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On the small-scale dynamics of flow splitting in the Rhine valey during shallow foehn event

  • Météo-France/CNRS
  • Météo Suisse
  • University of Vienna

Research output: Contribution to journalArticlepeer-review

Abstract

Flow splitting in the Rhine valley has been observed with a transportable wind lidar (TWL) during a shallow-foehn event in the framework of the Mesoscale Alpine Programme (MAP). The Doppler lidar recorded in detail flow splitting, foehn wind gusts, and flow reversal. Such structures have not previously been observed with comparable detail by conventional in-situ instruments. In addition to the TWL, boundary-layer processes have been documented by means of rawinsondes and surface stations. This paper presents an analysis of the processes giving birth to flow splitting between the Seez and Rhine valleys during Intensive Observation Period (IOP) 5 (1-3 October 1999) by combining the collected data with hydraulic theory. The study shows that the splitting of the channelled flow is associated with (1) the existence of a stagnation point at the intersection of the Seez and Rhine valleys, and (2) the deflection of the flow by the lateral sidewalls of the valleys.

Original languageEnglish
Article number320277
Pages (from-to)277-296
Number of pages20
JournalBoundary-Layer Meteorology
Volume99
Issue number2
DOIs
Publication statusPublished - 1 Jan 2001

Keywords

  • Doppler lidar
  • Flow splitting
  • Foehn
  • Hydraulic modelling
  • Orographic flows
  • Valley flow

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