HR: 0800h
AN: A41D-05 [Abstracts]
TI: Advanced Research WRF (ARW) Modeled Low-level Jet Climatology Compared to Observed Climatologies
AU: Storm, B
EM: brandon.storm@ttu.edu
AF: Texas Tech University, Wind Science and Engineering Research Center, Lubbock, TX
79409, United States
AU: * Basu, S
EM: sukanta.basu@ttu.edu
AF: Texas Tech University, Wind Science and Engineering Research Center, Lubbock, TX
79409, United States
AU: Dudhia, J
EM: dudhia@ucar.edu
AF: National Center for Atmospheric Research, Mesoscale and Microscale Meteorology
Division, Boulder, CO , United States
AB:
Nocturnal low-level jets (LLJs) are common features observed in the Great Plains region of the United States.
LLJs play a key factor in initiating and sustaining mesoscale convective systems and other severe convective
storm modes in the Great Plains. The LLJ in the Great Plains can also be a key source of moisture transport into
the region which is crucial for severe weather development and shown important for widespread flooding.
Knowing the climatology of such events is important so an understanding of the importance of the LLJ in severe
weather can be furthered.
Several observational studies have been conducted to determine the climatology of LLJs over the Great Plains.
However these studies are limited due to the spatial restraints. Using point measurements makes it nearly
impossible to determine the spatial structure of LLJs. Using a NWP model lessens this restraint, though grid
spacing and frequency of the model output is still problematic using operational forecasts.
This study investigates how well the operational Advanced Research WRF (ARW) forecasts represent the LLJ
climatology of the region centered on the ARM site along the Kansas/Oklahoma border using 6 months (June-
Sept.) of 3 hourly outputs with 12 km grid spacing. The NCAR's operational ARW is run in 36/12 km two-way
nested configuration and provides a 48 h forecast from 00 Z initialization utilizing 40 km Eta fields. Preliminary
results indicate that the ARW has similar climatology characteristics (i.e. frequency, max time occurrence,
dominant direction) to the previous observational studies. To forecast LLJs, accurate representation of the PBL is
crucial, which is also important for being able to forecast many high impact events. If the WRF can be shown to
produce a similar climatology to that what has been observed, we gain more confidence in WRF and its PBL
parameterizations.
Since the ARW shows promise of representing the LLJ climatology of the ARM site closely to what has been
found in the observational studies, the ARW could be used to get a better understanding on the frequency of the
LLJ over other sites within the Great Plains. This information could be further used to understand the importance
of the LLJ in moisture transportation. It is also possible for the ARW to be used to further investigate the forcing
mechanisms of LLJs which is yet not fully understood. A better understanding of LLJ development could lead to
greater improvement in forecasts and severe weather initiation.
DE: 3307 Boundary layer processes
DE: 3322 Land/atmosphere interactions (1218, 1631, 1843)
DE: 3329 Mesoscale meteorology
DE: 3355 Regional modeling
SC: Atmospheric Sciences [A]
MN: 2007 Joint Assembly