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Validation of Tropospheric Water Vapor as Measured by the 183-GHz HAMSTRAD Radiometer Over the Pyrenees Mountains, France

机译:用法国比利牛斯山脉上的183 GHz HAMSTRAD辐射计测量的对流层水汽的验证

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摘要

The $hbox{H}_{2}hbox{O}$ Antarctica Microwave Stratospheric and Tropospheric Radiometers (HAMSTRAD) 183-GHz radiometer has been developed to measure vertical profiles of tropospheric water vapor above Dome C (Concordia station), Antarctica ( $75^{circ}06^{prime}hbox{S}$, $123^{circ}21^{prime} hbox{E}$, 3233 m asml), which is an extremely cold and dry environment, over decades. Prior to its installation at Dome C in January 2009, the instrument was deployed at the Pic du Midi (PdM) station ( $42^{circ}56^{prime}hbox{N}$, $0^{circ}08^{prime}hbox{E}$, 2877 m asml) in the Pyrenees Mountains, France, over the period covering February–June 2008. Vertical profiles of absolute humidity and integrated water vapor (IWV) as measured by HAMSTRAD were compared with measurements from radiosondes launched in three different sites: Lannemezan ($43^{circ}07^{prime}hbox{N}$, $0^{circ}23^{prime}hbox{E}$, 610 m asml), France ($sim$ 30 km northeast from PdM), Bordeaux-Mérignac Airport ( $44^{circ}49^{prime}hbox{N}$, $0^{circ}42^{prime}hbox{W}$ , 50 m asml), France ($sim$220 km northwest from PdM), and Zaragoza ($41^{circ}39^{prime}hbox{N}$, $0^{circ}53^{prime}hbox{W}$, 263 m asml), Spain ( $sim$170 km southwest from PdM). The validation process also used the vertical profiles of tropospheric $hbox{H}_{2}hbox{O}$ as measured by the nadir-viewing infrared atmospheric sounding interferometer (IASI) instrument aboard the MetOp-A space platform. The temporal evolution of the HAMSTRAD $hbox{H}_{2}hbox{O}$ measurements above the PdM station is very consistent with IASI, sonde, and in situ measurements, tracking the same atmosphere from a dry period in February to a wet period in June. HAMSTRAD showed unrealistic values in periods of well-established snow tempest. While the sensitivity of the HAMSTRAD measurements tends to be degraded 6 km above the altitude of the instrument, namely, above 8877 m asml, the HAMSTRAD measurements seem reasonable at the uppermost retrieval level (namely, 10 km, 12 877 m asml). In May, the wet periods are systematically showing a good agreement between sonde and HAMSTRAD IWV fields and $hbox{H}_{2}hbox{O}$ below 6777 m asml but a dry bias of IASI by more than 4-$hbox{kg} hbox{m}^{-2}$ IWV, whereas outside of these periods, the three data sets behave consistently. Since the best results (mean, standard deviation, bias, and correlation) are obtained when the HAMSTRAD radiometer operates in the very dry conditions of February, namely, in dryness conditions comparable to Dome C summertime values, we are very confident in the optimal use of the instrument when deployed in Antarctica.
机译:$ hbox {H} _ {2} hbox {O} $南极微波平流层和对流层辐射计(HAMSTRAD)的183 GHz辐射计用于测量南极Dome C(Concordia站)上方对流层水蒸气的垂直剖面($ 75 ^ {circ} 06 ^ {prime} hbox {S} $,$ 123 ^ {circ} 21 ^ {prime} hbox {E} $,3233 m asml),这是数十年来极为寒冷和干燥的环境。在2009年1月将其安装在Dome C之前,该仪器已部署在Pic du Midi(PdM)站($ 42 ^ {circ} 56 ^ {prime} hbox {N} $,$ 0 ^ {circ} 08 ^ {prime } hbox {E} $,2008年2月至6月期间位于法国比利牛斯山,2877 m asml。将HAMSTRAD测得的绝对湿度和综合水蒸气(IWV)的垂直剖面与发射的探空仪的测量结果进行了比较在三个不同的站点中:Lannemezan($ 43 ^ {circ} 07 ^ {prime} hbox {N} $,$ 0 ^ {circ} 23 ^ {prime} hbox {E} $,610 m asml),法国($ sim $ 30法国,波尔多-梅里尼亚克机场($ 44 ^ {circ} 49 ^ {prime} hbox {N} $,$ 0 ^ {circ} 42 ^ {prime} hbox {W} $,50 m asml,东北距公里(km)。 $ sim $ 220 km,距PdM西北)和萨拉戈萨($ 41 ^ {circ} 39 ^ {prime} hbox {N} $,$ 0 ^ {circ} 53 ^ {prime} hbox {W} $,263 m asml),西班牙(距离PdM西南$ 170公里)。验证过程还使用了对流层$ hbox {H} _ {2} hbox {O} $的垂直剖面,该剖面是由MetOp-A太空平台上的天底观测红外大气探测干涉仪(IASI)仪器测量的。在PdM站上方的HAMSTRAD $ hbox {H} _ {2} hbox {O} $测量值的时间演变与IASI,探空仪和原位测量值非常一致,可追踪从2月的干旱期至六月的潮湿时期。在建立良好的暴风雪期间,HAMSTRAD显示出不切实际的价值。尽管HAMSTRAD测量的灵敏度倾向于在仪器海拔以上6 km处降低,即高于8877 m asml,但HAMSTRAD测量在最高检索水平(即10 km,12 877 m asml)似乎是合理的。在5月,潮湿的季节系统地显示了探空仪和HAMSTRAD IWV油田之间的良好协议,$ hbox {H} _ {2} hbox {O} $低于6777 m asml,但是IASI的干燥偏差超过4- $ hbox {kg} hbox {m} ^ {-2} $ IWV,而在这些时间段之外,这三个数据集的行为一致。当HAMSTRAD辐射计在2月的非常干燥的条件下(即在与Dome C夏季值相当的干燥条件下)运行时,由于可获得最佳结果(平均值,标准偏差,偏差和相关性),因此我们对最佳使用方法充满信心仪器在南极部署时的状态。

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