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Validation of middle-atmospheric campaign-based water vapour measured by the ground-based microwave radiometer MIAWARA-C

机译:地面微波辐射计MIAWARA-C测得的基于大气运动的水汽的验证

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摘要

Middle atmospheric water vapour can be used as a tracer for dynamical processes. It is mainly measured by satellite instruments and ground-based microwave radiometers. Ground-based instruments capable of measuring middle-atmospheric water vapour are sparse but valuable as they complement satellite measurements, are relatively easy to maintain and have a long lifetime. MIAWARA-C is a ground-based microwave radiometer for middle-atmospheric water vapour designed for use on measurement campaigns for both atmospheric case studies and instrument intercomparisons. MIAWARA-C's retrieval version 1.1 (v1.1) is set up in a such way as to provide a consistent data set even if the instrument is operated from different locations on a campaign basis. The sensitive altitude range for v1.1 extends from 4 hPa (37 km) to 0.017 hPa (75 km). For v1.1 the estimated systematic error is approximately 10 % for all altitudes. At lower altitudes it is dominated by uncertainties in the calibration, with altitude the influence of spectroscopic and temperature uncertainties increases. The estimated random error increases with altitude from 5 to 25 %. MIAWARA-C measures two polarisations of the incident radiation in separate receiver channels, and can therefore provide two measurements of the same air mass with independent instrumental noise. The standard deviation of the difference between the profiles obtained from the two polarisations is in excellent agreement with the estimated random measurement error of v1.1. In this paper, the quality of v1.1 data is assessed for measurements obtained at two different locations: (1) a total of 25 months of measurements in the Arctic (Sodankyla, 67.37° N, 26.63° E) and (2) nine months of measurements at mid-latitudes (Zimmerwald, 46.88° N, 7.46° E). For both locations MIAWARA-C's profiles are compared to measurements from the satellite experiments Aura MLS and MIPAS. In addition, comparisons to ACE-FTS and SOFIE are presented for the Arctic and to the ground-based radiometer MIAWARA for the mid-latitude campaigns. In general, all intercomparisons show high correlation coefficients, confirming the ability of MIAWARA-C to monitor temporal variations of the order of days. The biases are generally below 13 % and within the estimated systematic uncertainty of MIAWARA-C. No consistent wet or dry bias is identified for MIAWARA-C. In addition, comparisons to the reference instruments indicate the estimated random error of v1.1 to be a realistic measure of the random variation on the retrieved profile between 45 and 70 km.
机译:中间大气中的水蒸气可用作动力学过程的示踪剂。它主要通过卫星仪器和地面微波辐射计进行测量。能够测量中层大气水汽的地基仪器虽然稀疏,但却非常有价值,因为它们可以补充卫星测量数据,相对易于维护并且使用寿命长。 MIAWARA-C是一种用于中大气水蒸气的地面微波辐射计,设计用于大气案例研究和仪器比对的测量活动。 MIAWARA-C的检索版本1.1(v1.1)设置为即使在战役中从不同位置操作仪器也能提供一致的数据集。 v1.1的敏感高度范围从4 hPa(37 km)扩展到0.017 hPa(75 km)。对于v1.1,所有高度的估计系统误差约为10%。在较低的高度,校准的不确定性占主导地位,随着海拔的升高,光谱和温度不确定性的影响也会增加。估计的随机误差随着高度从5%增加到25%而增加。 MIAWARA-C在单独的接收器通道中测量入射辐射的两个极化,因此可以在独立的仪器噪声下对同一空气质量进行两次测量。从两个极化获得的轮廓之间的差异的标准偏差与v1.1的估计随机测量误差非常一致。在本文中,对在两个不同位置获得的测量结果评估了v1.1数据的质量:(1)北极地区总共进行了25个月的测量(Sodankyla,北纬67.37°,东经26.63°),(2)九个在中纬度(Zimmerwald,北纬46.88°,东经7.46°)进行了几个月的测量。将两个地点的MIAWARA-C的资料与卫星实验Aura MLS和MIPAS的测量结果进行比较。此外,对北极地区的ACE-FTS和SOFIE进行了比较,对中纬度地区的活动则与地面辐射计MIAWARA进行了比较。通常,所有比对都显示出高相关系数,这证明了MIAWARA-C能够监视几天数量级的时间变化。偏差通常低于13%,并且在MIAWARA-C的估计系统不确定性之内。对于MIAWARA-C,没有确定一致的湿偏或干偏。此外,与参考仪器的比较表明,估计的v1.1随机误差是对45至70 km之间检索到的剖面上随机变化的现实度量。

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