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Elevation Change Rates of Glaciers in the Lahaul-Spiti (Western Himalaya, India) during 2000–2012 and 2012–2013

机译:2000–2012年和2012–2013年期间,拉豪斯皮提(印度喜马拉雅山)冰川的高程变化率

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Previous studies have shown contrasting glacier elevation and mass changes in the sub-regions of high-mountain Asia. However, the elevation changes on an individual catchment scale can be potentially influenced by supraglacial debris, ponds, lakes and ice cliffs besides regionally driven factors. Here, we present a detailed study on elevation changes of glaciers in the Lahaul-Spiti region derived from TanDEM-X and SRTM C-/X-band DEMs during 2000–2012 and 2012–2013. We observe three elevation change patterns during 2000–2012 among glaciers with different extent of supraglacial debris. The first pattern (10% debris cover, type-2), maximum thinning is observed up-glacier instead of glacier terminus. This is interpreted as the insulating effect of a thick debris cover. A third pattern, high elevation change rates near the terminus despite high debris cover (>10% debris cover, type-3) is most likely associated with either thinner debris thickness or enhanced melting at supraglacial ponds and lakes as well as ice cliffs. We empirically determined the SRTM C- and X-band penetration differences for debris-covered ice, clean ice/firn/snow and correct for this bias in our elevation change measurements. We show that this penetration bias, if uncorrected, underestimates the region-wide elevation change and geodetic mass balance by 20%. After correction, the region-wide elevation change (1712 km 2 ) was estimated to be ?0.65 ± 0.43 m yr ? 1 during 2000–2012. Due to the short observation period, elevation change measurements from TanDEM-X for selected glaciers in the period 2012–2013 are subject to large uncertainties. However, similar spatial patterns were observed during 2000–2012 and 2012–2013, but at different magnitudes. This study reveals that the thinning patterns of debris-covered glaciers cannot be generalized and spatially detailed mapping of glacier elevation change is required to better understand the impact of different surface types under changing climatic conditions.
机译:先前的研究表明,在亚洲高山山脉的次区域,冰川的海拔高度和质量变化形成对比。但是,除了区域性驱动因素外,流域规模上的海拔变化还可能受到冰川碎屑,池塘,湖泊和冰崖的影响。在这里,我们对2000-2012年和2012-2013年期间从TanDEM-X和SRTM C / X波段DEM得出的Lahaul-Spiti地区冰川高程变化进行了详细研究。在2000-2012年期间,我们观察到了不同程度的冰川带碎屑冰川的三种海拔变化模式。第一种模式(10%的碎屑覆盖率,类型2)在上冰川而不是冰川终点处观察到最大程度的变薄。这被解释为厚厚的碎片覆盖物的绝缘效果。第三种模式是,尽管碎片覆盖率较高(3类碎片覆盖率大于10%),但总站附近的高程变化率仍然很高,这可能与较薄的碎片厚度或冰上湖泊和冰崖的融化作用增强有关。我们凭经验确定了碎屑覆盖的冰,干净的冰/碎屑/雪的SRTM C和X波段穿透率差异,并在海拔变化测量中纠正了这种偏差。我们表明,如果不进行校正,这种渗透偏差会低估整个地区的海拔变化和大地质量平衡20%。校正后,估计整个地区的海拔变化(1712 km 2)为?0.65±0.43 m yr?。 1在2000–2012年期间。由于观测期短,因此,TanDEM-X在2012-2013年期间对部分冰川进行的高程变化测量存在很大的不确定性。但是,在2000–2012年和2012–2013年期间观察到了相似的空间格局,但幅度不同。这项研究表明,不能概括覆盖有碎屑的冰川的稀疏模式,并且需要对冰川高度变化进行空间详细的映射,以更好地了解气候条件变化下不同表面类型的影响。

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