首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Spatial Heterodyne Observations of Water (SHOW) vapour in the upper troposphere and lower stratosphere from a high altitude aircraft: Modelling and sensitivity analysis
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Spatial Heterodyne Observations of Water (SHOW) vapour in the upper troposphere and lower stratosphere from a high altitude aircraft: Modelling and sensitivity analysis

机译:高原飞机上层对流层和较低平流层中水(展示)蒸气的空间外差观察:建模与敏感性分析

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A spatial heterodyne spectrometer (SHS) has been developed to measure the vertical distribution of water vapour in the upper troposphere and the lower stratosphere with a high vertical resolution (similar to 500m). The Spatial Heterodyne Observations of Water (SHOW) instrument combines an imaging system with a monolithic field-widened SHS to observe limb scattered sunlight in a vibrational band of water (1363 nm-1366 nm). The instrument has been optimized for observations from NASA's ER-2 aircraft as a proof-of concept for a future low earth orbit satellite deployment. A robust model has been developed to simulate SHOW ER-2 limb measurements and retrievals. This paper presents the simulation of the SHOW ER-2 limb measurements along a hypothetical flight track and examines the sensitivity of the measurement and retrieval approach. Water vapour fields from an Environment and Climate Change Canada forecast model are used to represent realistic spatial variability along the flight path. High spectral resolution limb scattered radiances are simulated using the SASKTRAN radiative transfer model. It is shown that the SHOW instrument onboard the ER-2 is capable of resolving the water vapour variability in the UTLS from approximately 12 km - 18 km with 1 ppm accuracy. Vertical resolutions between 500m and 1 km are feasible. The along track sampling capability of the instrument is also discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经开发了一种空间外差光谱仪(SHS)以测量上层对流层中水蒸气的垂直分布,具有高垂直分辨率(类似于500米)。水(展示)仪器的空间外差观察结合了一种具有单片磁场 - 加宽的SHS的成像系统,以观察水的振动带(1363nm-1366nm)中的肢体散射阳光。该仪器已针对NASA的ER-2飞机的观察进行了优化,作为未来低地球轨道卫星部署的概念。已经开发出一种强大的模型来模拟显示ER-2肢体测量和检索。本文展示了沿假设飞行轨道的显示ER-2肢体测量的模拟,并检查测量和检索方法的灵敏度。来自环境和气候变化的水蒸气领域加拿大预测模型用于沿着飞行路径代表现实的空间可变性。使用Sasktran辐射转移模型模拟高光谱分辨率肢体散射的辐射。结果表明,ER-2的橱柜仪器能够在大约12 km - 18km的UTL中解决utls的水蒸气变异,1 ppm精度。 500米和1公里之间的垂直分辨率是可行的。还讨论了仪器的轨道采样能力。 (c)2018年elestvier有限公司保留所有权利。

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