SH21A:
Computer Vision Codes in Solar Physics: Challenges and Limitations I Posters

Session ID#: 3065

Tuesday, 16 December 2014: 8:00 AM-12:20 PM
Poster Hall (Moscone_South)
Chairs:  Bala Poduval, Space Science Institute Boulder, Boulder, CO, United States, Craig E DeForest, Southwest Research Institute Boulder, Boulder, CO, United States and Markus J. Aschwanden, Lockheed Martin Solar and Astrophysics Laboratory, Palo Alto, CA, United States
Primary Convener:  Bala Poduval, Space Science Institute, Boulder, CO, United States; Space Science Institute Boulder, Boulder, CO, United States
Co-conveners:  Craig E DeForest, Southwest Research Institute Boulder, Boulder, CO, United States and Markus J. Aschwanden, Lockheed Martin Solar and Astrophysics Laboratory, Palo Alto, CA, United States
OSPA Liaison:  Bala Poduval, Space Science Institute Boulder, Boulder, CO, United States
Index Terms:

7507 Chromosphere [SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY]
7509 Corona [SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY]
7529 Photosphere [SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY]
9820 Techniques applicable in three or more fields [GENERAL OR MISCELLANEOUS]
Virtual Option?: No

Abstracts Submitted to this Session:

 
Effect of Size of the Computational Domain on Nonlinear Force-Free Modeling of Coronal Magnetic Field Using SDO/HMI Data (4302)
Tilaye Tadesse Asfaw, NASA Goddard Space Flight Center, Greenbelt, MD, United States, Thomas Wiegelmann, Max Planck Institute for Solar System Research, Goettingen, Germany and Peter J MacNeice, NASA Goddard Space Flight Center, Community Coordinated Modeling Center, Greenbelt, MD, United States
 
A catalog of Dimming Regions from the SDO AIA mission (30557)
Alisdair R Davey, Smithsonian Astrophysical Observatory, Cambridge, MA, United States and Scott William McIntosh, High Altitude Observatory, Boulder, United States
 
An Analysis of Eruptions Detected by the LMSAL Eruption Patrol (15370)
Neal E Hurlburt1, Paul A Higgins2 and Steve Jaffey1, (1)Lockheed Martin Solar and Astrophysics Laboratory, Palo Alto, CA, United States, (2)Trinity College Dublin, Dublin, Ireland
 
The Automatic Solar Synoptic Analyzer and Solar Wind Prediction (19477)
Sunhak Hong1, Jae Hun Kim2, Jinwook Han3 and Yung-Kyu Kim1, (1)Korean Space Weather Center, Jeju-Si, Korea, Republic of (South), (2)University of California Irvine, Irvine, CA, United States, (3)National Radio Research Agency, Jeju, Korea, Republic of (South)
 
Automated Wave Analysis and Reduction in EUV (AWARE): a tool for the detection and characterization of EUV waves. (30652)
Andrew R Inglis1, Jack Ireland2, Albert Y Shih3, Steven Christe3, Laura A Hayes4 and The SunPy Collaboration, (1)Catholic University of America, Washington, United States, (2)ADNET Systems Inc. Greenbelt, Greenbelt, MD, United States, (3)NASA GSFC, Solar Physics Lab, Greenbelt, United States, (4)Trinity College Dublin, Dublin, Ireland
 
Constructing Time-Dependent Coronal Hole Maps Using Synchronized Multi-Instrument EUV Data (30161)
Ronald M. Caplan1, Cooper Downs2 and Jon Linker2, (1)Predictive Science Inc., San Diego, United States, (2)Predictive Science Inc., San Diego, CA, United States
 
Solar Flare Prediction Using SDO/HMI Vector Magnetic Field Data with a Machine-Learning Algorithm (13314)
Monica Bobra, Stanford University, W.W Hansen Experimental Physics Laboratory, Stanford, CA, United States and Sebastien P Couvidat, Stanford University, Stanford, CA, United States
 
Automated Discovery of Short Duration Solar Radio Bursts in Murchison-Widefield Array (MWA) Data (23100)
Brian Timar1, Victor Pankratius2, Colin Lonsdale2, Divya Oberoi3, Roger J Cappallo4 and Lynn Matthews2, (1)University of California Berkeley, Berkeley, CA, United States, (2)MIT Haystack Observatory, Westford, MA, United States, (3)Tata Institute for Fundamental Research, National Center for Radio Astronomy, Bangalore, India, (4)MIT Haystack Observatory, Westford, United States