首页> 外文期刊>Journal of Applied Meteorology and Climatology >Deriving Atmospheric Temperature of the Tropopause Region-Upper Troposphere by Combining Information from GPS Radio Occupation Refracth ity and High-Spectral-Resolution Infrared Radiance Measurements
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Deriving Atmospheric Temperature of the Tropopause Region-Upper Troposphere by Combining Information from GPS Radio Occupation Refracth ity and High-Spectral-Resolution Infrared Radiance Measurements

机译:通过结合GPS无线电职业折射率和高光谱分辨率红外辐射测量信息得出对流层上方对流层的大气温度

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摘要

Global positioning system radio occultation (GPS/RO) measurements from the Challenging Minisatellite Payload (CHAMP) and Satelite de Aplicaciones Cientificas-C (SAC-C) satellites are used to improve tropospheric profile retrievals derived from the Aqua platform high-spectral-resolution Atmospheric Infrared Sounder (AIRS) and broadband Advanced Microwave Sounding Unit (AMSU) measurements under clear-sky conditions. This paper compares temperature retrievals from combined AIRS, AMSU, and CHAMP/SAC-C measurements using different techniques: 1) a principal component statistical regression using coefficients established between real (and in a few cases calculated) measurements and radiosonde atmospheric profiles; and 2) a Bayesian estimation method applied to AIRS plus AMSU temperature retrievals and GPS/RO temperature profiles. The Bayesian estimation method was also applied to GPS/RO data and the AIRS Science Team operational level-2 (version 4.0) temperature products for comparison. In this study, including GPS/RO data in the tropopause region produces the largest improvement in AIRS-AMSU temperature retrievals—about 0.5 K between 100 and 300 hPa. GPS/RO data are found to provide valuable upper-tropospheric information that improves the profile retrievals from AIRS and AMSU.
机译:具有挑战性的微型卫星有效载荷(CHAMP)和卫星卫星Centificas-C(SAC-C)卫星的全球定位系统无线电掩星(GPS / RO)测量被用于改善从Aqua平台高光谱分辨率大气获得的对流层剖面检索在晴朗的天空条件下进行红外测深仪(AIRS)和宽带高级微波测深仪(AMSU)的测量。本文比较了使用不同技术从组合的AIRS,AMSU和CHAMP / SAC-C测量中获取的温度:1)使用在实际(在某些情况下已计算)测量值与探空仪大气廓线之间建立的系数进行主成分统计回归; 2)贝叶斯估计方法应用于AIRS加上AMSU温度检索和GPS / RO温度剖面。贝叶斯估计方法还应用于GPS / RO数据和AIRS科学小组操作2级(4.0版)温度产品以进行比较。在这项研究中,将对流层顶区域中的GPS / RO数据包括在内,可以最大程度地改善AIRS-AMSU的温度反演-100至300 hPa之间约0.5K。发现GPS / RO数据可提供有价值的高对流层信息,从而改善从AIRS和AMSU进行的剖面检索。

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