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来自冷池的变暖:一个中等规模组织改变地球辐射预算的途径
Pouriya Alinaghi1, Martin Janssens1,2, Fredrik Jansson1
1Department of Geoscience and Remote Sensing, Delft University of Technology, Delft 2628 CN, The Netherlands.
概括
海洋浅积云通过水分聚合和冷池组织起来. 压制冷池增加了1.88W/m2的变暖,突出了中等层次过程在气候预测中的关键作用.
科学领域:
- 大气科学 大气科学
- 气候建模气候模型
- 云物理 云物理
背景情况:
- 海洋浅积云是气候预测中不确定性的主要来源.
- 这些云通过水分聚合和冷池组织成中层结构.
- 全球气候模型往往无法捕捉到这些关键的中等层次过程.
研究的目的:
- 为了研究介质层级动态,特别是冷池,如何影响海洋浅积云的辐射预算.
- 评估中层次过程对云对全球变暖反应的影响.
主要方法:
- 利用了大量的大域,大的模拟.
- 操纵了中层雨蒸发模式,以抑制冷池的形成.
- 分析了云系统动态,辐射预算和气候反应的变化.
主要成果:
- 压制冷池导致了中等层次上升的减少,并阻止了失控的水分聚合.
- 这导致净降雨量减少,云层更加潮湿,清天空中长波辐射排放减少.
- 当冷池动力学被抑制时,观察到总体平均升温为1.88W/m2.
结论:
- 诸如冷池和湿度聚合等中等层次过程之间的相互作用对于准确的辐射预算计算至关重要.
- 中尺度动力学显著调节浅云的气候敏感性.
- 在公里级气候模型中更好地代表这些过程是必不可少的.
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