G13A:
The Global Geodetic Observing System and Earth Rotation: Monitoring the Dynamic Earth II Posters

Session ID#: 5093

Monday, 15 December 2014: 1:40 PM-6:00 PM
Not an Option (Moscone West)
Chairs:  Richard S Gross, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States and Erricos C Pavlis, Goddard Earth Sciences Technology and Research II (GESTAR II), Greenbelt, United States
Primary Convener:  Richard S Gross, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States
Co-conveners:  Chopo Ma, NASA Goddard SFC, Greenbelt, MD, United States, Erricos C Pavlis, Goddard Earth Sciences Technology and Research II (GESTAR II), Greenbelt, United States and Chengli Huang, Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai, China
OSPA Liaison:  Richard S Gross, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States
Index Terms:

1240 Satellite geodesy: results [GEODESY AND GRAVITY]
1241 Satellite geodesy: technical issues [GEODESY AND GRAVITY]
1294 Instruments and techniques [GEODESY AND GRAVITY]
1295 Integrations of techniques [GEODESY AND GRAVITY]
Virtual Option?: No

Abstracts Submitted to this Session:

 
Inventory of standards and conventions used for the generation of IAG/GGOS products (16066)
Detlef Angermann1, Thomas Gruber2, Michael Gerstl3, Urs Hugentobler2, Laura Sanchez1, Robert Heinkelmann4 and Peter Steigenberger5, (1)DGFI German Geodetic Research Institute, Munich, Germany, (2)Technical University of Munich, Munich, Germany, (3)DGFI-TUM, Munich, Germany, (4)GFZ German Research Centre for Geosciences, Space Geodetic Techniques, Potsdam, Germany, (5)DLR/GSOC, Wessling, Germany
 
Development of web tools to disseminate space geodesy data-related products (27414)
Laurent Soudarin, CLS (Collecte Localisation Satellites), Ramonville, France, Pascale Ferrage, CNES French National Center for Space Studies, Toulouse Cedex 09, France and Adrien Mezerette, AS+, Toulouse, France
 
Which Orbit for the GRASP Mission ? (4642)
Arnaud Pollet1, David Coulot2,3, Myriam Zoulida4, Florent Deleflie3, Richard Biancale5 and Mioara Mandea6, (1)Université Paris Cité, Institut de physique du globe de Paris, CNRS, IGN, Paris, France, (2)Université de Paris, Institut de physique du globe de Paris, CNRS, IGN, F-75005 Paris, France, (3)IMCCE, Observatoire de Paris, PSL Research University, CNRS, Sorbonne Universités, UPMC Univ. Paris 06, LNE, Paris, France, (4)LAREG Laboratoire de Recherche en Géodésie, Paris, France, (5)GET-CNES, OMP, Toulouse, France, (6)CNES French National Center for Space Studies, Toulouse Cedex 09, France
 
Time-transfer experiments between satellite laser ranging ground stations via one-way laser ranging to the Lunar Reconnaissance Orbiter (23062)
Dandan Mao1, Xiaoli Sun2, David R Skillman2, Jan Mcgarry2, Evan Hoffman3,4, Gregory A Neumann2, Mark H Torrence5, David E Smith6 and Maria T Zuber7, (1)Sigma Space Corporation, Lanham, United States, (2)NASA Goddard Space Flight Center, Greenbelt, MD, United States, (3)Honeywell Technology Solutions Inc., Columbia, MD, United States, (4)Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany, (5)SGT Inc, Greenbelt, MD, United States, (6)Massachusetts Institute of Technology, Cambridge, MA, United States, (7)Massachusetts Institute of Technology, Office of the Vice President for Research, Cambridge, MA, United States
 
On the potential of multi-static SLR. Case study: orbit determination and prediction of space debris objects (21513)
Harald Wirnsberger1, Oliver Baur1, Georg Kirchner1, Karl Ulrich Schreiber2 and Wolfgang Riede3, (1)Austrian Academy of Sciences, Graz, Austria, (2)BKG Geodetic Observatory Wettzell, Bad Kötzting, Germany, (3)German Aerospace Center DLR Stuttgart - DLR, Stuttgart, Germany
 
Demonstrating Vertical Stability Between Geodetic Techniques at SGF Herstmonceux, UK (22783)
Graham M Appleby1, Jose Rodriguez2, Robert Sherwood2, Toby Shoobridge2 and Matthew J Wilkinson2, (1)NERC Space Geodesy Facility, East Sussex, BN27, United Kingdom, (2)NERC Space Geodesy Facility, East Sussex, United Kingdom
 
The NASA-Haystack VGOS Development Systems (19774)
Arthur E Niell1, Christopher J Beaudoin2, Roger J Cappallo1, Brian E Corey1, Steven R McWhirter2, Chester A Ruszczyk1, Jason G SooHoo2, Michael A Titus1, John M Gipson3, William Edwin Himwich3 and Sergei Bolotin3, (1)MIT Haystack Observatory, Westford, United States, (2)MIT Haystack Observatory, Westford, MA, United States, (3)NVI, Inc., Greenbelt, MD, United States
 
Current State of New Vgos Antennas for the "Quasar" Network (7730)
Alexandr Ipatov, Dmitry Ivanov, Sergey Smolentsev, Gennady Ilin and Iskandar Gayazov, Institute of Applied Astronomy, St. Petersburg, Russia
 
Effects of the April 1st, 2014 GLONASS Outage on GNSS Receivers (18757)
Frederick Blume, UNAVCO, Boulder, CO, United States, Henry T Berglund, GPS Solutions Inc., Boulder, United States, Ignacio Romero, Soluciones Avanzadas Canarias S.L., Telde, Spain and Elisabetta D'Anastasio, GNS Science Te Pῡ Ao, Wellington, New Zealand
 
Impact of GNSS Clock Instability on Radio Occultation Retrievals from the COSMIC-2 Mission (29810)
William Steven Schreiner1, Teresa Vanhove1, John Braun2, Sergey V Sokolovskiy2 and Douglas Hunt3, (1)University Corporation for Atmospheric Research, Boulder, CO, United States, (2)University Corporation for Atmospheric Research, COSMIC Program Office, Boulder, United States, (3)University Corporation for Atmospheric Research, Boulder, United States
 
A Stable Geodetic Reference Frame within the COCONET Footprint to Enable High-Accuracy Ground Deformation Study (25694)
Hanlin Liu1, Guoquan Wang2 and Jiangbo Yu1, (1)University of Houston, Houston, TX, United States, (2)University of Houston, Department of Earth and Atmospheric Sciences, Houston, TX, United States
 
GPS data analysis and results from the Geodesy Advancing Geosciences and EarthScope (GAGE) project (25969)
Thomas Herring1, Michael Floyd2, Robert W King3, Timothy Ian Melbourne4, Walter Michael Szeliga5, Mark H Murray6, David A Phillips7, Christine Maria Puskas8, Frances M Boler8, Charles M Meertens8 and Glen S Mattioli8, (1)Massachusetts Institute of Technology, Cambridge, MA, United States, (2)Massachusetts Institute of Technology, Department of Earth, Atmospheric and Planetary Sciences, Cambridge, MA, United States, (3)MIT, Cambridge, MA, United States, (4)Central Washington Univ, Ellensburg, WA, United States, (5)Central Washington University, Ellensburg, WA, United States, (6)New Mexico Institute of Mining and Technology, Socorro, NM, United States, (7)UNAVCO, Boulder, CO, United States, (8)UNAVCO, Inc., Boulder, CO, United States
 
Current Land Subsidence in Tianjin, China Recorded by Three Continuous GPS stations (2010-2014) (27651)
Xueyi Jia1, Qi Jing2, Bao Yan3, Jiangbo Yu1, Weijun Gan4 and Guoquan Wang5, (1)University of Houston, Houston, TX, United States, (2)China Earthquake Administration, First Monitoring Center, Tianjin, China, (3)Beijing University of Technology, College of Civil Engineering, Beijing, China, (4)Institute of Geology, China Earthquake Administration, Beijing, China, (5)University of Houston, Department of Earth and Atmospheric Sciences, Houston, TX, United States
 
A Seafloor Benchmark for 3-dimensional Geodesy (18095)
C David Chadwell, University of California San Diego, La Jolla, CA, United States, Spahr C Webb, Lamont-Doherty Earth Observatory, Palisades, NY, United States and Scott L Nooner, University of North Carolina at Wilmington, Dept of Earth and Ocean Sciences, Wilmington, NC, United States
 
An Autonomous, Low Cost Platform for Seafloor Geodetic Observations (27533)
Todd Ericksen1, James H Foster2, Brian S Bingham3 and Jeffrey Oshiro3, (1)University of Hawaii, Hawaii Institute of Geophysics and Planetology, Honolulu, HI, United States, (2)University of Hawaii, Hawaii Institute of Geophysics and Planetology, Honolulu, United States, (3)University of Hawaii at Manoa, Mechanical Engineering, Honolulu, HI, United States
 
First Observations with the New Dual Sphere Superconducting Gravimeter Osg-073 at Metsähovi, Finland (8417)
Heikki Virtanen, Arttu Raja-Halli, Mirjam Bilker-Koivula, Jyri Naranen and Hannu E O Ruotsalainen, Finnish Geodetic Institute, Masala, Finland
 
Consistency problems associated to the improvement of precession-nutation theories (17198)
Jose M Ferrandiz1, Alberto Escapa2,3, Tomás Baenas3, Juan Getino4, Juan F. Navarro3 and Santiago Belda-Palazón5, (1)University of Alicante, UAVAC, Applied Mathematics & Aerospace Engineering Dept., Alicante, Spain, (2)University of León, Aerospace Enginering, León, Spain, (3)University of Alicante, Alicante, Spain, (4)University of Valladolid, Matemática Aplicada, Valladolid, Spain, (5)University of Alicante, UAVAC, Applied Mathematics & Aerospace Engineering Dept., Alicante, Spain
 
A Numerical Experiment to Test the Influence of the Uncertainty of Earth Model on Nutation (5755)
Chengli Huang and Mian Zhang, Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai, China
 
Progress in Research on Diurnal and Semidiurnal Earth Rotation Change (11874)
Xueqing Xu1,2, Danan Dong2 and Yonghong Zhou1, (1)Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai, China, (2)East China Normal University, Shanghai, China
 
GPS-based Real-Time and High-Rate Estimation of Earth Orientation Parameters (13789)
Yoaz E Bar-Sever, NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, William I Bertiger, Jet Propulsion Laboratory, Pasadena, United States and Richard S Gross, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States
 
New Atmospheric and Oceanic Angular Momentum Datasets for Predictions of Earth Rotation/Polar Motion (16001)
David A Salstein, US Naval Observatory (contractor), Lexington, United States and Nick Stamatakos, US Naval Observatory, Washington, United States
 
Atmospheric pressure forced oceans and their effects on Earth’s Rotation: a TOPEX data approach (23243)
Nirupam Dey and Steven R Dickman, Binghamton University, Binghamton, NY, United States
 
Impact of self-attraction and loading on Earth rotation (26268)
Katherine J Quinn, AER, Lexington, MA, United States, Rui M Ponte, Verisk Atmospheric and Environmental Research, Lexington, United States and Mark E Tamisiea, The University of Texas at Austin, Center for Space Research, Austin, TX, United States
 
Estimating the Period and Q of the Chandler Wobble from Observations and Models of its Excitation (29657)
Richard S Gross, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States and Jolanta Nastula, Space Research Centre of Polish Academy of Sciences, Warsaw, Poland
 
Glacier Melting Effect on the Earth’s Rotation - Revisited (22259)
Sung-Ho Na1, Dork L Sahagian2, Tu-Hwan Kim1, Bong Gon Jo3, Ki-Deok Ahn4 and Young Hong Shin5, (1)Ajou University, Suwon, Korea, Republic of (South), (2)Lehigh University, Earth & Environmental Sciences, Bethlehem, PA, United States, (3)Chonbuk National University, Jeonju, Korea, Republic of (South), (4)National Geographic Information Institute of Korea, Space Geodetic Observation Center, Sejong, Korea, Republic of (South), (5)Korea Inst. Geosci. & Mineral, Daejeon, Korea, Republic of (South)
 
Topographic Coupling at Core-Mantle Boundary in Rotation and Orientation Changes of the Earth. (3742)
Veronique M A Dehant1, Mihaela Puica1,2, Marta Folgueira López2, Antony Trinh1 and Tim Van Hoolst1, (1)Royal Observatory of Belgium, Brussels, Belgium, (2)Universidad Complutense de Madrid, Facultad de Ciencias Matemáticas, Madrid, Spain
 
Rotational modes of a two layer stratified fluid core model (25049)
Behnam Seyed-Mahmoud1, Hossein Naseri1 and Mian Zhang2, (1)University of Lethbridge, Lethbridge, AB, Canada, (2)Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai, China
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