HR: 0800h
AN: H41D-0425 [Abstracts]
TI: A new generation high resolution lidar for atmospheric water vapor and temperature measurements in the
lower atmosphere
AU: Ristori, P
EM: pablo.ristori@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AU: * Serikov, I
EM: ilya.serikov@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AU: Froidevaux, M
EM: martin.froidevaux@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AU: Van den Bergh, H
EM: hubert.vandenbergh@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AU: Parlange, M B
EM: marc.parlange@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AU: simeonov, V
EM: valentin.simeonov@epfl.ch
AF: School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Federale de Lausanne
(EPFL), Lausanne, VD CH-1015
Switzerland
AB:
A new generation Raman lidar which measures water vapor and temperature at high spatial (1.5 m) and temporal (1 s) resolution
in the lower atmospheric boundary layer is presented. This system has particular advantages for field studies including:
ease of portability, almost constant signal to noise ratio for the first 500 m, accurate near land surface detection (10 m ),
operation in the solar blind region (suitable for daytime operation), high detection efficiency, and the first measurements
ever of temperature in the solar blind using pure rotational Raman spectra. The system and its operation will be described
and the first diurnal measurements of the lower atmosphere will be presented. This system is an critical new advance in
measurement technology to aid in our understanding of the impacts of land use/land cover changes and the interactions with
the atmosphere.
UR: http://eflum.epfl.ch
DE: 0394 Instruments and techniques
DE: 1818 Evapotranspiration
DE: 1843 Land/atmosphere interactions (1218, 1631, 3322)
DE: 1855 Remote sensing (1640)
DE: 3379 Turbulence (4490)
SC: Hydrology [H]
MN: Fall Meeting 2005