Physics
Scientific paper
Apr 2009
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2009georl..3608809h&link_type=abstract
Geophysical Research Letters, Volume 36, Issue 8, CiteID L08809
Physics
4
Atmospheric Composition And Structure: Troposphere: Composition And Chemistry, Atmospheric Composition And Structure: Troposphere: Constituent Transport And Chemistry, Cryosphere: Snow (1827, 1863)
Scientific paper
Continuous surface-layer ozone flux measurements over the polar, year-round snowpack at Summit, Greenland, resulted in deposition velocities (v d ) that were smaller than most previous assumptions and model inputs. Substantial seasonal differences were seen in the ozone v d behavior. Spring, daytime ozone v d values showed low variability and were consistently ≤0.01 cm s-1. During summer, ozone fluxes displayed distinct diurnal cycles, and evidence for regular occurrences of bi-directional behavior. Summer, daytime v d ranged between ˜0.01 to 0.07 cm s-1. Maximum summertime downward fluxes (ozone deposition) coincided with the hours of maximum solar radiation, i.e., noon-afternoon. During summer nighttime hours upward ozone fluxes were observed. These upward fluxes were interpreted as ozone production in a shallow layer near and above the snow surface with resulting upward ozone fluxes out of the shallow surface layer. Comparisons with published observations from temperate, midlatitude sites suggest different controls and behavior of ozone fluxes, and that ozone fluxes over snow depend on a myriad of parameters, including solar irradiance, snow chemical and physical properties, snowpack depth, and the type of substrate underneath the snow.
Bocquet Florence
Cohen Lana D.
Grachev Andrey
Helmig Detlev
Neff William
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