冰超饱和区(ISSR)航迹规划可视化工具设计

Denis Avila, L. Sherry, T. Thompson
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引用次数: 1

摘要

当适当的大气条件存在时,喷气式客机的热排气会产生凝结尾迹。这些高空“云”将23%的短波辐射反射回太空,但也将33%的长波辐射反射回地球。通过这种方式,人为(即人为制造的)尾迹具有净变暖效应。在未来政府法规的支持下,航空公司可以通过飞行计划获得交通流量管理时段的优先积分,这些飞行计划在早上形成持续的尾迹(以阻挡进入的短波辐射),并在晚上避免形成持续的尾迹(以允许长波辐射逃逸)。本文描述了一种处理公开可用的天气预报数据的方法,以确定将形成持续尾迹的冰超饱和区域的位置。提供了ISSR的统计数据和CONUS上ISSR的三维可视化。讨论了该信息的含义和该方法的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Ice Super Saturated Region (ISSR) visualization tool for contrail planning
Hot exhaust from jet airliners generate condensation trails when the appropriate atmospheric conditions exist. These high altitude “clouds” reflect 23% of incoming shortwave radiation back into space, but also reflect 33% of outgoing longwave radiation back to Earth. In this way, anthropogenic (i.e. human made) contrails have a net warming effect. Under the auspices of future government regulations, airlines could earn traffic flow management slot prioritization credits for flying flight plans that lay persistent contrails in the morning (to block incoming shortwave radiation) and avoid laying persistent contrails in the evening (to allow longwave radiation to escape). This paper describes a method for processing publicly available weather forecast data to identify the location of Ice Super Saturated Regions where persistent contrails will form. The ISSRs statistics and a 3-D visualization of the ISSR over the CONUS are provided. The implications of this information and the limitations of the method are discussed.
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