2007
DOI: 10.1029/2007jd008552
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Mesoscale covariance of transport and CO2 fluxes: Evidence from observations and simulations using the WRF‐VPRM coupled atmosphere‐biosphere model

Abstract: [1] We developed a modeling system which combines a mesoscale meteorological model, the Weather Research and Forecasting (WRF) model, with a diagnostic biospheric model, the Vegetation Photosynthesis and Respiration (VPRM). The WRF-VPRM modeling system was designed to realistically simulate high-resolution atmospheric CO 2 concentration fields. In the system, WRF takes into account anthropogenic and biospheric CO 2 fluxes and realistic initial and boundary conditions for CO 2 from a global model. The system us… Show more

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Cited by 124 publications
(212 citation statements)
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“…In addition the paper assesses the possibility of using hourly concentration data including nighttime in inversions by involving a mesoscale model. This work extends our previous study by Ahmadov et al (2007), which compared WRF-VPRM simulations to aircraft data for a short time period, to a much longer simulation time period and a focus on one tower site. In Sect.…”
Section: Introductionsupporting
confidence: 55%
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“…In addition the paper assesses the possibility of using hourly concentration data including nighttime in inversions by involving a mesoscale model. This work extends our previous study by Ahmadov et al (2007), which compared WRF-VPRM simulations to aircraft data for a short time period, to a much longer simulation time period and a focus on one tower site. In Sect.…”
Section: Introductionsupporting
confidence: 55%
“…This behavior is caused by phenological changes associated with the intensifying growing season. Some of the large cropland areas in the region become strong CO 2 sinks in June as shown by Ahmadov et al (2007).…”
Section: Resultsmentioning
confidence: 99%
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