NASA NTRS · 20150000727
Estimating Planetary Boundary Layer Heights from NOAA Profiler Network Wind Profiler Data
Abstract
An algorithm was developed to estimate planetary boundary layer (PBL) heights from hourly archived wind profiler data from the NOAA Profiler Network (NPN) sites located throughout the central United States. Unlike previous studies, the present algorithm has been applied to a long record of publicly available wind profiler signal backscatter data. Under clear conditions, summertime averaged hourly time series of PBL heights compare well with Richardson-number based estimates at the few NPN stations with hourly temperature measurements. Comparisons with clear sky reanalysis based estimates show that the wind profiler PBL heights are lower by approximately 250-500 m. The geographical distribution of daily maximum PBL heights corresponds well with the expected distribution based on patterns of surface temperature and soil moisture. Wind profiler PBL heights were also estimated under mostly cloudy conditions, and are generally higher than both the Richardson number based and reanalysis PBL heights, resulting in a smaller clear-cloudy condition difference. The algorithm presented here was shown to provide a reliable summertime climatology of daytime hourly PBL heights throughout the central United States.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Molod, Andrea M., Salmun, H., Dempsey, M. 2015-01-01. Estimating Planetary Boundary Layer Heights from NOAA Profiler Network Wind Profiler Data. https://ntrs.nasa.gov/citations/20150000727
Cite the original work for its findings. Save a collection to share your selection of sources.