2021
DOI: 10.3389/frsen.2021.716951
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Planetary Boundary Layer Height Estimates From ICESat-2 and CATS Backscatter Measurements

Abstract: The lowest layer of the atmosphere in which all human activity occurs is called the Planetary Boundary Layer (PBL). All physical interactions with the surface, such as heat and moisture transport, pollution dispersion and transport happen in this relatively shallow layer. The ability to understand and model the complex interactions that occur in the PBL is very important to air quality, weather prediction and climate modeling. A fundamental and physically important property of the PBL is its thickness or heigh… Show more

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Cited by 21 publications
(14 citation statements)
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“…Using the Doppler effect, the radial velocity along the direction the laser beam can be retrieved and the distance between scatters (aerosols) in the beam path can be calculated [57][58] . The maximum detection range varies from 2.0 to 3.0 km depending on the micron-sized aerosol load in the atmosphere 59 . More detailed information about the measurements and calculation for PBLH can be found in our parallel work for the CALISHITO campaign.…”
Section: Planetary Boundary Layer (Pbl) Condition Determinationmentioning
confidence: 99%
“…Using the Doppler effect, the radial velocity along the direction the laser beam can be retrieved and the distance between scatters (aerosols) in the beam path can be calculated [57][58] . The maximum detection range varies from 2.0 to 3.0 km depending on the micron-sized aerosol load in the atmosphere 59 . More detailed information about the measurements and calculation for PBLH can be found in our parallel work for the CALISHITO campaign.…”
Section: Planetary Boundary Layer (Pbl) Condition Determinationmentioning
confidence: 99%
“…That paper demonstrated a substantial improvement in both number of layers detected and in horizontal resolution of the data product when the AI/ML analysis was used, although it was demonstrated using existing data sets. Work by Palm et al (2021) applied AI/ML algorithms to existing spaceborne data, detecting layer height and boundaries at greatly improved resolution. In this work we apply AI/ML-based algorithms for real-time detection of atmospheric features and determination of feature height during instrument operation.…”
Section: Real-time Feature Detectionmentioning
confidence: 99%
“…Furthermore, many of these platforms rely on the assumption of a strong gradient in a signal only at the top of the PBL and are likely unable to resolve mixed layering at multiple heights, especially layering that is above or within the PBL. Note that several groups are employing machine learning to identify where the PBL top is most likely located and to resolve the PBLH in areas of atmospheric stratification (Palm et al., 2021; Sleeman et al., 2020). Other investigations are using current and future low Earth orbit and geostationary passive sensors geared toward understanding the underlying atmospheric chemistry and dynamics of that impact PBLH retrievals in coastal regions (Loría‐Salazar et al., 2021; Turner & Ulrich, 2021; Wang et al., 2021).…”
Section: Representativeness Of Satellite Measurements In Coastal Regionsmentioning
confidence: 99%