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Holocene lowering of the Laurentide ice sheet affects North Atlantic gyre circulation and climate

机译:Laurentide冰盖的全新世降低影响北大西洋回旋环流和气候

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The Laurentide ice sheet, which covered Canada during glacial periods, had a major influence on atmospheric circulation and surface climate, but its role in climate during the early Holocene (9-7 ka), when it was thinner and confined around Hudson Bay, is unclear. It has been suggested that the demise of the ice sheet played a role in the 8.2 ka event (an abrupt 1-3 degrees C Northern Hemisphere cooling lasting similar to 160 years) through the influence of changing topography on atmospheric circulation. To test this hypothesis, and to investigate the broader implications of changing ice sheet topography for climate, we analyse a set of equilibrium climate simulations with ice sheet topographies taken at 500 year intervals from 9.5 to 8.0 ka. Between 9.5 and 8.0 ka, our simulations show a 2 degrees C cooling south of Iceland and a 1 degrees C warming between 40 degrees and 50 degrees N in the North Atlantic. These surface temperature changes are associated with a weakening of the subtropical and subpolar gyres caused by a decreasing wind stress curl over the mid-North Atlantic as the ice sheet lowers. The climate response is strongest during the period of peak ice volume change (9.5-8.5 ka), but becomes negligible after 8.5 ka. The climatic effects of the Laurentide ice sheet lowering during the Holocene are restricted to the North Atlantic sector. Thus, topographic forcing is unlikely to have played a major role in the 8.2 ka event and had only a small effect on Holocene climate change compared to the effects of changes in greenhouse gases, insolation and ice sheet meltwater.
机译:Laurentide冰盖覆盖了冰川期的加拿大,对大气环流和地表气候有重大影响,但它在全新世早期(9-7 ka)期间的气候中作用较弱,该变薄且局限于哈德逊湾附近。不清楚。有人认为,由于地形变化对大气环流的影响,冰盖的消亡在8.2 ka事件(北半球1-3摄氏度的突然降温,持续了近160年)中发挥了作用。为了检验该假设,并调查冰盖地形变化对气候的更广泛影响,我们使用冰盖地形以9.5至8.0 ka的500年间隔进行了一组平衡气候模拟分析。在9.5和8.0 ka之间,我们的模拟结果显示冰岛南部以2摄氏度的速度降温,北大西洋在40摄氏度至50摄氏度的北半球温度升高1摄氏度。这些表面温度的变化与北冰洋下降时北大西洋中部风应力的减少所引起的亚热带和亚极地回旋的减弱有关。在峰值冰量变化期间(9.5-8.5 ka),气候响应最强,但在8.5 ka之后,气候响应可忽略不计。全新世期间Laurentide冰盖下降的气候影响仅限于北大西洋地区。因此,与温室气体,日晒和冰盖融化水变化的影响相比,地形强迫不太可能在8.2 ka事件中起主要作用,并且对全新世气候变化影响很小。

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