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APE-GAIA Airborne Polar Experiment Geophysica Aircraft In Antarctica

机译:Ape-Gaia Airborge Polar Polar实验Geophysica飞机在南极洲

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In the frame of the "Airborne Polar Experiment" (APE) a Russian military plane M55 has been converted in a high flying research platform for investigations of the polar lower stratosphere and upper troposphere. With the first campaign, carried out in the Arctic during the winter 1996-97, the M55-Geophysica aircraft was shown to be a reliable and powerful tool, to access geographical and altitude ranges, which can be only partially covered by other platforms. A new mission of the M55 has been recently conducted over the Antarctic Peninsula, aiming at studying the chemical processes responsible for stratospheric ozone losses by means of a remote sensing payload. The APE-GAIA campaign (Geophysica Aircraft In Antarctica) took place from the airport of Ushuaia (Argentina) from 15 September to 15 October 1999. The geographical location of the operative base (Ushuaia, 55°S is the southernmost airfield suitable for the M55) permitted to reach the borders of the polar vortex and to fly along its edge; the selected period was the most suitable for the study of ozone depletion and recovery chemistry. The scientific payload was basically composed by remote-sensing instrumentation (middle and far-infrared FT spectrometers, UV-Visible spectrometer, lidars). In-situ analysis of O_3, H_2O and other trace gases contributed to better constrain the remote observations. First priority issues of the 6 flights of the mission have been the latitude and altitude dependence of ozone loss cycles during the depletion phase and the mixing mechanisms between the polar vortex and the mid and low latitude air masses.
机译:在“机载极性实验”(APE)的框架中,俄罗斯军用平面M55已被转换在高飞行研究平台中,以研究极性下划线和上层对流层。在1996 - 97年冬季在北极进行的第一个竞选活动中,M55-Geophysica飞机被证明是一种可靠和强大的工具,可以访问地理和高度范围,这可以仅部分地由其他平台覆盖。最近在南极半岛上进行了新的M55使命,旨在通过遥感有效载荷研究负责平流层臭氧损失的化学过程。 APE-Gaia竞选(南极洲地球物理学飞机)于1999年9月15日至10月15日从Ushuaia(阿根廷)的机场发生了。操作基地的地理位置(Ushuaia,55°S是适合M55的最南端的机场)允许到达极地涡流的边界,并沿其边缘飞行;选定的时间是最适合研究臭氧耗尽和恢复化学的研究。科学有效载荷基本上由遥感仪器(中频和远红外FT光谱仪,UV可见光光谱仪,Lidars)组成。 O_3,H_2O和其他痕量气体的原位分析有助于更好地限制远程观察。 6个航班的首要优先权问题是臭氧损失循环在耗尽阶段和极性涡流与中低纬度气体之间的混合机制的纬度和高度依赖性。

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