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Pacific contribution to the early twentieth-century warming in the Arctic

机译:太平洋对早期的贡献20世纪在北极变暖

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摘要

Arctic surface temperature warmed more than twice as fast as global temperature during the early twentieth century, similar to that during the recent global warming. This Arctic warming has been attributed to both external forcing1 and internal variability associated with atmospheric dynamics and Atlantic Ocean temperature in combination with Pacific variability5. Here we show, through coupled climate model experiments that superpose externally forced and dynamically driven changes, that Pacific decadal variability alone was a key contributor to the early twentieth century Arctic warming. Sea surface temperatures in the model are phased to observations by prescribing historical wind variations over the Pacific, which drive thermodynamically consistent decadal variations. During the early twentieth century, the Pacific Decadal Oscillation (PDO) transitioned to a positive phase with a concomitant deepening of the Aleutian Low that warms the Arctic by poleward low-level advection of extratropical air.In addition, our experiments revealed that the implemented Pacific surface changes weaken the polar vortex, which leads to subsidence-induced adiabatic heating of the Arctic surface. Thus, our results suggest that the observed recent shift to the positive PDO phase will intensify Arctic warming in the forthcoming decades.
机译:北极表面温度变暖的两倍多在早期的全球气温一样快在二十世纪,类似近期全球变暖。被归因于外部forcing1和内部变化与大气相关联动力学和大西洋温度结合太平洋variability5。显示,通过耦合气候模型实验添加外部强迫和动态推动改变,太平洋年代际变化早期是一个关键因素二十世纪北极变暖。在模型中温度分阶段观察通过处方历史的风变化在太平洋,开车热动力一致的年代际变化。在20世纪早期,太平洋年代际振荡(PDO)转换到一个正相伴随的深化北极变暖的阿留申低压向极低级平流温带空气中。实现太平洋表面变化削弱极地漩涡,导致沉降绝热加热的北极表面。观察到最近转向积极的PDO阶段会加剧北极变暖即将到来的几十年。

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