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Can liquid cloud microphysical processes be used for vertically pointing cloud radar calibration?
- Source :
- Atmospheric Measurement Techniques, Vol 12, Pp 3151-3171 (2019)
- Publication Year :
- 2019
- Publisher :
- Copernicus Publications, 2019.
-
Abstract
- Cloud radars are unique instruments for observing cloud processes, but uncertainties in radar calibration have frequently limited data quality. Thus far, no single robust method exists for assessing the calibration of past cloud radar data sets. Here, we investigate whether observations of microphysical processes in liquid clouds such as the transition of cloud droplets to drizzle drops can be used to calibrate cloud radars. Specifically, we study the relationships between the radar reflectivity factor and three variables not affected by absolute radar calibration: the skewness of the radar Doppler spectrum (γ), the radar mean Doppler velocity (W), and the liquid water path (LWP). For each relation, we evaluate the potential for radar calibration. For γ and W, we use box model simulations to determine typical radar reflectivity values for reference points. We apply the new methods to observations at the Atmospheric Radiation Measurement (ARM) sites North Slope of Alaska (NSA) and Oliktok Point (OLI) in 2016 using two 35 GHz Ka-band ARM Zenith Radars (KAZR). For periods with a sufficient number of liquid cloud observations, we find that liquid cloud processes are robust enough for cloud radar calibration, with the LWP-based method performing best. We estimate that, in 2016, the radar reflectivity at NSA was about 1±1 dB too low but stable. For OLI, we identify serious problems with maintaining an accurate calibration including a sudden decrease of 5 to 7 dB in June 2016.
- Subjects :
- Atmospheric Science
010504 meteorology & atmospheric sciences
Cloud computing
01 natural sciences
law.invention
symbols.namesake
law
Calibration
Radar
lcsh:TA170-171
Zenith
Physics::Atmospheric and Oceanic Physics
0105 earth and related environmental sciences
Remote sensing
010505 oceanography
business.industry
lcsh:TA715-787
lcsh:Earthwork. Foundations
lcsh:Environmental engineering
Skewness
symbols
Environmental science
Liquid water path
Drizzle
business
Doppler effect
Subjects
Details
- Language :
- English
- ISSN :
- 18678548 and 18671381
- Volume :
- 12
- Database :
- OpenAIRE
- Journal :
- Atmospheric Measurement Techniques
- Accession number :
- edsair.doi.dedup.....51653f4305d12456e1e4c9639ce61e73