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Solar activity and the westerlies dominate decadal hydroclimatic changes over arid Central Asia

机译:在干旱的中亚,太阳活动和西风主导了十年的水文气候变化

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Hydroclimatic changes over arid central Asia (ACA) are not fully understood, primarily due to the paucity of accurate, high-resolution climatic records. Here we reconstruct hydroclimatic changes over the past 160 years at Lake Karakul, Pamir Plateau (central Asia), using multiple, high-resolution (similar to 0.8 yr) sedimentary proxies. We find that hydroclimatic changes at Lake Karakul are well correlated with meteorological records, the snow equilibrium line altitude (ELA), reconstructed regional precipitation, the westerly index, and total solar irradiance (TSI), We contend that solar activity and the westerlies were the dominant influences on ACA hydro climatic variations during the period of record: (1) solar activity dominates regional temperature variations, precipitation/evaporation, and the advance/retreat of glaciers; (2) stronger westerly intensity (corresponding to higher westerly index and higher North Atlantic Oscillation (NAO) index) brings more water vapor from the west to ACA, and vice versa; and (3) the southerly migration of the westerly jet stream, which is closely related to lower TSI and temperatures, could favor more water vapor transported to ACA areas, and vice versa. We anticipate that continued global warming will result in more rapid glacial retreat, enhanced evaporation, lake area shrinkage, and deeper aridification over ACA.
机译:干旱中亚(ACA)的水文气候变化尚未得到充分的理解,这主要是由于缺乏准确,高分辨率的气候记录。在这里,我们使用多个高分辨率(约0.8年)沉积物来重建帕米尔高原(中亚)卡拉库湖(Lake Karakul)过去160年的水文气候变化。我们发现卡拉库尔湖的水文气候变化与气象记录,雪平衡线高度(ELA),重建的区域降水,西风指数和总太阳辐照度(TSI)密切相关。我们认为太阳活动和西风是在记录期间对ACA水文气候变化的主要影响是:(1)太阳活动主导着区域温度变化,降水/蒸发以及冰川的进退。 (2)较强的西风强度(对应较高的西风指数和较高的北大西洋涛动指数)带来了更多的水汽从西部流向ACA,反之亦然; (3)西风急流向南迁移,这与较低的TSI和温度密切相关,可能有利于更多的水蒸气输送到ACA地区,反之亦然。我们预计持续的全球变暖将导致冰川退缩更快,蒸发增加,湖泊面积缩小以及ACA上的更深层干旱化。

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