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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effects of increased near-infrared absorption by water vapor on the climate system
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Effects of increased near-infrared absorption by water vapor on the climate system

机译:近红外吸收增加的影响水蒸气对气候系统

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Recent improvements in the spectroscopic data for water vapor have significantly increased the near-infrared absorption in models of the Earth's atmosphere. The climatic effects of increased near-infrared absorption have been simulated with the latest Community Atmosphere Model (CAM3). The shortwave parameterization in CAM3 has been updated to minimize differences between CAM3 and line-by-line (LBL) calculations based upon the High Resolution Transmission (HITRAN) spectroscopic database issued in 2001. The new model reproduces LBL calculations of the near-infrared absorption to within 0.9% ± 1.4% and the near-infrared heating rates to within 0.02 ± 0.02 K d?1. Estimates of the global annual mean shortwave absorption by water vapor have been calculated from the editions of the AFGL and HITRAN databases issued in 1982 and 2001, respectively. The main changes in water vapor spectroscopy during this period are the addition of many missing weak lines and increased estimates of line strength in near infrared wavelengths. The clear-sky and all-sky shortwave absorption increase by 4.0 W m?2 and 3.1 W m?2, respectively, in calculations replacing the old with the new spectroscopic parameters. The atmosphere becomes warmer, moister, and more stable with the increased absorption in simulations with sea surface temperatures either prescribed from observations or predicted using a slab-ocean model. The latent heat flux and precipitation both decrease by approximately 2%. Hence the additional absorption has the effect of weakening the hydrological cycle in the atmospheric model.
机译:最近的改进的光谱数据水蒸气已经大大增加了近红外吸收地球的模型的气氛。近红外吸收被模拟模型(CAM3)最新的社区氛围。短波在CAM3已经参数化更新最小化CAM3和之间的区别基于逐行(LBL)计算高分辨率透射(HITRAN)光谱数据库2001年发布。模型再现了LBL计算的近红外吸收到0.9%±1.4%和近红外加热率0.02±0.02 K d ? 1。意思是短波吸收水蒸气从星团的版本AFGL计算HITRAN数据库发布了1982年和2001年,分别。光谱学在此期间增加许多失踪的弱线和增加估计在近红外谱线强度波长。吸收增加4.0 W m ?分别在计算取代旧的用新的光谱参数。气氛变得温暖,温暖等等稳定的增加吸收的模拟与海洋表面温度从观察或预测使用规定slab-ocean模型。降水减少大约2%。因此,额外的吸收的影响削弱的水循环大气模型。

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