Cross-validation of inferred daytime airborne CO2 urban-regional scale surface fluxes with eddy-covariance observations and emissions inventories in Greater London
Item
Title (Dublin Core)
Cross-validation of inferred daytime airborne CO2 urban-regional scale surface fluxes with eddy-covariance observations and emissions inventories in Greater London
Description (Dublin Core)
Data obtained from eleven flight surveys on six days during October 2011 were used to characterize the urban CO<sub>2</sub> dome in Greater London (GL) and to calculate CO<sub>2</sub> fluxes at the city scale. Flights crossed GL along two transects (SW-NE and SSE-NNW) at an altitude of 360 m. Increments as high as 23 ppmv were measured. The maximum CO<sub>2</sub> mixing ratios were localized over GL under low wind speeds, whereas a displacement of the urban plume downwind from the centre of the urban area occurred during high wind speeds. The urban-regional surface CO<sub>2</sub> flux was calculated for four days by the Integrative Mass Boundary Layer (IMBL) method. The diurnal CO<sub>2</sub> flux in GL obtained from the aircraft observations ranged from 46 to 104 μmol CO<sub>2</sub> m<sup>−2</sup> s<sup>−1</sup> during the day time. The mean CO<sub>2</sub> fluxes estimated from the IMBL method were statistically similar to those observed by eddy-covariance systems located in central London and a spatially integrated emissions inventory for GL. This study provides an important cross-validation of two independent measurement-based methods to infer the contribution of urban areas to climate change in terms of CO<sub>2</sub> surface fluxes, both of which complement bottom-up emissions inventories. The uncertainties of fluxes estimated by the IMBL method are considered and the limits of implementation of atmospheric methods to infer city-scale fluxes are discussed.
Creator (Dublin Core)
Font, A.
Grimmond, C. S. B.
Morguí, J.-A.
Kotthaus, S.
Priestman, M.
Barratt, B.
Date (Dublin Core)
2018-08-10
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acpd-13-13465-2013
https://acp.copernicus.org/preprints/acp-2013-258/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



