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Characterisation of J(O1D) at Cape Grim 2000–2005

机译:Cape Grim 2000-2005 j(o1d)的特征

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Estimates of the rate of production of excited oxygen atoms due to the photolysis of ozone (J(O1D)) have been derived from radiation measurements carried out at Cape Grim, Tasmania (40.6° S, 144.7° E). The individual measurements have a total uncertainty of 16 % (1). These estimates agree well with model estimates of clear-sky photolysis rates. Observations spanning 2000–2005 have been used to quantify the impact of season, clouds and ozone column amount. The annual cycle of J(O1D) has been investigated via monthly means. These means show an interannual variation (monthly standard deviation) of 9 %, but in midsummer and midwinter this reduces to 3–5 %. Variations in solar zenith angle and total column ozone explain 86 % of the observed variability in the measured photolysis rates. The impact of total column ozone, expressed as a radiation amplification factor (RAF), is found to be ~ 1.53, in agreement with model estimates. This ozone dependence explains 20 % of the variation observed at medium solar zenith angles (30–50°). The impact of clouds results in a median reduction of 30 % in J(O1D) for the same solar zenith angle range. Including estimates of cloudiness derived from long-wave radiation measurements resulted in a statistically significant fit to observations, but the quality of the fit did not increase significantly as measured by the adjusted R2.
机译:由于臭氧的光解(J(O1D))的估计是由于臭氧的光解(J(O1D))的估计,来自塔斯马尼亚州的Cape Grim(40.6°S,144.7°E)进行的辐射测量。单个测量的总不确定性为16%(1)。这些估计与明确的光解率的模型估计非常吻合。跨越2000-2005的观察已被用于量化季节,云和臭氧柱量的影响。 j(o1d)的年周期通过月度手段进行了调查。这些手段显示持续变化(每月标准偏差)为9%,但在仲夏和中间冬季,这降低了3-5%。太阳能天顶角和总臭氧的变化解释了测量的光解率中观察到的可变异的86%。总柱臭氧的影响,表示为辐射放大因子(RAF),与模型估计一致地是〜1.53。这种臭氧依赖性解释了在中型太阳能天性角度(30-50°)中观察到的20%的变化。对于相同的太阳能天性角度范围,云的影响导致J(O1D)中的30%的中值减少30%。包括从长波辐射测量导出的云炎的估计导致统计学上显着的拟合观察,但是由于调节的R2测量,拟合的质量不会显着增加。

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