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首页> 外文期刊>Journal of Applied Meteorology and Climatology >CO2 Transport, Variability, and Budget over the Southern California Air Basin Using the High-Resolution WRF-VPRM Model during the CalNex 2010 Campaign
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CO2 Transport, Variability, and Budget over the Southern California Air Basin Using the High-Resolution WRF-VPRM Model during the CalNex 2010 Campaign

机译:在Calnex 2010竞选期间使用高分辨率WRF-VPRM模型的CO2运输,可变性和预算在南加州航空盆地上使用高分辨率WRF-VPRM模型

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摘要

To study regional-scale carbon dioxide (CO2) transport, temporal variability, and budget over the Southern California Air Basin (SoCAB) during the California Research at the Nexus of Air Quality and Climate Change (CalNex) 2010 campaign period, a model that couples the Weather Research and Forecasting (WRF) Model with the Vegetation Photosynthesis and Respiration Model (VPRM) has been used. Our numerical simulations use anthropogenic CO2 emissions of the Hestia Project 2010 fossil-fuel CO2 emissions data products along with optimized VPRM parameters at "FLUXNET'' sites, for biospheric CO2 fluxes over SoCAB. The simulated meteorological conditions have been validated with ground and aircraft observations, as well as with background CO2 concentrations from the coastal Palos Verdes site. The model captures the temporal pattern of CO2 concentrations at the ground site at the California Institute of Technology in Pasadena, but it overestimates the magnitude in early daytime. Analysis of CO2 by wind directions reveals the overestimate is due to advection from the south and southwest, where downtown Los Angeles is located. The model also captures the vertical profile of CO2 concentrations along with the flight tracks. The optimized VPRM parameters have significantly improved simulated net ecosystem exchange at each vegetation-class site and thus the regional CO2 budget. The total biospheric contribution ranges approximately from -24% to -20% (daytime) of the total anthropogenic CO2 emissions during the study period.
机译:在加利福尼亚州的空气质量和气候变化(Calnex)2010竞选期内的加州研究期间,研究区域规模的二氧化碳(CO2)运输,时间可变性和南加州空气盆地(SOCAB)的预算已经使用了具有植被光合作用和呼吸模型(VPRM)的天气研究和预测(WRF)模型。我们的数值模拟使用HESTIA项目2010 FOSTIL-FUEL CO2排放数据产品的人为CO2排放以及在“Fluxnet”网站上的优化VPRM参数,用于Socab上的生物二氧化碳。模拟的气象条件已被接地和飞机观察验证以及来自沿海帕洛斯·威尔德特的背景CO2浓度。该模型在帕萨迪纳加州工业研究所的地下站点捕获了CO2浓度的时间模式,但它在初期估计了幅度。CO2分析风向揭示了洛杉矶市中心的南部和西南部的平流。该模型还捕获了CO2浓度的垂直轮廓以及飞行轨道。优化的VPRM参数具有显着改善的模拟网络生态系统交换每个植被阶级网站,因此是区域二氧化碳预算。托塔L生物贡献在研究期间的总人为二氧化碳二氧化碳排放量大约从-24%至-20%(白天)。

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