首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >DIURNAL VARIABILITY OF MESOSPHERIC OZONE AS MEASURED BY THE UARS MICROWAVE LIMB SOUNDER INSTRUMENT - THEORETICAL AND GROUND-BASED VALIDATIONS
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DIURNAL VARIABILITY OF MESOSPHERIC OZONE AS MEASURED BY THE UARS MICROWAVE LIMB SOUNDER INSTRUMENT - THEORETICAL AND GROUND-BASED VALIDATIONS

机译:用UARS微波肢声测仪测量的中间层臭氧的日变化-基于理论和地面的验证。

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Diurnal variability of mesospheric ozone as measured by the 183-GHz radiometer of the UARS microwave limb sounder (MLS) instrument for the northern midlatitudes in October 1991 and 1992 is compared with theoretical calculations of diurnal amplitudes produced by two photochemical models and with ground-based microwave measurements made from Bordeaux (France, 45 degrees N) in October 1988, 1989, and 1990 and the Table Mountain Facility (California, 35 degrees N) in October 1990, Great care has been taken in comparing all the data sets within the same frame, i.e., interpolating onto the same vertical grid (pressure or altitude), using the same units (concentration or mixing ratio) and degrading the vertical resolution of some data or models (convolution of the vertical profiles with appropriate averaging kernels). MLS diurnal variability generally agrees to within 10% with ground-based and model results at 0.5, 0.2, 0.1, and 0.05 hPa (approximately 55, 60, 65, and 70 km, respectively). Although modeled diurnal changes at 55 +/- 8 km are closer to the ground-based Bordeaux measurements than to the MLS data at 45 degrees N, MLS results are closer to ground-based Table Mountain Facility data at 35 degrees N at 0.42 and 0.22 hPa (similar to 55 +/- 8 and similar to 60 +/- 8 km, respectively)than to models. At 0.1 and 0.042 hPa, MLS diurnal changes are weaker than ground-based and model variations, but daytime O-3 mixing ratios are found to be in very good agreement for all data sets. [References: 20]
机译:将1991年和1992年UARS微波探空仪(MLS)仪器的183 GHz辐射计对北中纬度地区的中层臭氧的日变化与两种光化学模型产生的日振幅的理论计算结果进行了比较分别在1988年10月,1989年和1990年10月从波尔多(法国,北纬45度)和1990年10月在桌山设施(加利福尼亚,北纬35度)进行微波测量,在比较同一数据集中的所有数据集时要格外小心框架,即使用相同的单位(浓度或混合比)插值到相同的垂直网格(压力或高度)上,并降低某些数据或模型的垂直分辨率(垂直剖面与适当平均内核的卷积)。 MLS的日变化率通常与地面和模型结果在0.5、0.2、0.1和0.05 hPa(分别为约55、60、65和70 km)处的误差在10%以内。尽管在55 +/- 8 km处模拟的日变化比在45度N处的MLS数据更接近地面波尔多测量值,但MLS结果在35度N处的0.42和0.22下更接近地面Table Mountain Facility数据hPa(分别类似于55 +/- 8和60 +/- 8 km)与模型相比。在0.1和0.042 hPa时,MLS的日变化比地面变化和模型变化要弱,但发现白天O-3混合比对于所有数据集都非常吻合。 [参考:20]

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