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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Validation of Aura Microwave Limb Sounder water vapor by balloon-borne Cryogenic Frost point Hygrometer measurements
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Validation of Aura Microwave Limb Sounder water vapor by balloon-borne Cryogenic Frost point Hygrometer measurements

机译:通过气球传播的低温冰点湿度计测量验证Aura微波测深仪的水蒸气

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Here we present extensive observations of stratospheric and upper tropospheric water vapor using the balloon-borne Cryogenic Frost point Hygrometer (CFH) in support of the Aura Microwave Limb Sounder (MLS) satellite instrument. Coincident measurements were used for the validation of MLS version 1.5 and for a limited validation of MLS version 2.2 water vapor. The sensitivity of MLS is on average 30% lower than that of CFH, which is fully compensated by a constant offset at stratospheric levels but only partially compensated at tropospheric levels, leading to an upper tropospheric dry bias. The sensitivity of MLS observations may be adjusted using the correlation parameters provided here. For version 1.5 stratospheric observations at pressures of 68 hPa and smaller MLS retrievals and CFH in situ observations agree on average to within 2.3% ± 11.8%. At 100 hPa the agreement is to within 6.4% ± 22% and at upper tropospheric pressures to within 23% ± 37%. In the tropical stratosphere during the boreal winter the agreement is not as good. The “tape recorder” amplitude in MLS observations depends on the vertical profile of water vapor mixing ratio and shows a significant interannual variation. The agreement between stratospheric observations by MLS version 2.2 and CFH is comparable to the agreement using MLS version 1.5. The variability in the difference between observations by MLS version 2.2 and CFH at tropospheric levels is significantly reduced, but a tropospheric dry bias and a reduced sensitivity remain in this version. In the validation data set a dry bias at 177.8 hPa of ?24.1% ± 16.0% is statistically significant.
机译:在这里,我们使用气球传播的低温冰点湿度计(CFH)来支持Aura微波探空仪(MLS)卫星仪器,对平流层和对流层上方的水蒸气进行了广泛的观测。巧合测量用于验证MLS版本1.5和MLS版本2.2水蒸气的有限验证。 MLS的灵敏度平均要比CFH低30%,这在平流层水平上得到了恒定的补偿,但在对流层水平上仅得到了部分补偿,从而导致对流层干偏向上。可以使用此处提供的相关参数来调整MLS观测值的灵敏度。对于1.5版的平流层,在68 hPa的压力下进行观测,较小的MLS反演和CFH实地观测的平均值平均在2.3%±11.8%之内。在100 hPa时,一致性在6.4%±22%之内,在对流层高压时,一致性在23%±37%之内。在北方冬季,在热带平流层中,一致性不太好。 MLS观测中的“磁带记录器”振幅取决于水蒸气混合比的垂直剖面,并显示出明显的年际变化。 MLS 2.2版和CFH的平流层观测值之间的一致性可与MLS 1.5版使用的协议相媲美。 MLS 2.2版和CFH在对流层水平的观测值之间差异的变异性显着降低,但是在该版本中,对流层干偏和灵敏度降低。在验证数据集中,在177.8 hPa处的干偏差为±24.1%±16.0%,具有统计学意义。

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