics, Computational Methods, and Reactor Physics
Dates
3-7 May 2009
Place
Saratoga Springs, NY (United States)

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
40081263
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
A CODES; ALGORITHMS; DISCRETE ORDINATE METHOD; REACTOR PHYSICS; TRANSPORT THEORY
Descriptors DEC
CALCULATION METHODS; COMPUTER CODES; MATHEMATICAL LOGIC; PHYSICS

Optional Information

Contract/Grant/Project number
W-7405-ENG-48
Notes
PDF-FILE: 17; SIZE: 2.3 MBYTES
Funding organization
US Department of Energy (United States)