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SWI – Storm and Wastewater Informatics

UWT seminar 2010 Jesper Ellerbæk Nielsen ” Combining C-band and X-band weather radars for accurate precipitation measurements over urban areas” Supervisors: Michael R. Rasmussen (AAU) Rasphal Gill (DMI) Niels Ejner Jensen (DHI). SWI – Storm and Wastewater Informatics. WP 1. WP 2. WP 3. WP 4.

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SWI – Storm and Wastewater Informatics

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  1. UWT seminar 2010Jesper Ellerbæk Nielsen”Combining C-band and X-band weather radars for accurate precipitation measurements over urban areas”Supervisors:Michael R. Rasmussen (AAU)Rasphal Gill (DMI)NielsEjner Jensen (DHI)

  2. SWI – Storm and Wastewater Informatics

  3. WP 1 WP 2 WP 3 WP 4 WP 5 SWI – Storm and Wastewater Informatics • The PhD project is located within • WP2 • Aalborg University • DMI • DHI • 2 PhD • 2 Post Doc

  4. WP 1 WP 2 WP 3 WP 4 WP 5 SWI – Storm and Wastewater Informtic • The purpose of the project is to • improve the overall data quality • of weather radar precipitation • measurements.

  5. Weather radar measurements Its all about timing! It measures the electromagnetic waves reflected by the precipitation Indirect measurement of precipitation • How does the weather radar work?

  6. The traditional tipping bucked rain gauge

  7. Tipping bucked rain gauges - Rimco Read Contact • The tipping bucked rain gauge is measuring the weight of the water. Tipping bucked Outlet Bubble level

  8. C-band and X-band radars C-Band radar operated by DMI LAWR X-Band radar developed by DMI

  9. Weathers in Denmark X-bånd (Århus) X-bånd (Aalborg) X-bånd (Hvidovre) X-Bånd (Hørsholm) X-bånd (Odense) X-bånd (Vejle) X-bånd (Egedal) Marine X-band Radars, range 60 km Developed by DHI 500 x 500 m , 100 x 100 m spatial resolution, 5 min. temporal resolution C-band Radars, range 240 km Danish Metrological Institute (DMI) 2000 x 2000 m spatial resolution 10 min. temporal resolution

  10. Spatial resolution 2 x 2 km (C-Band) Kilde: COWI A/S og Aalborg kommune

  11. Spatial resolution 100 x 100 m (LAWR X-Band) Kilde: COWI A/S og Aalborg kommune

  12. But why all these radars? – Hypothesis for the project • It is possible to combine X-band radars with C-band weather radars, so that the • combination outperforms the individual radar. • Strategy: • Strengths of one radar type can compensate • the other radar types weaknesses. • Range • Resolution • Atmospheric attenuation • Ground clutter

  13. Exampel18/7-2009 C-band X-band

  14. Challenges in combination of radar data • What is detected by the radar, and how is the atmosphere integrated?

  15. Vertikal scanning radar • Based on a Furuno 1715 X-band marine radar a highly flexible radar has been • develobed • The purpose of the radar is by profiling the precipitation it will reveal what the • individual radar detects.

  16. Micro Radar Test Bed Stepper motor controlling the direction Analog - Digital converter Furuno 1715 display unit Furuno 1715 antenna Laptop managing the stream of data and the direction of the antenna

  17. Laser based distrometer – OTT Parsivel Describing the precipitation by drop size and drop velocity

  18. Laser based distrometer – OTT Parsivel

  19. Strategy for combination • Spectral analysis: • Break down the radar images into its spectral • components • Use the components as building bricks in • rebuild of a single result with properties of • both radars

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