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从地球最近的能源预算中推断出更大的未来全球变暖
Patrick T Brown1,1, Ken Caldeira1,1
1Department of Global Ecology, Carnegie Institution for Science, Stanford, California, USA.
Nature
|December 9, 2017
概括
气候模型显示不同的全球变暖预测. 通过将可观测的气候能源预算模式与模型输出联系起来, 科学家们改进了未来的气候变暖估计,
科学领域:
- 气候科学
- 地球系统科学
- 大气物理
背景情况:
- 气候模型对于预测未来的全球变暖至关重要,但在模型之间存在显著的变化.
- 在相同的辐射强迫场景下,模型估计的差异需要提高预测准确性.
研究的目的:
- 确定和利用可观测的气候属性和模拟的未来变暖之间的强有力的跨模型关系.
- 通过使用观测数据来限制模型输出来完善全球变暖预测.
主要方法:
- 在多种气候模型中对地球大气层顶部能源预算属性的全球空间模式的分析.
- 这些可观测的属性与模拟的变暖量之间建立了统计关系.
- 使用观测数据来限制模型预测,以提高准确性和减少不确定性.
主要成果:
- 在可观测的能源预算模式和预计的全球变暖之间发现了强有力的关系.
- 在最的强迫场景中,受观察限制的预测产生了更高的平均变暖 (+0.5°C).
- 预测变暖的不确定性范围 (两个标准偏差差) 减少了大约三分之一 (-1.2°C).
结论:
- 用观测数据限制气候模型可以提高可靠性,并缩小未来变暖预测的范围.
- 实现全球温度稳定的具体目标将需要比以前估计的更大程度的温室气体减排.
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