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首页> 外文期刊>Atmospheric Measurement Techniques >Intercomparison of in situ water vapor balloon-borne measurements from Pico-SDLA H2O and FLASH-B in the tropical UTLS
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Intercomparison of in situ water vapor balloon-borne measurements from Pico-SDLA H2O and FLASH-B in the tropical UTLS

机译:热带UTLS中来自Pico-SDLA H2O和FLASH-B的原位水汽球传播测量结果的比对

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摘要

In this paper we compare water vapor mixing ratio measurements from two quasi-parallel flights of the Pico-SDLA H2O and FLASH-B hygrometers. The measurements were made on 10 February 2013 and 13 March 2012, respectively, in the tropics near Bauru, Sao Paulo state, Brazil during an intense convective period. Both flights were performed as part of a French scientific project, TRO-Pico, to study the impact of the deep-convection overshoot on the water budget. Only a few instruments that permit the frequent sounding of stratospheric water vapor can be flown within small-volume weather balloons. Technical difficulties preclude the accurate measurement of stratospheric water vapor with conventional in situ techniques. The instruments described here are simple and lightweight, which permits their low-cost deployment by non-specialists aboard a small weather balloon. We obtain mixing ratio retrievals which agree above the cold-point tropopause to within 1.9 and 0.5% for the first and second flights, respectively. This level of agreement for balloon-borne measured stratospheric water mixing ratio constitutes one of the best agreement reported in the literature. Because both instruments show similar profiles within their combined uncertainties, we conclude that the Pico-SDLA H2O and FLASH-B data sets are mutually consistent.
机译:在本文中,我们比较了Pico-SDLA H2O和FLASH-B湿度计的两个准平行飞行中的水蒸气混合比测量值。在强烈对流期间,分别于2013年2月10日和2012年3月13日在巴西圣保罗州鲍鲁附近的热带地区进行了测量。两次飞行都是法国科学项目TRO-Pico的一部分,目的是研究深对流超调对水预算的影响。在小体积的气象气球中只能飞行少数能平流层水汽频繁发声的仪器。技术上的困难使得无法使用常规的原位技术精确测量平流层水蒸气。这里介绍的仪器既简单又轻巧,因此非专业人员可以在小型气象气球上以低成本部署它们。我们获得的混合比反演值在第一次和第二次飞行时均高于冷点对流层顶,分别在1.9%和0.5%之内。气球上测量的平流层水混合比的协议水平是文献中报道的最佳协议之一。由于两种仪器在其综合不确定性内均显示出相似的曲线,因此我们得出结论,Pico-SDLA H2O和FLASH-B数据集相互一致。

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