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Satellite instrument to measure stratospheric winds

机译:卫星仪器测量平流层风

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Abstract: The Stratospheric Wind Interferometer for Transport Studies (SWIFT) is a satellite-born limb-viewing instrument which will be capable of globally measuring horizontal winds at altitudes of between 20 and 40 km with a precision of $LS 5 m/s, a vertical resolution of 2 km and a horizontal resolution on the order of a hundred km. SWIFT will map stratospheric dynamics. The data from the instrument will be important input for models which seek to predict the global distribution of stratospheric ozone. In addition, the SWIFT data will provide observational input to tropospheric weather models, which are currently being extended to the stratosphere. With global stratospheric wind data, these enhanced models have the potential to significantly improve weather forecasting in the troposphere. The instrument will observe a thermal emission line of an abundant atmospheric constituent near 8 $mu@m using a field widened Michelson interferometer. A doppler shift of the emission line is detected as a phase shift at the output of the interferometer. A 2D array detector monitors the phase both perpendicular to and along the limb, thus mapping the velocity field. The fundamental feasibility of the instrument will be shown. The basic instrument requirements are described and the instrument parameters are derived from them. The instrument will utilize radiatively cooled optics and Stirling cycle coolers for the detector and filters. This instrument will be suitable for inclusion on a medium to large satellite with multiple instruments. The lack of cryogens is consistent with its intended use on the operational weather satellites of the future. !13
机译:摘要:用于运输研究的平流层风干涉仪(SWIFT)是一种卫星出生的肢体观察仪器,能够以20到40 km的高度全球测量水平风,精度为$ LS 5 m / s,垂直分辨率为2 km,水平分辨率为100 km。 SWIFT将绘制平流层动力学。仪器的数据将为寻求预测平流层臭氧全球分布的模型提供重要输入。此外,SWIFT数据还将为对流层天气模型提供观测输入,对流层天气模型目前正在扩展到平流层。利用全球平流层风的数据,这些增强的模型有可能显着改善对流层的天气预报。该仪器将使用加宽的迈克尔逊干涉仪观察到接近8μm的大量大气成分的热辐射线。在干涉仪的输出处将发射线的多普勒频移检测为相移。 2D阵列检测器监视垂直于和沿着肢体的相位,从而绘制速度场。将显示该仪器的基本可行性。描述了仪器的基本要求,并从中得出了仪器参数。该仪器将使用辐射冷却的光学器件和斯特林循环冷却器作为检测器和滤光片。该仪器将适合包含在具有多个仪器的中型到大型卫星上。缺乏冷冻剂与其在未来的运行气象卫星上的预期用途是一致的。 !13

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