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Middle atmospheric ozone, nitrogen dioxide and nitrogen trioxide in?2002–2011: SD-WACCM simulations compared to GOMOS observations

机译:中间大气臭氧,二氧化氮和三氧化氮在α2002-2011:SD-WACCM模拟与Gomos观测相比

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Most of our understanding of the atmosphere is based on observations and their comparison with model simulations. In middle atmosphere studies it is common practice to use an approach, where the model dynamics are at least partly based on temperature and wind fields from an external meteorological model. In this work we test how closely satellite measurements of a few central trace gases agree with this kind of model simulation. We use collocated vertical profiles where each satellite measurement is compared to the closest model data. We compare profiles and distributions of O3, NO2 and NO3 from the Global Ozone Monitoring by Occultation of Stars instrument?(GOMOS) on the Envisat satellite with simulations by the Whole Atmosphere Community Climate Model?(WACCM). GOMOS measurements are from nighttime. Our comparisons show that in the stratosphere outside the polar regions differences in ozone between WACCM and GOMOS are small, between 0 and 6%. The correlation of 5-day time series show a very high?0.9–0.95. In the tropical region 10°?S–10°?N below 10?hPa WACCM values are up to 20?% larger than GOMOS. In the Arctic below 6?hPa WACCM ozone values are up to 20?% larger than GOMOS. In the mesosphere between 0.04 and 1?hPa the WACCM is at most 20?% smaller than GOMOS. Above the ozone minimum at 0.01?hPa (or 80?km) large differences are found between WACCM and GOMOS. The correlation can still be high, but at the second ozone peak the correlation falls strongly and the ozone abundance from WACCM is about 60?% smaller than that from GOMOS. The total ozone columns (above 50?hPa) of GOMOS and WACCM agree within ±2?% except in the Arctic where WACCM is 10?% larger than GOMOS. Outside the polar areas and in the validity region of GOMOS NO2 measurements (0.3–37?hPa) WACCM and GOMOS NO2 agree within ?5 to +25?% and the correlation is high (0.7–0.95) except in the upper stratosphere at the southern latitudes. In the polar areas, where solar particle precipitation and downward transport from the thermosphere enhance NO2 abundance, large differences up to ?90?% are found between WACCM and GOMOS NO2 and the correlation varies between?0.3 and 0.9. For NO3, we find that the WACCM and GOMOS difference is between ?20 and 5?% with a very high correlation of?0.7–0.95. We show that NO3 values strongly depend on temperature and the dependency can be fitted by the exponential function of temperature. The ratio of NO3 to O3 from WACCM and GOMOS closely follow the prediction from the equilibrium chemical theory. Abrupt temperature increases from sudden stratospheric warmings?(SSWs) are reflected as sudden enhancements of WACCM and GOMOS NO3 values.
机译:大多数我们对大气的理解是基于观察和与模型模拟的比较。在中大气研究中,使用一种方法是常见的做法,其中模型动态至少部分地基于来自外部气象模型的温度和风场。在这项工作中,我们测试一些中央轨气的卫星测量如何与这种模型仿真同意。我们使用并置垂直配置文件,其中每个卫星测量与最近的模型数据进行比较。我们将O3,No2和No3的概要和分布从全球臭氧监测进行比较,通过恒星仪器掩饰(Gomos),通过全部大气群落气候模型模拟的Envisat卫星?(WACCM)。 Gomos测量来自夜间。我们的比较表明,在地区的平流层中,WACCM和GOMO之间的臭氧的差异很小,介于0到6%之间。 5天时间序列的相关性显示出非常高的?0.9-0.95。在热带区域10°Δs-10°oth 10°以下,低于10°WαhPaWACCM值高于Gomos的20?%。在低于6的北极,HPA WACCM臭氧值高于Gomos的20?%。在0.04和1的介质层中,HPA的WACCM至多20?%小于gomos。在0.01的臭氧最小值以上(或80 km),在WACCM和Gomos之间发现了大的差异。相关性仍然可以很高,但在第二臭氧峰值处,相关性强烈下降,从WACCM的臭氧丰度小于来自Gomos的臭氧量约为60Ω%。 Gomos和WACCM的总臭氧柱(高于50?HPA)在±2?%之内同意,除了在北极,WACCM大于gomos的北极。在极地区域外部和Gomos No2测量的有效区域(0.3-37?HPA)WACCM和GOMOS NO2在+ 25℃内同意,相关性高(0.7-0.95),除了上层流层南纬度。在极性区域,在热晶层的太阳粒子沉淀和向下运输的情况下,在WACCM和Gomos No2之间发现了大的差异,并且在Gomos No2之间发现了90?%,并且相关性在Δ0.3和0.9之间变化。对于No3,我们发现WACCM和GOMOS差异在于?20和5?%,具有非常高的相关性?0.7-0.95。我们表明NO3值强烈依赖于温度,并且可以通过温度的指数函数装配依赖性。从WACCM和GOMOS的NO 3至O3的比例紧密地遵循均衡化学理论的预测。突然温度从突然的平流层升温增加?(SSW)被反映为WACCM和GOMOS NO3值的突然增强。

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