Inverse modeling of GOSAT-retrieved ratios of total column CH4 and CO2 for 2009 and 2010
Item
Title (Dublin Core)
Inverse modeling of GOSAT-retrieved ratios of total column CH4 and CO2 for 2009 and 2010
Description (Dublin Core)
This study investigates the constraint provided by greenhouse gas measurements from space on surface fluxes. Imperfect knowledge of the light path through the atmosphere, arising from scattering by clouds and aerosols, can create biases in column measurements retrieved from space. To minimize the impact of such biases, ratios of total column retrieved CH<sub>4</sub> and CO<sub>2</sub> (X<sub>ratio</sub>) have been used. We apply the ratio inversion method described in Pandey et al. (2015) to retrievals from the Greenhouse Gases Observing SATellite (GOSAT). The ratio inversion method uses the measured X<sub>ratio</sub> as a weak constraint on CO<sub>2</sub> fluxes. In contrast, the more common approach of inverting proxy CH<sub>4</sub> retrievals (Frankenberg et al., 2005) prescribes atmospheric CO<sub>2</sub> fields and optimizes only CH<sub>4</sub> fluxes. <br><br> The TM5–4DVAR (Tracer Transport Model version 5–variational data assimilation system) inverse modeling system is used to simultaneously optimize the fluxes of CH<sub>4</sub> and CO<sub>2</sub> for 2009 and 2010. The results are compared to proxy inversions using model-derived CO<sub>2</sub> mixing ratios (XCO<sub>2</sub><sup>model</sup>) from CarbonTracker and the Monitoring Atmospheric Composition and Climate (MACC) Reanalysis CO<sub>2</sub> product. The performance of the inverse models is evaluated using measurements from three aircraft measurement projects. <br><br> X<sub>ratio</sub> and XCO<sub>2</sub><sup>model</sup> are compared with TCCON retrievals to quantify the relative importance of errors in these components of the proxy XCH<sub>4</sub> retrieval (XCH<sub>4</sub><sup>proxy</sup>). We find that the retrieval errors in X<sub>ratio</sub> (mean = 0.61 %) are generally larger than the errors in XCO<sub>2</sub><sup>model</sup> (mean = 0.24 and 0.01 % for CarbonTracker and MACC, respectively). On the annual timescale, the CH<sub>4</sub> fluxes from the different satellite inversions are generally in agreement with each other, suggesting that errors in XCO<sub>2</sub><sup>model</sup> do not limit the overall accuracy of the CH<sub>4</sub> flux estimates. On the seasonal timescale, however, larger differences are found due to uncertainties in XCO<sub>2</sub><sup>model</sup>, particularly over Australia and in the tropics. The ratio method stays closer to the a priori CH<sub>4</sub> flux in these regions, because it is capable of simultaneously adjusting the CO<sub>2</sub> fluxes. Over tropical South America, comparison to independent measurements shows that CO<sub>2</sub> fields derived from the ratio method are less realistic than those used in the proxy method. However, the CH<sub>4</sub> fluxes are more realistic, because the impact of unaccounted systematic uncertainties is more evenly distributed between CO<sub>2</sub> and CH<sub>4</sub>. The ratio inversion estimates an enhanced CO<sub>2</sub> release from tropical South America during the dry season of 2010, which is in accordance with the findings of Gatti et al. (2014) and Van der Laan et al. (2015). <br><br> The performance of the ratio method is encouraging, because despite the added nonlinearity due to the assimilation of X<sub>ratio</sub> and the significant increase in the degree of freedom by optimizing CO<sub>2</sub> fluxes, still consistent results are obtained with respect to other CH<sub>4</sub> inversions.</p>
Creator (Dublin Core)
Pandey, Sudhanshu
Houweling, Sander
Krol, Maarten
Aben, Ilse
Chevallier, Frédéric
Dlugokencky, Edward J.
Gatti, Luciana V.
Gloor, Emanuel
Miller, John B.
Detmers, Rob
Machida, Toshinobu
Röckmann, Thomas
Date (Dublin Core)
2018-09-19
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-16-5043-2016
https://acp.copernicus.org/articles/16/5043/2016/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



