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1 Peter A. Bogenschutz Contact Information Citizenship Research Interests Education National Center For Atmospheric Research Climate and Global Dynamics Office: (303) P.O. Box 3000 Fax: (303) Boulder, CO USA Numerical modeling of the atmosphere at all scales (from general circulation models down to large eddy simulations), boundary layer turbulence and clouds, cloud parameterization, deep convective processes, aerosol effects, microphysical processes, cloud feedbacks The University of Utah, Salt Lake City, UT USA Ph.D., Atmospheric Sciences (defense date: February 3, 2011) Dissertation Title: Improving the Representation of Turbulence and Clouds in Cloud Resolving Models and General Circulation Models. Advisor: Professor Steven K. Krueger The Florida State University, Tallahassee, FL USA M.S., Meteorology, December 2004 Thesis Title: Skill Assessment and Benefits on Applying the New Weather Research and Forecast Model to National Weather Service Forecast Operations Advisor: Professor Paul Ruscher Embry-Riddle Aeronautical University, Daytona Beach, FL USA B.S., Applied Meteorology, May 2002 Cum Laude Minor in Mathematics Research Experience Project Scientist I, 2011-present National Center for Atmospheric Research, Climate and Global Dynamics (supervisor: Dr. Andrew Gettelman) Graduate Research Assistant, University of Utah (supervisor: Dr. Steven K. Krueger) UCAR Visiting Scientist, Florida State University (supervisor/host: Dr. Paul Ruscher) 1 of 5

2 Publications Bogenschutz, P. A., 2015: Improving cloud and turbulence processes in cloud resolving GCMs. Q. J. R. Meteorol. Soc (to be submitted July 2015). Thayer-Calder, K., A. Gettelman, C. Craig, S. Goldhaber, P. A. Bogenschutz, C.-C. Chen, H. Morrison, J. Hoft, E. Raut, B. M. Griffin, J. K. Weber, V. E. Larson, M. C. Wyant, M. Wang, Z. Guo, and S. J. Ghan, A unified parameterization of clouds and turbulence using CLUBB and subcolumns in the Community Atmosphere Model. Submitted to Geosci. Model Dev. Guo, Z., M. Wang, Y. Qian, V. E. Larson, S. Ghan, M. Ovchinnikov, P. A. Bogenschutz, A. Gettelman, and T. Zhou, Parameteric behaviors of CLUBB in simulation of low clouds in the Community Atmosphere Model CAM5. Accepted to J. Adv. Model. Earth Syst. Kubar, T. L., M. Lebsock, G. Stephens, V. E. Larson, P. A. Bogenschutz, and F. Xie, 2015: Regional assessments of low-clouds against large-scale stability in CAM5 and CAM-CLUBB using MODIS and ECMWF-Interim reanalysis data. J. Climate, 28, Gettelman, A., H. Morrison, S. Santos, P. Bogenschutz, and P. M. Caldwell, Advanced two-moment bulk microphysics for global models. Part II: Global model solutions and aerosol-cloud interactions. J. Climate, 28, , doi: /jcli- D Guo, Z., M. Wang, Y. Qian, V. E. Larson, S. Ghan, M. Ovchinnikov, P. A. Bogenschutz, C. Zhao, G. Lin, and T. Zhou, A sensitivity study of cloud properties to CLUBB parameters in the single column Community Atmosphere Model (SCAM5). J. Adv. Model. Earth Syst., 6, , doi: /2014ms Bogenschutz, P. A., A. Gettelman, H. Morrison, V. E. Larson, C. Craig, and D. P. Schannen, Higher-order turbulence closure and its impact on climate simulations in the Community Atmosphere Model. J. Climate, 26, , doi: /jcli-d Bogenschuz, P. A., and S. K. Krueger, 2013: A simplified PDF parameterization of subgrid-scale clouds and turbulence for cloud-resolving models. J. Adv. Model. Earth Syst., 5, , doi: /jame Bogenschutz, P. A., A. Gettelman, H. Morrison, V. E. Larson, N. P. Meyer, D. P. Schannen, and C. Craig, Unified parameterization of the planetary boundary layer and shallow convection with a higher-order turbulence closure in the Community Atmosphere Model. Geo. Sci. Model Dev., 5, , dpi: /gmd Bogenschutz, P. A., S. K. Krueger, and M. Khairoutdinov, Assumed probability density functions for shallow and deep convection. J. Adv. Model. Earth Syst., Vol 2, Art. #10, 24 pp., DOI: /JAMES Moeng, C.-H., M. A. LeMone, M. F. Khairoutdinov, S. K. Krueger, P. Bogenschutz, and D. A. Randall, 2009: The tropical marine boundary layer under a deep convection system: a large-eddy simulation study. J. Adv. Model. Earth Syst., Vol. 1, Art. #16, 13 pp., doi: /JAMES Khairoutdinov, M. F., S. K. Krueger, C.-H. Moeng, P. Bogenschutz, and D. A. Randall, 2009: Large-eddy simulation of maritime deep tropical convection. J. Adv. Model. Earth Syst., Vol. 1, Art. # 15, 13 pp., doi: /JAMES Bogenschutz, P. A. Skill Assessment and Benefits on Applying the New Weather Research and Forecast Model to National Weather Service Forecast Operations. Master s thesis, The Florida State University, Tallahassee, FL, of 5

3 Invited Talks Improving the Climate of Atmospheric GCMs that Employ Explicit Convection. American Geophysics Union, annual fall meeting, session on Fast Physics in Climate and Cloud Resolving Models. Dec. 11, Using Large Eddy Simulations to Develop and Test GCM Parameterizations. Argonne National Laboratory, Large Eddy Simulation Workshop, Lemont IL, Sept. 5, Success and Challenges on Implementing a Unified-PDF Based Cloud Scheme into Multiple CMIP5 GCMs. Center for Multiscale Modeling of Atmospheric Processes (CMMAP), Winter Team Meeting Plenary Talk, Boulder CO, Jan. 22, Improved Boundary Layer Cloud Representation in the Community Atmosphere Model with a Higher-Order Turbulence Closure. American Geophysical Union, annual fall meeting, session on Clouds and Multiscale Modeling of the Atmosphere. Dec. 7, Improving Turbulence and Cloud Representation in Cloud Resolving Models and Superparameterized General Circulation Models. Center for Multiscale Modeling of Atmospheric Processes (CMMAP), Winter Team Meeting Plenary Talk, Berkeley CA, Jan. 12, Improved Representation of Clouds and Turbulence in Numerical Models. National Center for Environmental Predictions (NCEP), Camp Springs, MD, Nov. 13, Skill Assessment and Benefits on Applying the New Weather Research and Forecast Model to National Weather Service Forecast Operations. National Oceanic and Atmospheric Administration (NOAA), Silver Springs, MD, Dec. 1, Object Oriented Verification of the Weather Research and Forecast Model for Precipitation and Sea Breeze Forecasts. Jacksonville National Weather Service Forecast Office, Oct. 26, of 5

4 Selected Conference Talks and Presentations Bogenschutz, P. A., S. K. Krueger, and C.-H. Moeng. Improving Cloud and Turbulence Processes in Cloud Resolving Atmospheric GCMs. 6th International Workshop on Global Cloud Resolving Modeling. Kobe Japan, September Bogenschutz, P. A., A. Gettelman, V.E. Larson, H. Morrison, C. Craig, and R. Storer. CAM Simulations Coupled with a Third-Order Moisture Turbulence Closure. CESM annual workshop, Atmosphere Modeling Working Group session. Breckenridge CO, June Bogenschutz, P. A., A. Gettelman, V.E. Larson, H. Morrison, C. Craig, and R. Storer. A Unified Cloud and Convection Scheme for Atmospheric GCMs. American Geophysics Union, annual fall meeting, session on Fast Physics in Climate and Cloud Resolving Models. San Francisco CA, December Bogenschutz, P. A. and S. K. Krueger. The Turbulent Length Scale Problem in Cloud Resolving Models. The 13 th Conference on Cloud Physics, AMS. Portland OR, June Bogenschutz, P. A. and S. K. Krueger. Assumed Probability Density Functions for a Transition Case from Stratocumulus to Trade-Wind Cumulus. Center for Multiscale Modeling of Atmospheric Processes (CMMAP) team meeting, Fort Collins CO, August Towards Improved Cloud Representation in Climate Models. Department of Atmospheric Sciences Seminar, Univeristy of Utah, Salt Lake City, UT, March 4, Bogenschutz, P. A., S. K. Krueger, and M. Zulauf. Aircraft Comparisons and Grid Dependence Studies of University of Utah Large Eddy Simulation. Center for Multiscale Modeling of Atmospheric Processes (CMMAP) team meeting, Fort Collins CO, August Bogenschutz, P., L. R. Bernardet, J. Snook, and A. Loughe. WRF Forecasts Over the Southeast United States: Does a Larger Domain Lead to Better Results? 6 th WRF/15 th MM5 Users Workshop, NCAR, Boulder CO, June Bogenschutz, P., P. Ruscher, P. Welsh, J. Mahoney, J. A. McGinley, M. Kay, B. Shaw, J. Smart, J. Savadel and J. McQueen: Summer Season Verification of the First NWS Operational WRF Model Forecasts From the NOAA Coastal Storms Initiative Project in Northeast Florida. 20 th Conf. on Wea. Anal. And Forecasting/16 th Conf. on NWP, AMS, Seattle WA, January Awards Academic Experience 2012 Recipient of the Edward Zipser Excellence in Graduate Research award. University of Utah, Department of Atmospheric Sciences. The Florida State University, Tallahassee, FL USA Teaching Assistant September 2004 to December 2004 Introduction to Climatology Duties included grading homework, helping students with assignments, and teaching coursework when professor was absent. Meteorology Computations Duties included grading statistics homework and quizzes, helping students with FORTRAN lab assignments, and teaching FORTRAN labs when professor was absent. 4 of 5

5 The University of Utah, Salt Lake City, UT USA Teaching Assistant January 2006 to May 2006 Environmental Statistics Duties included grading homework and tests, and helping students with MAT- LAB lab assignments. Professional Services Reviewer for Journal of Atmospheric Sciences, Nature, Journal of Climate, Journal of Geophysical Research, and Journal of Advances in Modeling Earth Systems Technical Skills Operating Systems: Windows, Mac OS X, Linux Programming: Fortran 77, Fortran 90, C, C++, MATLAB, IDL, UNIX shell scripting Computer Applications: TEX (L A TEX, BibTEX, PSTricks), most common productivity packages (for Windows, OS X, and Linux platforms), Vim Graduate Course Work Partial Differential Equations, Dynamics I, Dynamic Climatology, Dynamics II, Synoptic Meteorology II, Air-Sea Boundary Layer, Physical Meteorology, Time Series Analysis, Tropical Meteorology I, Tropical Meteorology II, Meteorological Computations, Numerical Weather Prediction, Boundary Layer Meteorology, Cloud System Modeling, Global Climatology 5 of 5

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