TransCom model simulations of hourly atmospheric CO2: Analysis of synoptic‐scale variations for the period 2002–2003
暂无分享,去创建一个
Nicholas C. Parazoo | Ryoichi Imasu | Shian-Jiann Lin | Sander Houweling | Shamil Maksyutov | R. Onishi | Robert Vautard | Philippe Bousquet | Shoichi Taguchi | Wouter Peters | Prabir K. Patra | Jesper Heile Christensen | Masaki Satoh | Rachel M. Law | Takashi Maki | Masayuki Takigawa | Jørgen Brandt | Philip Cameron-Smith | Dan Bergmann | L. Rivier | François Delage | Alex Vermeulen | Yosuke Niwa | A. S. Denning | Christian Rödenbeck | Camilla Geels | Ute Karstens | G. Pieterse | Maarten C. Krol | R. Vautard | Shamil Maksyutov | S. Houweling | Y. Niwa | J. Christensen | A. Denning | W. Peters | J. Kleist | C. Rödenbeck | S. Fan | P. Bousquet | S. Serrar | P. Patra | Shian‐Jiann Lin | D. Bergmann | M. Krol | P. Cameron‐Smith | R. Law | I. Baker | L. Bruhwiler | U. Karstens | A. Vermeulen | R. Imasu | L. Rivier | S. R. Kawa | S. Taguchi | T. Maki | M. Satoh | J. Brandt | N. Parazoo | M. Takigawa | F. Delage | R. Onishi | R. Lokupitiya | Z. Zhu | C. Aulagnier | Stephan R. Kawa | Z. Zhu | Lori Bruhwiler | Ian T. Baker | C. Geels | G. Pieterse | C. Aulagnier | S. Serrar | S. Fan | J. Kleist | R. Lokupitiya | Z. Zhu
[1] R. Vautard,et al. TransCom model simulations of hourly atmospheric CO2: Experimental overview and diurnal cycle results for 2002 , 2008, Global Biogeochemical Cycles.
[2] A. Denning,et al. Possible representation errors in inversions of satellite CO2 retrievals , 2008 .
[3] Y. Sawa,et al. Influence of continental air mass transport on atmospheric CO2 in the western North Pacific , 2007 .
[4] K. Davis,et al. Observations and simulations of synoptic, regional, and local variations in atmospheric CO2 , 2007 .
[5] M. Ikegami,et al. Long-term trends of greenhouse gases in regional and background events observed during 1998–2004 at Yonagunijima located to the east of the Asian continent , 2006 .
[6] M. Heimann,et al. Insights from simulations with high-resolution transport and process models on sampling of the atmosphere for constraining midlatitude land carbon sinks , 2006 .
[7] Philippe Ciais,et al. Comparing atmospheric transport models for future regional inversions over Europe - Part 1: mapping the atmospheric CO2 signals , 2006 .
[8] P. Ciais,et al. Comparing atmospheric transport models for future regional inversions over Europe . Part 1 : Mapping the CO 2 atmospheric signals , 2006 .
[9] Dusanka Zupanski,et al. An ensemble data assimilation system to estimate CO2 surface fluxes from atmospheric trace gas observations , 2005 .
[10] Shamil Maksyutov,et al. Interannual and decadal changes in the sea‐air CO2 flux from atmospheric CO2 inverse modeling , 2005 .
[11] Philippe Bousquet,et al. Daily CO2 flux estimates over Europe from continuous atmospheric measurements: 1, inverse methodology , 2005 .
[12] C. Rödenbeck. Estimating CO2 sources and sinks from atmospheric mixing ratio measurements using a global inversion of atmospheric transport , 2005 .
[13] Casper Labuschagne,et al. Baseline air mass selection at Cape Point, South Africa: application of 222Rn and other filter criteria to CO2 , 2004 .
[14] P. Rayner,et al. Inversion of diurnally varying synthetic CO2: Network optimization for an Australian test case , 2004 .
[15] James T. Randerson,et al. Differences between surface and column atmospheric CO2 and implications for carbon cycle research , 2004 .
[16] J. Christensen,et al. Investigating the sources of synoptic variability in atmospheric CO2 measurements over the Northern Hemisphere continents: a regional model study , 2004 .
[17] Sander Houweling,et al. CO 2 flux history 1982–2001 inferred from atmospheric data using a global inversion of atmospheric transport , 2003 .
[18] P. Yan,et al. The impact of local winds and long-range transport on the continuous carbon dioxide record at Mount Waliguan, China , 2003 .
[19] I. Enting,et al. Using high temporal frequency data for CO2 inversions , 2002 .
[20] A. Segers,et al. On the use of mass-conserving wind fields in chemistry-transport models , 2002 .
[21] R. Francey,et al. Interannual growth rate variations of atmospheric CO2 and its δ13C, H2, CH4, and CO between 1992 and 1999 linked to biomass burning , 2002 .
[22] Taro Takahashi,et al. Towards robust regional estimates of CO2 sources and sinks using atmospheric transport models , 2002, Nature.
[23] P. Ciais,et al. Quantification of carbon dioxide, methane, nitrous oxide and chloroform emissions over Ireland from atmospheric observations at Mace Head , 2002 .
[24] C. Sweeney,et al. Global sea-air CO2 flux based on climatological surface ocean pCO2, and seasonal biological and temperature effects , 2002 .
[25] P. Bakwin,et al. What is the concentration footprint of a tall tower , 2001 .
[26] K. Taylor. Summarizing multiple aspects of model performance in a single diagram , 2001 .
[27] Measuring system for the long‐term monitoring of biosphere/atmosphere exchange of carbon dioxide , 2001 .
[28] K. Higuchi,et al. Latitudinal distribution of atmospheric CO2 sources and sinks inferred by δ13C measurements from 1985 to 1991 , 2000 .
[29] Christopher B. Field,et al. The contribution of terrestrial sources and sinks to trends in the seasonal cycle of atmospheric carbon dioxide , 1997 .
[30] M. Ishizawa,et al. TWO CURVE FITTING METHODS APPLIED TO CO2 FLASK DATA , 1997 .
[31] Inez Y. Fung,et al. Variations in modeled atmospheric transport of carbon dioxide and the consequences for CO2 inversions , 1996 .
[32] P. Bakwin,et al. Measurements of carbon dioxide on a very tall tower , 1995 .
[33] Pieter P. Tans,et al. Evidence for interannual variability of the carbon cycle from the National Oceanic and Atmospheric Administration/Climate Monitoring and Diagnostics Laboratory Global Air Sampling Network , 1994 .
[34] G. Lambert,et al. Radon‐calibrated emissions of CO2 from South Africa , 1990 .
[35] G. Russell,et al. A New Finite-Differencing Scheme for the Tracer Transport Equation , 1981 .