使用ARES仪器测量对流层上层和平流层下层水物质含量

A. T. Stair, C. Beeler, M. Gardner, C. H. Humphrey, S. Rappaport, R. Rieder, O. Shepherd, M. McElroy, K. D. Bishop, K. Emanuel, P. Joss, G. Macdonald
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引用次数: 0

摘要

水在地球大气的温室效应中起着核心作用。对流层上层和平流层下层(海拔约6-18公里)的水物质(水蒸气加凝结水)的数量对全球气候的模拟特别重要。特别有趣的是对流层顶附近的水物质。在这一海拔范围内,关于平均水物质含量及其时空变异的经验数据极为稀少;事实上,现有的数据不足以与全球气候模式的预测进行有意义的比较。ARES项目采用一架WB-57F飞机,可在19公里的高空飞行,为测量大气水物质含量提供了一种强大的新资源。ARES飞机上的主要仪器是成像光谱仪,采集2-6.3 /spl μ m波段的数据。大气中水物质的体积密度是通过测量在6公里至18公里的几个高度增量上太阳或月球辐照度的吸收来确定的。WB-57F飞机用于这些数据收集,可以测量大气含水量的地理和季节变化。未来的飞行将检查这些变化,并将包括一个仪器升级包,其中包括一个臭氧计,用于确定对流层顶的高度,以及Lyman-/spl alpha/和冷冻镜湿度计,用于独立验证ARES分光光度法数据测量的水蒸气密度。本文介绍1994年5月和12月取得的一套初步测量结果,并说明即将进行的飞行计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurements of upper tropospheric and lower stratospheric water substance content using ARES instrumentation
Water plays a central role in the greenhouse effect in the Earth's atmosphere. The quantity of water substance (water vapor plus condensed water) in the upper troposphere and lower stratosphere (altitudes of approximately 6-18 km), is especially important to the modeling of the global climate. Of particular interest is the water substance in the vicinity of the tropopause. Empirical data concerning the mean water substance content and its spatial and temporal variability through this range of altitudes are extremely sparse; in fact, the available data are inadequate for meaningful comparison with the predictions of global climate models. The ARES program, which employs a WB-57F aircraft that can fly at a wide range of altitudes as high as 19 km, provides a powerful new resource for measuring the atmospheric water substance content through the critical range of interest. The primary instrument on board the ARES aircraft is the imaging spectrometer, which collects data in the 2-6.3 /spl mu/m wavelength region. The volume density of the atmospheric water substance is determined as a function of altitude by measuring the absorption of solar or lunar irradiance at several altitude increments from 6 km to 18 km. The use of the WB-57F aircraft for these data collections allows for the measurement of geographic and seasonal variations in the atmospheric water content. Upcoming flights will examine these variations and will include an instrument upgrade package that includes an ozone meter to determine the altitude of the tropopause, as well as Lyman-/spl alpha/ and chilled mirror hygrometers for independent verification of the water vapor densities measured by the ARES spectrophotometric data. This paper presents the results of a preliminary set of measurements obtained in May and December 1994, and describes plans for upcoming flights.
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