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Campaign data for parameterization tests: Examples from MAP‘99 VERTIKATOR’02, AWIATOR‘03

Campaign data for parameterization tests: Examples from MAP‘99 VERTIKATOR’02, AWIATOR‘03. Hans Volkert, Thorsten Fehr, Christoph Kiemle,. Oliver Reitebuch, Arnold Tafferner and Martin Weißmann. Institut für Physik der Atmosphäre. DLR Oberpfaffenhofen, D. Evelyne Richard.

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Campaign data for parameterization tests: Examples from MAP‘99 VERTIKATOR’02, AWIATOR‘03

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  1. Campaign data for parameterization tests: Examples from MAP‘99 VERTIKATOR’02, AWIATOR‘03 Hans Volkert, Thorsten Fehr, Christoph Kiemle, Oliver Reitebuch, Arnold Tafferner and Martin Weißmann Institut für Physik der Atmosphäre DLR Oberpfaffenhofen, D Evelyne Richard Laboratoire d‘Aérologie, CNRS & Université Paul Sabatier Toulouse, F

  2. Textbook knowledge: “Whenever possible, parameterizations should … be quantitatively validated against observations“ (Peixoto & Oort 1991) High resolution … … simulation models need special data, e.g from dedicated field campaigns Which variables and processes? here: wind, boundary layer, precipitation microphysics

  3. The campaigns MAP-SOP 1999 Mesoscale Alpine Programme Special Observing Period „Weather and Alps“ 7 Sept. – 15 Nov 1999 cf. Bougeault et al. 2001, BAMS 82, 433–462 wind QJ, Jan. 2003 B (No. 588), 129, 341-895 VERTIKATOR-02 Vertikaler Austausch, Trans- port und Orographie „Alpine Pumping“ July 2002, north of the Alps wind &precipitation AWIATOR-03 Wake Vortices at airports „Wake Vortex“ Aug. 2003, north of Pyrénées wind

  4. MAP-SOP 1999 IOP-15 8 Nov. north Föhn with waves

  5. (model) orography (x=1 km) 1.67–2.00 km • • • Rhone Aosta aircraft triptych: B-A-C-D , 8 Nov. 1999

  6. North Föhn 8 Nov. 1999 L ARPEGE ana. 12 UT 500 hPa: flow (max. 30 m/s) geopot. (=40 gpm) model: Meso-NH with four nests (32, 8, 2, 0.5 km)

  7. Drop-sounding: uniform wind direction dry moist ff dd T  rh

  8. Three drop-sondes in 2mins.: reproducibility 130355 130455 130555

  9. vertical velocity: trans-Alpine sections 18 legs 4 legs 10 legs +2 -2 F C obs E Aosta Rhone Rhone Valtellina obs + sim (--)

  10. vertical velocity: 2 & 1/2 km simulation +2 F -2 2 km C E Aosta Rhone Rhone Valtellina ½ km

  11. water vapour triptych: lidar-obs. vs. simulation 100 obs. 350 w (C130) 100 ppmv 100 200 sim. 350 mean diff. < 10% --> backs retrieval (s.p.=0.7)

  12. VERTIKATOR 2002 8, 9, 19 July Alpine pumping & generation of thunderstorms

  13. Airborne Doppler Lidar at DLR 10 µm-System WIND DLR/CNRS/CNES/Meteo-France vert. res. 250 m hor. res. 3 - 15 km accuracy 0.5 - 2 m/s 2 µm-System DLR/CTI-MAG1 100 m 3 - 10 km 0.2 - 2 m/s

  14. Data processing with averaging 3 scanner revolutions: 10 - 11 km Flight Track Falcon 8 July 2002 13:05 - 15:34 LT

  15. east-west gradient in speed (> 4 km) wind speed below 4 m/s (< 2.5 km) southwest northerly winds along the Alps up to 2.3 km WIND July 8, 2002, 14:10 - 14:27 LT Track Bodensee  Chiemsee Alpine Pumping !!!

  16. MM5 by L. Gantner, Uni München WIND and MM5 on July 8, 2002 Track Bodensee  Chiemsee WIND: top, 14:10 - 14:27 LT; MM5: bottom, 14:00 LT

  17. 19 July: 2µm Lidar and vertical velocity

  18. 9 July: Bistatic Doppler and polarimetric radar medium 40 km shallow steep

  19. medium 12 min later ... shallow steep

  20. medium shallow steep

  21. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 12:30 UT

  22. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 13:00 UT

  23. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 13:30 UT

  24. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 14:00 UT

  25. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 14:30 UT

  26. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 15:00 UT

  27. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 15:30 UT

  28. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 16:00 UT

  29. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 16:30 UT

  30. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 17:00 UT

  31. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 17:30 UT

  32. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 18:00 UT

  33. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 18:30 UT

  34. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 19:00 UT

  35. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 19:30 UT

  36. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 20:00 UT

  37. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 20:30 UT

  38. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 21:00 UT

  39. Meso-NH 2 km res. surf. wind, all hydromet., accum. precip. storm gene-ration @ Alps 21:30 UT

  40. AWIATOR 2003 27 August Diurnal cycle of surface profiles RASS vs. LM & MM5

  41. Modelling chain: LM–MM5–P2P Tarbes Pau Airport The Pyrenees MM5 vertical grid 2000 1800 1600 Wake Predictor P2P MM5 1400 1200 1000 800 LM 600 400 0 2 4 6 8 10 12 14 16 18 m/s Tarbes Airport MM5 forecast domain LM forecast domain (DWD)

  42. 00 UT virt. temperature wind speed

  43. 01 UT virt. temperature wind speed

  44. 02 UT virt. temperature wind speed

  45. 03 UT virt. temperature wind speed

  46. 04 UT virt. temperature wind speed

  47. 05 UT virt. temperature wind speed

  48. 06 UT virt. temperature wind speed

  49. 07 UT virt. temperature wind speed

  50. 08 UT virt. temperature wind speed

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