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首页> 外文期刊>Geoscientific Model Development >Global simulation of tropospheric chemistry at 12.5?km resolution: performance and evaluation of the GEOS-Chem chemical module (v10-1) within the NASA GEOS Earth system model (GEOS-5 ESM)
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Global simulation of tropospheric chemistry at 12.5?km resolution: performance and evaluation of the GEOS-Chem chemical module (v10-1) within the NASA GEOS Earth system model (GEOS-5 ESM)

机译:以12.5?km的分辨率对流层化学的全球模拟:在NASA GEOS地球系统模型(GEOS-5 ESM)中对GEOS-Chem化学模块(v10-1)的性能和评估

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摘要

We present a full-year online global simulation of tropospheric chemistry (158 coupled species) at cubed-sphere c720 ( ~ 12.5 × 12.5 km 2 ) resolution in the NASA Goddard Earth Observing System Model version 5 Earth system model (GEOS-5 ESM) with GEOS-Chem as a chemical module (G5NR-chem). The GEOS-Chem module within GEOS uses the exact same code as the offline GEOS-Chem chemical transport model (CTM) developed by a large atmospheric chemistry research community. In this way, continual updates to the GEOS-Chem CTM by that community can be seamlessly passed on to the GEOS chemical module, which remains state of the science and referenceable to the latest version of GEOS-Chem. The 1-year G5NR-chem simulation was conducted to serve as the Nature Run for observing system simulation experiments (OSSEs) in support of the future geostationary satellite constellation for tropospheric chemistry. It required 31 wall-time days on 4707 compute cores with only 24?% of the time spent on the GEOS-Chem chemical module. Results from the GEOS-5 Nature Run with GEOS-Chem chemistry were shown to be consistent to the offline GEOS-Chem CTM and were further compared to global and regional observations. The simulation shows no significant global bias for tropospheric ozone relative to the Ozone Monitoring Instrument (OMI) satellite and is highly correlated with observations spatially and seasonally. It successfully captures the ozone vertical distributions measured by ozonesondes over different regions of the world, as well as observations for ozone and its precursors from the August–September?2013 Studies of Emissions, Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC sup4/sup RS) aircraft campaign over the southeast US. It systematically overestimates surface ozone concentrations by 10?ppbv at sites in the US and Europe, a problem currently being addressed by the GEOS-Chem CTM community and from which the GEOS ESM will benefit through the seamless update of the online code.
机译:我们在美国国家航空航天局戈达德地球观测系统模型版本5地球系统模型(GEOS-5 ESM)中,以立方球体c720(〜12.5×12.5 km 2)的分辨率,提供了对流层化学(158个耦合物种)的全年在线全球模拟。将GEOS-Chem作为化学模块(G5NR-chem)。 GEOS中的GEOS-Chem模块使用与大型大气化学研究界开发的离线GEOS-Chem化学运输模型(CTM)完全相同的代码。这样,该社区对GEOS-Chem CTM的持续更新可以无缝地传递到GEOS化学模块,该模块仍然是科学技术水平,可参考GEOS-Chem的最新版本。进行了为期一年的G5NR-化学模拟,以作为“自然运行”观测系统模拟实验(OSSE),以支持对流层化学的未来地球静止卫星星座。它在4707个计算核心上需要31天的挂墙时间,仅占GEOS-Chem化学模块花费时间的24%。结果表明,采用GEOS-Chem化学方法进行的GEOS-5 Nature Run的结果与离线GEOS-Chem CTM一致,并且与全球和区域观测结果进行了进一步比较。该模拟显示,相对于臭氧监测仪(OMI)卫星,对流层臭氧没有明显的全球偏差,并且与空间和季节观测值高度相关。它成功地捕获了由全球不同地区的臭氧探空仪测量的臭氧垂直分布,以及通过区域调查从2013年8月至9月进行的臭氧及其前体的观测(SEAC < sup> 4 RS)在美国东南部进行的飞机战役。它系统地高估了美国和欧洲站点的地面臭氧浓度10ppbv,这是GEOS-Chem CTM社区当前正在解决的一个问题,GEOS ESM将通过在线代码的无缝更新而从中受益。

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