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Veröffentlichungen



DLR Veröffentlichungen über DGV

  1. Willert C, Stockhausen G, Klinner J, Lempereur C, Barricau P, Loiret P, Raynal JC (2006) Performance and accuracy investigations of two Doppler global velocimetry systems applied in parallel. 13th Intl Symp Applic of Laser Techniques to Fluid Mechanics, Lisbon, Portugal ( PDF)
  2. Lempereur C, Barricau P, Gleyzes C, Willert C, Stockhausen G, Klinner J (2006) Doppler Global Velocimetry in wind tunnels Implementation issues and performance analysis. 13th Intl Symp Applic Laser Techniques to Fluid Mechanics, Lisbon, Portugal (PDF)
  3. Willert C, Hassa C, Stockhausen G, Jarius M, Voges M, Klinner J (2006) Combined PIV and DGV applied to a pressurized gas turbine combustion facility. Meas Sci Technol (to appear)
    (PDF version from PIV’05 conference, Pasadena (CA))
  4. 4.Willert C, Stockhausen G, Beversdorff M, Klinner J, Lempereur C, Barricau P, Quest J, Jansen U (2005) Application of Doppler global velocimetry in cryogenic wind tunnels. Exp Fluids 39:420-430
    (PDF version from 2004 Lisbon symposium)
  5. Willert C (2005)Doppler global velocimetry - Fundamentals, implementation and selected applications. VKI Lecture Series 2005-01: “Advanced Measurement Techniques for Supersonic Flows”, von Karman Institute of Fluid Dynamics, Brussels, ISBN 2-930389-57-5
  6. Willert C, Lempereur C, Barricau P, Wernert P, Martinez B (2005) Applications of Doppler global velocimetry in transonic and supersonic wind tunnels. VKI Lecture Series 2005-01: “Advanced Measurement Techniques for Supersonic Flows”, von Karman Institute of Fluid Dynamics, Brussels, ISBN 2-930389-57-5
  7. Fischer M, Stockhausen G, Heinze J, Seifert M, Mueller M, Schodl R (2004) Development of Doppler Global Velocimetry (DGV) measurement devices and combined application of DGV and OH*-chemiluminescence imaging to gas turbine combustor. 12th Intl Symp Applic Laser Techniques to Fluid Mechanics, 12-15 July, Lisbon, Portugal ( PDF)
  8. Stockhausen G, Fischer M, Heinze J, Müller M (2004) Anwendung von DGV in heissen Brennkammern. In: Ruck B, Leder A, Dopheide D [Editors]: “Lasermethoden in der Strömungsmesstechnik”, 12. Fachtagung GALA, S. 11.1 - 11.6, Karlsruhe, 7-9 Sept, ISBN 3-9805613-1-3 (PDF)
  9. Schodl R, Röhle I, Willert C, Fischer M, Heinze J, Laible C, Schilling T (2002) Doppler Global Velocimetry for the analysis of combustor flow. Aerospace Science and Technology 6:481 – 493
  10. Schodl R, Willert C, Roehle I, Heinze J, Foerster W, Fischer, M, Beversdorff, M (2002) Optical Diagnostic Techniques in Turbomachinery. 22nd AIAA Aerodynamic Measurement Technology and Ground Testing Conference, St. Louis, Missouri, USA, 24-27 June, AIAA-2002-3038
  11. Roehle I, Willert C (2001) Extension of Doppler global velocimetry to periodic flows. Meas Sci Technol 12:420-431
  12. Roehle I, Schodl R, Voigt P, Willert C (2000) Recent developments and applications of quantitative laser light sheet measuring techniques in turbomachinery components. Measurement Science & Technology 11:1023-1035
  13. Willert C, Bluemcke E, Beversdorff M, Unger W (2000) Application of phase-averaging Doppler global velocimetry to engine exhaust flows, 10th Intl. Symp. on Applications of Laser Techniques to Fluid Mechanics, 10-13 July, Lisbon, Portugal ( PDF)
  14. Heinze J, Fischer M, Röhle I, Schodl R (2000) DGV-Messungen in Flammen. In: Ruck B, Leder A, Dopheide D [Editors]: “Lasermethoden in der Strömungsmesstechnik“, Shaker Verlag, Aachen (Germany), 8. Fachtagung GALA, ISBN 3-8365-7809-0 (PDF)
  15. Fischer M, Heinze J, Matthias K, Roehle I (2000) Doppler global velocimetry in flames using a new developed, frequency stabilized, tunable, long pulse YAG laser, 10th Intl. Symp. on Applications of Laser Techniques to Fluid Mechanics, 10-13 July, Lisbon, Portugal ( PDF)
  16. Roehle I (1999) Laser-Doppler-Velocimetry auf der Basis frequenzselektiver Absorption: Aufbau und Einsatz eines Doppler Global Velocimeters, Doctoral Thesis (in German), DLR-FB-1999-40.
  17. RTO - Research & Technology Organization (1999) “Planar optical measurement methods for gas turbine components”, RTO Lecture Series 217, Neuilly-sur-Seine Cedex, France.
  18. Lehmann B, Roehle I (1998) A comparison of velocity-field data behind a double-swirl nozzle measured by means of Doppler-global and LDA techniques, 9th Intl Symp Applic of Laser Techniques to Fluid Mechanics, Lisbon, Portugal
  19. Roehle I, Willert C, Schodl, R (1998) Recent applications of three-dimensional Doppler global velocimetry in turbo-machinery, 9th Intl Symp Applic Laser Techniques to Fluid Mechanics, Lisbon, Portugal
  20. Roehle I (1998) Doppler global velocimetry VKI Lecture Series 1998-06: “Advanced Measurement Techniques”, von Karman Institute of Fluid Dynamics, Brussels, Belgium
  21. Roehle I, Schodl R (1997) Applications of three dimensional Doppler global velocimetry to turbo machinery and wind tunnel flows, 90th Symp AGARD-PEP on Advanced non-intrusive Instrumentation for Propulsion Engines, Brussels, Belgium
  22. Roehle I, Schodl R (1997) Applications of three dimensional Doppler global velocimetry to turbo machinery and wind tunnel flows, 7th Intl Conf Laser Anenometry Advances and Applications, Karlsruhe, Germany, pp. 387-395.
  23. Roehle I (1996) Three-dimensional Doppler global velocimetry in the flow of a fuel spray nozzle and in the wake region of a car, Flow Meas Instrum 7:287-294
  24. Roehle I (1993) Laser-Doppler-Velocimetry auf der Basis frequenzselektiver Absorption, Diploma Thesis (in German), DLR-IB-325-8-93

Selektierte Veröffentlichungen über DGV

  1. Komine H (1990) System for measuring velocity field of fluid flow utilizing a laser-Doppler spectral image converter, US Patent No. 4 919 536
  2. Komine H, Brosnan SJ, Litton AB, Stappaerts EA (1991) Real-time Doppler global velocimetry, AIAA 29th Aerospace Sciences Mtg., 7-10 January, Reno, NV, Paper-No. 91-0337.
  3. Meyers JF (1995) Development of Doppler global velocimetry as a flow diagnostics tool. Meas Sci Technol 6:769-783.
  4. Chan VSS, Heyes AL, Robinson DI, Turner JT (1995) Iodine absorption filters for Doppler global velocimetry, Meas Sci Technol 6:783-794.
  5. Meyers JF (1996) Evolution of Doppler global velocimetry data processing, 8th Intl. Symp. on Appl. of Laser Techniques to Fluid Mechanics, 8-11 July, Lisbon, Portugal, Paper-No. 11-1.
  6. McKenzie RL (1996) Measurement capabilities of planar Doppler velocimetry using pulsed lasers, Applied Optics 35(6):948-964.
  7. McKenzie RL (1997) Planar Doppler velocimetry for large-scale wind tunnel applications, AGARD Fluid Dynamics Panel 81st Mtg. and Symp. on Advanced Aerodynamic Measurement Technology, 22-25 Sept., Seattle (WA), USA, Paper-No. 9
  8. Elliot GS, Beutner TJ (1999) Molecular filter based planar Doppler velocimetry. Prog. Aero Sci 35:799-845
  9. Samimy M, Wernet MP (2000) Review of planar multiple-component velocimetry in high-speed flows. AIAA Journal 38:553-574
  10. Wernet P (2004) Planar particle imaging Doppler velocimetry: a hybrid PIV/DGV technique for three-component velocity measurements. Meas Sci Technol 15:2011-2028

Kontakt
Dr.phil. Christian Willert
Deutsches Zentrum für Luft- und Raumfahrt (DLR)

Institut für Antriebstechnik
, Triebwerksmesstechnik
Köln

Tel.: +49 2203 601-2308

Dr.rer.nat. Guido Stockhausen
Deutsches Zentrum für Luft- und Raumfahrt (DLR)

Institut für Antriebstechnik
, Triebwerksmesstechnik
Köln

Tel.: +49 2203 601-3536

Links
The principle of DGV
Phase-resolved measurements of engine exhaust flows
Measurement in the wake of a car model
Measurement inside an engine inlet duct
Measurement inside a cold combustion chamber
Laser stabilization
Light sheet optics
DGV-camera
System specifications
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