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Understanding the varied response of the extratropical storm tracks to climate change

机译:了解温带风暴路径对气候变化的不同反应

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摘要

Transient eddies in the extratropical storm tracks are a primary mechanism for the transport of momentum, energy, and water in the atmosphere, and as such are a major component of the climate system. Changes in the extratropical storm tracks under global warming would impact these transports, the ocean circulation and carbon cycle, and society through changing weather patterns. I show that the southern storm track intensifies in the multimodel mean of simulations of 21st century climate change, and that the seasonal cycle of storm-track intensity increases in amplitude in both hemispheres. I use observations of the present-day seasonal cycle to confirm the relationship between storm-track intensity and the mean available potential energy of the atmosphere, and show how this quantitative relationship can be used to account for much of the varied response in storm-track intensity to global warming, including substantially different responses in simulations with different climate models. The results suggest that storm-track intensity is not related in a simple way to global-mean surface temperature, so that, for example, a stronger southern storm track in response to present-day global warming does not imply it was also stronger in hothouse climates of the past.
机译:温带风暴路径中的瞬变涡是大气中动量,能量和水的传输的主要机制,因此是气候系统的主要组成部分。全球变暖下温带风暴路径的变化将通过变化的天气模式影响这些运输,海洋环流和碳循环以及社会。我表明,南部风暴径在21世纪气候变化模拟的多模型平均值中得到增强,并且风暴径强度的季节性周期在两个半球都增大。我使用对当前季节周期的观测来确认风暴轨迹强度与大气平均可用势能之间的关系,并说明如何利用这种定量关系来解释风暴轨迹中的大部分变化响应强度对全球变暖的影响,包括在使用不同气候模型进行的模拟中的响应有很大不同。结果表明,风暴路径的强度与全球平均表面温度没有简单的关系,因此,例如,响应当前的全球变暖,更强的南方风暴路径并不意味着它在温室中也更强过去的气候。

著录项

  • 作者

    O’Gorman, Paul A.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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