HR: 1340h
AN: A13A-0901 [Abstracts]
TI: A New Concept For Calculating the Height of Planetary Boundary Layer From Lidar Returns Using a Spatial
Variance Algorithm
AU: * Lewandowski, P A
EM: piotr-lewandowski@uiowa.edu
AF: IIHR - Hydroscience && Engineering, The University Of Iowa
3007 Sierra Ct. SW, Iowa City, IA 52240
United States
AU: Eichinger, W E
EM: william-eichinger@uiowa.edu
AF: IIHR - Hydroscience && Engineering, The University Of Iowa
3007 Sierra Ct. SW, Iowa City, IA 52240
United States
AB:
There are a wide variety of different methods to determine the Planetary Boundary Layer (PBL) from lidar data. All of these
methods have limited applicability. This study presents a new concept of retrieving the PBL height from single lidar returns.
The new algorithm is based on a spatial variance algorithm. This concept is introduced in two theoretical cases as well as
two real situations. In this study, two time-dependant lidar datasets are used to perform computations for the variance
algorithm along with derivative, logarithmic derivative and threshold algorithms. The results obtained using all the methods
are compared in different representations and also compared with boundary layer height obtained form independent potential
temperature profile measurements. The results are then used for further analysis of PBL height in larger time-scale using the
well established Deardorff algorithm. Due to the simplicity of this new approach, it could be used for automated
determination of PBL height and would be a valuable option for other algorithms.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
DE: 3307 Boundary layer processes
DE: 3314 Convective processes
DE: 3360 Remote sensing
SC: Atmospheric Sciences [A]
MN: Fall Meeting 2005