亚洲的变暖趋势被棕色云的太阳吸收放大
Veerabhadran Ramanathan1, Muvva V Ramana, Gregory Roberts
1Center for Clouds, Chemistry and Climate, Scripps Institution of Oceanography, UCSD, La Jolla, California 92037, USA. vramanathan@ucsd.edu
Nature
|August 3, 2007
概括
来自燃烧生物质和化石燃料的大气棕色云显著加热了下层大气. 这种变暖可能解释喜马拉雅冰川的退缩,尽管之前假设这些气溶的冷却效应.
科学领域:
- 大气科学 大气科学
- 气候科学 气候科学
- 气溶科学 气溶科学
背景情况:
- 大气棕色云 (ABC) 是由生物质燃烧和化石燃料使用产生的.
- ABCs含有气溶,吸收和散射太阳辐射,导致大气加热和表面冷却.
- 气溶的净气候强迫效应是不确定的,可能掩盖温室气体变暖.
研究的目的:
- 直接测量由ABCs影响的大气太阳能加热率.
- 为了减少气溶强迫效应估计的不确定性.
- 评估ABCs对区域变暖趋势和冰川撤退的贡献.
主要方法:
- 使用了三个垂直堆叠的无人机 (UAV) 在0.5-3公里高度之间.
- 在无人机上部署小型仪器来测量气溶特性和太阳流.
- 进行了18次飞行任务,精确的空间和时间协调用于直接测量加热率.
主要成果:
- 直接测量显示,ABCs增加了大约50%的低大气层太阳能加热.
- 一般循环模型模拟表明,ABCs对区域变暖趋势作出了重大贡献.
- 观察到的每十年0.25K的变暖趋势可能与ABC有关,并解释喜马拉雅冰川的撤退.
结论:
- 直接测量证实了ABCs的显著大气太阳能加热.
- 在区域变暖中,ABCs扮演着相当重要的角色,与温室气体相当.
- 希马拉雅冰川的变暖效应为观察到的喜马拉雅冰川的撤退提供了合理的解释.
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