Back to Search
Start Over
Towards quantifying mesoscale flows in the troposphere using Raman lidar and Sondes
- Source :
- Nineteenth International Laser Radar Conference.
- Publication Year :
- 1998
- Publisher :
- United States: NASA Center for Aerospace Information (CASI), 1998.
-
Abstract
- Water vapor plays an important role in the energetics of the boundary layer processes which in turn play a key role in regulating regional and global climate. It plays a primary role in Earth's hydrological cycle, in radiation balance as a direct absorber of infrared radiation, and in atmospheric circulation as a latent heat energy source, as well as in determining cloud development and atmospheric stability. Water vapor concentration, expressed as a mass mixing ratio (g kg(exp -l)), is conserved in all meteorological processes except condensation and evaporation. This property makes it an ideal choice for studying many of the atmosphere's dynamic features. Raman scattering measurements from lidar also allow retrieval of water vapor mixing ratio profiles at high temporal and vertical resolution. Raman lidars sense water vapor to altitudes not achievable with towers and surface systems, sample the atmosphere at much higher temporal resolution than radiosondes or satellites, and do not require strong vertical gradients or turbulent fluctuations in temperature that is required by acoustic sounders and radars. Analysis of highly-resolved water vapor profiles are used here to characterize two important mesoscale flows: thunderstorm outflows and a cold front passage. The data were obtained at the Atmospheric Radiation Measurement Site (CART) by the groundbased Department of Energy/Sandia National Laboratories lidar (CART Raman lidar or CARL) and Goddard Space Flight Center Scanning Raman Lidar (SRL). A detailed discussion of the SRL and CARL performance during the IOPs is given by others in this meeting.
- Subjects :
- Geophysics
Subjects
Details
- Language :
- English
- Database :
- NASA Technical Reports
- Journal :
- Nineteenth International Laser Radar Conference
- Publication Type :
- Report
- Accession number :
- edsnas.19980227673
- Document Type :
- Report