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首页> 外文期刊>Journal of Hydrology >Different region climate regimes and topography affect the changes in area and mass balance of glaciers on the north and south slopes of the same glacierized massif (the West Nyainqentanglha Range, Tibetan Plateau)
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Different region climate regimes and topography affect the changes in area and mass balance of glaciers on the north and south slopes of the same glacierized massif (the West Nyainqentanglha Range, Tibetan Plateau)

机译:不同地区的气候体制和地形会影响同一冰川化断层块(青藏高原西Nyainqentanglha山脉)南北坡上冰川面积和质量平衡的变化。

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This project launched a comparative study to investigate the areas of the Zhadang glacier (on the leeward slopeorth slope of the West Nyainqentanglha Range, Tibetan Plateau) and the Gurenhekou glacier (on the windward slope/south slope) for nearly 40. years (1970-2007) and measure the mass balance of the two glaciers for three (2005-2008) and four (2004-2008) mass balance years, respectively. Results show that, in 1970-2007, overall annual precipitation decreased slightly caused by the weakening Indian monsoon and strengthened westerlies and annual mean air temperatures increased gradually in the areas to the north and south of the West Nyainqentanglha Range, respectively, resulting in the areas of the two glaciers reduced over the last nearly four decades. The rate of air temperature increase in the north is higher than that in the south. Moreover, mean annual precipitation in the south exceeds that in the north, due to the weakening of the Indian Monsoon activities across the West Nyainqentanglha Range. As a result, the area decrease of Zhadang glacier in the north slope of the West Nyainqentanglha Range is more intensive than that of Gurenhekou glacier in the south slope. Results also show that these two small glaciers experienced gradual reduction of the mass loss during the observation period of 2005-2008 and 2004-2008, and exhibited positive mass balances in 2008, possibly resulting from increases of annual precipitation and decreases in mean annual air temperatures, especially the lowering of air temperatures and the notably increasing of precipitation during the ablation period in 2006-2008. However, the mass balances of the two glaciers differed considerably. The differences in mass balance between the glaciers appear closely related to local climatic factors (different local moisture recycling and different seasonal distributions of precipitation) and glacier topography (the leeward/windward slopes and different elevations of the accumulation and ablations zones). Interestingly, the mass balances in the final year of our study period (2007/2008) for these two glaciers are much more similar, although they differed during the first year (2005/2006), resulting from differences between their annual precipitation trends. Observations indicate that changes in either the air temperature or precipitation will drive mass balance changes for the two glaciers, and the changes in the mass balance will directly affect the local water resource. These findings will provide important data for hydrological modelling of glacierized catchments and local water resource management strategies.
机译:该项目开展了一项比较研究,以研究扎当冰川(位于青藏高原西Nyainqentanglha山脉的背风坡/北坡)和古仁河口冰川(迎风坡/南坡)的面积。 1970-2007年),并分别测量两个冰川在三个(2005-2008年)和四个(2004-2008年)质量平衡年的质量平衡。结果表明,在1970-2007年,由于印度季风减弱和西风加强,年降水量总体略有下降,西Nyainqentanglha山脉北部和南部地区的年平均气温分别逐渐升高,导致该地区在过去的近40年中,这两个冰川的数量减少了。北部的气温上升速度高于南部。此外,由于印度西部季恩唐古拉山脉的季风活动减弱,南部的年平均降水量超过了北部。其结果是,西部念青唐古拉山脉北坡扎当冰川的面积减少要比南坡古仁河口冰川的面积减少更大。结果还表明,这两个小冰川在2005-2008年和2004-2008年的观测期内经历了质量损失的逐渐减少,并在2008年表现出正的质量平衡,这可能是由于年降水量增加和年平均气温降低所致特别是在2006-2008年的消融期间,气温下降和降水显着增加。但是,两个冰川的质量平衡差异很大。冰川之间的质量平衡差异似乎与当地气候因素(不同的当地水分循环利用和不同的降水季节分布)和冰川地形(背风/迎风坡度以及积聚和消融带不同高度)密切相关。有趣的是,这两个冰川在研究期的最后一年(2007/2008)中的质量平衡更为相似,尽管第一年(2005/2006)在第一年(2005/2006)之间存在差异,这是由于它们的年降水量趋势不同所致。观测表明,气温或降水的变化都将推动两个冰川的质量平衡变化,而质量平衡的变化将直接影响当地的水资源。这些发现将为冰川化流域的水文模拟和当地水资源管理策略提供重要数据。

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