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A trajectory-based estimate of the tropospheric ozone column using the residual method

机译:基于残差法的对流层臭氧柱基于轨迹的估计

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摘要

We estimate the tropospheric column ozone using a forward trajectory model to increase the horizontal resolution of the Aura Microwave Limb Sounder (MLS) derived stratospheric column ozone. Subtracting the MLS stratospheric column from Ozone Monitoring Instrument total column measurements gives the trajectory enhanced tropospheric ozone residual (TTOR). Because of different tropopause definitions, we validate the basic residual technique by computing the 200-hPa-to-surface column and comparing it to the same product from ozonesondes and Tropospheric Emission Spectrometer measurements. Comparisons show good agreement in the tropics and reasonable agreement at middle latitudes, but there is a persistent low bias in the TTOR that may be due to a slight high bias in MLS stratospheric column. With the improved stratospheric column resolution, we note a strong correlation of extratropical tropospheric ozone column anomalies with probable troposphere-stratosphere exchange events or folds. The folds can be identified by their colocation with strong horizontal tropopause gradients. TTOR anomalies due to folds may be mistaken for pollution events since folds often occur in the Atlantic and Pacific pollution corridors. We also compare the 200-hPa-to-surface column with Global Modeling Initiative chemical model estimates of the same quantity. While the tropical comparisons are good, we note that chemical model variations in 200-hPa-to-surface column at middle latitudes are much smaller than seen in the TTOR.
机译:我们使用前向轨迹模型来估计对流层柱臭氧,以增加Aura微波测深仪(MLS)衍生的平流层柱臭氧的水平分辨率。从臭氧监测仪器的MLS平流层柱上减去总柱测量值可得出轨迹增强的对流层臭氧残留量(TTOR)。由于对流层顶定义不同,我们通过计算200 hPa地表柱并将其与臭氧探测仪和对流层发射光谱仪测量的同一产品进行比较,验证了基本的残留技术。比较表明,热带地区的一致性良好,中纬度地区的合理一致性较高,但TTOR中存在持续的低偏差,这可能是由于MLS平流层列中的偏差较高所致。随着平流层色谱柱分辨率的提高,我们注意到温带对流层臭氧柱异常与对流层-平流层交换事件或褶皱的强烈相关性。褶皱可以通过与强水平对流层顶梯度的共置来识别。由于褶皱引起的TTOR异常可能被误认为是污染事件,因为褶皱经常发生在大西洋和太平洋污染走廊中。我们还将200hPa-to-surface色谱柱与相同数量的Global Modeling Initiative化学模型估算值进行了比较。尽管热带地区的比较是好的,但我们注意到,中纬度200 hPa至地表柱中化学模型的变化远小于TTOR中观察到的变化。

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