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HYSPLIT Video Tutorials

Last Revised February 2018 Revision 927

These series of videos (mp4) cover the same material as presented in the online HYSPLIT Tutorial. The instructor is Roland Draxler, consultant and former developer of the HYSPLIT model. Transcripts of each video are also available using the links provided (Word/PDF). A separate video is provided for each section of the tutorial.


Introduction (1:41) - (Word / PDF)

  1. Installing HYSPLIT
    1. Windows PC (14:18) - (Word / PDF)
    2. Apple MAC OSX (10:16) - (Word / PDF)
    3. UNIX or LINUX (12:41) - (Word / PDF)
    4. HYSPLIT directories (12:04) - (Word / PDF)
    5. Exercise #1 (3:17) - (Word / PDF)

  2. Testing the installation
    1. Graphical user interface operation (13:03) - (Word / PDF)
    2. Test trajectory calculation (7:45) - (Word / PDF)
    3. Test air concentration calculation (8:10) - (Word / PDF)
    4. Batch file scripting (10:15) - (Word / PDF)
    5. Using CAPTEX data in this tutorial (3:47) - (Word / PDF)
    6. Exercise #2 (4:57) - (Word / PDF)

  3. Gridded Meteorological Data Files
    1. Tutorial meteorological data (8:21) - (Word / PDF)
    2. FTP Meteorological data (12:10) - (Word / PDF)
    3. Convert meteorological data (12:05) - (Word / PDF)
    4. Meteorological data servers (5:03) - (Word / PDF)
    5. User entered meteorological data (11:21) - (Word / PDF)
    6. Exercise #3 (4:07) - (Word / PDF)

  4. Trajectory calculations
    1. The trajectory calculation (12:36) - (Word / PDF)
    2. The trajectory equation (7:15) - (Word / PDF)
    3. Estimating mixed layer depths (8:14) - (Word / PDF)
    4. Mixed layer trajectories (14:35) - (Word / PDF)
    5. Computational trajectory error (12:23) - (Word / PDF)
    6. Meteorology trajectory error (8:44) - (Word / PDF)
    7. Absolute trajectory error (13:03) - (Word / PDF)
    8. Exercise #4 (6:09) - (Word / PDF)

  5. Trajectory options
    1. Trajectory vertical motion (15:02) - (Word / PDF)
    2. Trajectory flow field (7:03) - (Word / PDF)
    3. Trajectories and terrain (14:39) - (Word / PDF)
    4. Multiple trajectories in time (14:45) - (Word / PDF)
    5. Multiple trajectories in space (8:57) - (Word / PDF)
    6. Meteorological grid ensemble (13:11) - (Word / PDF)
    7. Exercise #5 (7:56) - (Word / PDF)

  6. Trajectory statistics
    1. Frequency analysis (16:57) - (Word / PDF)
    2. Cluster analysis (13:45) - (Word / PDF)
    3. Clustering equations (5:14) - (Word / PDF)
    4. Source geolocation (16:55) - (Word / PDF)
    5. Exercise #6 (6:55) - (Word / PDF)
    6. Working directory cleanup (3:53) - (Word / PDF)

  7. Air Concentration Calculations
    1. Reconfiguring the test case (9:54) - (Word / PDF)
    2. Air concentration equations (14:40) - (Word / PDF)
    3. Single particle trajectory (12:31) - (Word / PDF)
    4. Single particle animation (8:27) - (Word / PDF)
    5. Releasing multiple particles (16:33) - (Word / PDF)
    6. Display particle positions (8:35) - (Word / PDF)
    7. Particle distributions using puffs (18:59) - (Word / PDF)
    8. Downwind puff splitting (12:25) - (Word / PDF)
    9. Exercise #7 (13:06) - (Word / PDF)

  8. Configuring the CAPTEX simulation
    1. Configure for CAPTEX release #2 (18:50) - (Word / PDF)
    2. Air concentration display options (20:29) - (Word / PDF)
    3. Air concentration utilities (15:16) - (Word / PDF)
    4. Air concentration statistics (23:05) - (Word / PDF)
    5. Test and optimize HYSPLIT inputs (12:44) - (Word / PDF)
    6. Simultaneous multiple grids (13:34) - (Word / PDF)
    7. Exercise #8 (13:45) - (Word / PDF)

  9. Air Concentration Parameter Sensitivity
    1. Case study base configuration (15:18) - (Word / PDF)
    2. Base configuration optimization (15:11) - (Word / PDF)
    3. Turbulence parameterizations (21:59) - (Word / PDF)
    4. Stability computation method (16:13) - (Word / PDF)
    5. Mixed layer depth calculation (13:14) - (Word / PDF)
    6. Turbulent kinetic energy (20:29) - (Word / PDF)
    7. Exercise #9 (7:51) - (Word / PDF)

  10. Alternate display options
    1. Display scripting (4:44) - (Word / PDF)
    2. County map boundaries (10:00) - (Word / PDF)
    3. Enhanced graphic labels (4:36) - (Word / PDF)
    4. Creating KML/KMZ for Google Earth (6:08) - (Word / PDF)
    5. Creating HYSPLIT shapefiles (8:21) - (Word / PDF)
    6. Shapefile overlays (10:31) - (Word / PDF)
    7. Exercise #10 (8:39) - (Word / PDF)

  11. Pollutant transformations and deposition
    1. Linear mass conversions (23:02) - (Word / PDF)
    2. Dry deposition for gases (23:59) - (Word / PDF)
    3. Dry deposition for particles (17:36) - (Word / PDF)
    4. Wet deposition for gases (11:44) - (Word / PDF)
    5. Wet deposition for particles (9:40) - (Word / PDF)
    6. Exercise #11 (6:45) - (Word / PDF)

  12. Source attribution methods
    1. Counting particle trajectories (11:18) - (Word / PDF)
    2. Emissions from a known location (15:47) - (Word / PDF)
    3. Backward versus forward dispersion (17:36) - (Word / PDF)
    4. Simulations from multiple samplers (25:55) - (Word / PDF)
    5. Source-receptor matrix approach (20:12) - (Word / PDF)
    6. Source location statistics (11:53) - (Word / PDF)
    7. Solving the coefficient matrix (29:00) - (Word / PDF)
    8. Cost function minimization of the CM (13:27) - (Word / PDF)
    9. Exercise #12 (8:49) - (Word / PDF)

  13. Air concentration Uncertainty
    1. Meteorological grid ensemble (20:20) - (Word / PDF)
    2. Turbulence ensemble (11:54) - (Word / PDF)
    3. Physics ensemble (12:58) - (Word / PDF)
    4. Multiple meteorological data (25:24) - (Word / PDF)
    5. Ensemble verification (9:16) - (Word / PDF)
    6. Ensemble reduction techniques (14:49) - (Word / PDF)
    7. Exercise #13 (12:13) - (Word / PDF)

  14. Wildfire smoke and dust storms
    1. Fire smoke (27:10) - (Word / PDF)
    2. Dust using a constant threshold (28:39) - (Word / PDF)
    3. Dust using a variable threshold (14:44) - (Word / PDF)
    4. Dust setting emission factors (10:22) - (Word / PDF)
    5. Exercise #14 (7:21) - (Word / PDF)

  15. Radioactive pollutants and dose
    1. Basic radioactive decay and dose (24:46) - (Word / PDF)
    2. Long-Range I-131 from Fukushima NPP (23:40) - (Word / PDF)
    3. Dose calculations from Fukushima NPP (34:34) - (Word / PDF)
    4. Exercise #15 (7:30) - (Word / PDF)

  16. Volcanic eruptions with gravitational settling
    1. Volcanic eruptions (15:54) - (Word / PDF)
    2. Restarting the model from PARDUMP (12:45) - (Word / PDF)
    3. Assimilation of satellite data (11:07) - (Word / PDF)
    4. Particle size distributions (14:23) - (Word / PDF)
    5. Creating an EMITIMES emissions file (21:42) - (Word / PDF)
    6. Exercise #16 (9:18) - (Word / PDF)

  17. Custom simulations
    1. Dynamic or Lagrangian sampling (12:59) - (Word / PDF)
    2. Volume or mass mixing ratios (18:46) - (Word / PDF)
    3. Short-range dispersion (20:37) - (Word / PDF)
    4. Polar coordinate concentration grid (9:37) - (Word / PDF)
    5. Exercise #17 (7:22) - (Word / PDF)