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Convection forced by a descending dry layer and low-level moist convergence Cover

Convection forced by a descending dry layer and low-level moist convergence

Open Access
|Jan 2009

Abstract

A narrow line of convective showers was observed over southern England on 18 July 2005 during the Convective Storm Initiation Project (CSIP). The showers formed behind a cold front (CF), beneath two apparently descending dry layers (i.e. sloping so that they descended relative to the instruments observing them). The lowermost dry layer was associated with a tropopause fold from a depression, which formed 2 d earlier from a breaking Rossby wave, located northwest of the UK. The uppermost dry layer had fragmented from the original streamer due to rotation around the depression (This rotation was also responsible for the observations of apparent descent—ascent would otherwise be seen behind a CF). The lowermost dry layer descended over the UK and overran higher θw air beneath it, resulting in potential instability. Combined with a surface convergence line (which triggered the convection but had less impact on the convective available potential energy than the potential instability), convection was forced up to 5.5 km where the uppermost dry layer capped it. The period when convection was possible was very short, thus explaining the narrowness of the shower band. Convective Storm Initiation Project observations and model data are presented to illustrate the unique processes in this case.

Language: English
Page range: 250 - 263
Submitted on: Jun 25, 2008
Accepted on: Nov 12, 2008
Published on: Jan 1, 2009
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2009 Andrew Russell, Geraint Vaughan, Emily G. Norton, Hugo M. A. Ricketts, Cyril J. Morcrette, Tim J. Hewison, Keith. A. Browning, Alan M. Blyth, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.