1. Aksoy, Altug; Aberson, S.; Sellwood, K.; Klotz, B. W.; Vukicevic, T. and Velden, C. S.. HEDAS vortex-scale data assimilation with aircraft and satellite retrieval observations: Summary of the 2013 Atlantic hurricane season results. Boston, MA, American Meteorological Society, 2014, Abstract 15C.6.
2.
Anthes, Richard A.; Maier, Mark W.; Ackerman, Steve; Atlas, Robert; Callahan, Lisa W.; Dittberner, Gerald; Edwing, Richard; Emch, Pamela G.; Ford, Michael; Gail, William B.; Goldberg, Mitch; Goodman, Steve; Kummerow, Christian; Onsager, Terrance; Schrab, Kevin; Velden, Chris; Vonderhaar, Thomas and Yoe, James G.. Developing priority observational requirements from space using multi-attribute utility theory. Bulletin of the American Meteorological Society, Volume: 100, Issue: 9, 2019, pp.1753-1773. Reprint # 8462.
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3. Ardanuy, Philip Edward; Gail, William; Hooke, William; Macauley, Molly; Marley, Stephen; Purschell, Jeffrey; Schmetz, Johannes and Velden, Chris. Optimizing requirements of the next generation satellite observing systems. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2015, unpaged. Reprint # 7662.
4.
Bailey, Andrwe; Bresky, Wayne; Daniels, Jaime; Allegrino, Americo; Wanzong, Steve and Velden, Chris. Error characterization and validaton of Atmospheric Motion Vectors from the GOES-16 Advanced Baseline Imager (ABI). Madison, WI, University of Wisconsin-Madison, Cooperative Institute for Meteorological Satellite Studies (CIMSS), 2018, poster presentation. 1p.
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5. Baker, Nancy L.; Langland, Rolf; Pauley, Patricia M.; Xu, Liang; Merkova, Dagmar; Gelaro, Ron and Velden, Christopher. The impact of satellite Atmospheric Motion Vectors in the US Navy global data assimilation system - NWP results. Darmstadt, Germany, EUMETSAT, 2012. Reprint # 6823.
6.
Baker, Nancy; Langland, Rolf; Pauley, Pat; Merkova, Dagmar; Gelaro, Ron and Velden, Chris. An investigation of the impact of Atmospheric Motion Vectors on NAVDAS-AR/NOGAPS. Madison, WI, University of Wisconsin-Madison, Cooperative Institute for Meteorological Satellite Studies (CIMSS), 2012, PowerPoint presentation. 39 slides.
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7.
Baker, Nancy; Langland, Rolf; Pauley, Pat; Xu, Liang; Merkova, Dagmar; Gelaro, Ron and Velden, Chris. The impact of satellite atmospheric motion vectors in the US Nacy global data assimilation system. Geneva, World Meteorological Organization (WMO), Programme on Physics and Chemistry of Clouds and Weather Modification Research, 2012, pp.1a (6). PowerPoint presentation.
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8. Bedka, Kristopher and Velden, Christopher. Improved representation of satellite atmospheric motion vectors by attributing assigned heights to tropospheric layers. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, unpaged. Reprint # 5567.
9.
Bedka, Kristopher and Velden, Christopher. Improved representation of satellite atmospheric motion vectors by attributing assigned heights to tropospheric layers. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, PowerPoint presentation.
Link to PDF
10.
Bedka, Kristopher M.; Velden, Christopher S.; Feltz, Wayne F. and Petersen, R. A.. Development, validation, and applications of a mesoscale AMV product at UW-CIMSS. Madison WI, University of Wisconsin-Madison, Space Science and Engineering Center, Cooperative Institute for Meteorological Satellite Studies, 2008, PowerPoint presentation. 19 slides.
Link to Abstract
11. Bedka, Kristopher; Velden, Christopher; Feltz, Wayne and Petersen, Ralph.. Development, validation, and application of a mesoscale AMV product at UW-CIMSS. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2008, unpaged. Reprint # 5836.
12.
Bedka, Kristopher; Velden, Christopher; Petersen, Ralph; Feltz, Wayne and Mecikalski, John. Comparisons between satellite-derived atmospheric motion vectors, rawinsondes, and NOAA wind profiler observations. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, poster presentation.
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13. Berger, Howard. The impact of GOES rapid-scan winds on Eta hurricane forecasts. Madison, WI, University of Wisconsin-Madison, Department of Atmospheric and Oceanic Sciences, 2002. Call Number: UW MET Publication No.02.08.B1.
14.
Berger, Howard and Velden, Chris. Recent advances in the processing, targeting and data assimilation applications of satellite-derived atmospheric motion vectors (AMVs). Madison, WI, University of Wisconsin-Madison, Cooperative Institute for Meteorological Satellite Studies (CIMSS), 2010, PowerPoint presentation. 27 slides.
Link to PDF
15.
Berger, Howard and Velden, Christopher. Tropical cyclone outflow diagnostics as observed in GOES rapid-scan atmospheric motion vector analyses. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, poster presentation.
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16.
Berger, Howard and Velden, Christopher. The impact of GOES rapid-scan Atmospheric Motion Vectors (AMVs) on global numerical weather prediction model forecasts. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, PowerPoint presentation.
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17. Berger, Howard I.. Assimilation of GOES rapid-scan winds into an experimental Eta model during Atlantic hurricanes. Boston, MA, American Meteorological Society, 2002, Paper 9D.4. Reprint # 3855.
18. Berger, Howard I.. Assimilation of GOES rapid-scan winds into an experimental Eta model during Atlantic hurricanes. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2002, pp.187-191. Reprint # 3540.
19. Berger, Howard I. and Velden, Chris. Assimilation of GOES rapid-scan winds into an experimental Eta model during Hurricane Keith. Boston, MA, American Meteorological Society, 2001, Paper P4.3. Reprint # 3877.
20. Berger, Howard I. and Velden, Chris. Assimilation of GOES rapid-scan winds into an experimental Eta model during Hurricane Keith. Boston, MA, American Meteorological Society, 2001, pp.260-261. Reprint # 2967.
21.
Berger, Howard; Langland, Rolf; Velden, Christopher S. ; Reynolds, Carolyn A. and Pauley, Patricia M.. Impact of enhanced satellite-derived atmospheric motion vector observations on numerical tropical cyclone track forecasts in the Western North Pacific during TPARC/TCS-08. Journal of Applied Meteorology and Climatology, Volume: 50, Issue: 11, 2011. Reprint # 6553.
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22. Berger, Howard; Velden, C. S.; Langland, R. and Reynolds, C. A.. Special satellite data analysis and NWP impact studies during TPARC. Boston, MA, American Meteorological Society, 2010, Paper 8A.3. Reprint # 6277.
23.
Berger, Howard; Velden, Chris; Wanzong, Steve and Daniels, Jaime. Assessing the 'expected error' as a potential new quality indicator for Atmospheric Motion Vectors. Madison WI, University of Wisconsin-Madison, Space Science and Engineering Center, Cooperative Institute for Meteorological Satellite Studies, 2008, PowerPoint presentation. 30 slides.
Link to Abstract
24.
Berger, Howard; Velden, Christopher and Wanzong, Steve. Evaluation of a new quality indicator to estimate satellite-derived Atmospheric Motion Vector observation error. Darmstadt, Germany, European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), 2007, poster presentation.
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25. Beven, Jack; Brennan, Michael; Cobb, Hugh; DeMaria, Mark; Knaff, John; Velden, Christopher; Dunion, Jason; Jedlovec, Gary and Fuell, Kevin. The 2011 GOES-R proving ground activities at the National Hurricane Center. Washington, DC, US Department of Commerce, National Oceanic and Atmospheric Administration (NOAA), Office of the Federal Coordinator for Meteorology, 2012, PowerPoint presentation.