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Multi-year evaluation of airborne geodetic surveys to estimate seasonal mass balance, Columbia and Rocky Mountains, Canada

机译:机载大地测量调查的多年评估估算季节性质量平衡,加拿大哥伦比亚和岩石山脉

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Seasonal measurements of glacier mass balance provide insight into the relation between climate forcing and glacier change. To evaluate the feasibility of using remotely sensed methods to assess seasonal balance, we completed tandem airborne laser scanning (ALS) surveys and field-based glaciological measurements over a 4-year period for six alpine glaciers that lie in the Columbia and Rocky Mountains, near the headwaters of the Columbia River, British Columbia, Canada. We calculated annual geodetic balance using coregistered late summer digital elevation models (DEMs) and distributed estimates of density based on surface classification of ice, snow, and firn surfaces. Winter balance was derived using coregistered late summer and spring DEMs, as well as density measurements from regional snow survey observations and our glaciological measurements. Geodetic summer balance was calculated as the difference between winter and annual balance. Winter mass balance from our glaciological observations averaged 1.95±0.09 ?m?w.e. (meter water equivalent), 4?% larger than those derived from geodetic surveys. Average glaciological summer and annual balance were 3?% smaller and 3?% larger, respectively, than our geodetic estimates. We find that distributing snow, firn, and ice density based on surface classification has a greater influence on geodetic annual mass change than the density values themselves. Our results demonstrate that accurate assessments of seasonal mass change can be produced using ALS over a series of glaciers spanning several mountain ranges. Such agreement over multiple seasons, years, and glaciers demonstrates the ability of high-resolution geodetic methods to increase the number of glaciers where seasonal mass balance can be reliably estimated.
机译:冰川大规模平衡的季节性测量提供了洞察气候迫使和冰川变化之间的关系。为了评估使用远程感测方法来评估季节性平衡的可行性,我们完成了在哥伦比亚和落基山脉旁边的六个高山冰川的4年期间的串联空气传播激光扫描(ALS)调查和现场冰川学测量。加拿大不列颠哥伦比亚省哥伦比亚河的脑海。我们计算使用内核晚夏天数字高度模型(DEM)和基于冰,雪和FIRN表面的表面分类的密度分布估计的年度大地测量平衡。冬季平衡是使用内科的深夏和春季DEM,以及来自区域雪调查观察的密度测量和我们的冰川术测量。大地测量夏季平衡计算为冬季和年平衡之间的差异。冬季大众平衡从我们的冰川学观察平均1.95±0.09?m?w.e。 (仪表水当量),比源自大地测量调查的4倍。平均冰川夏季和年平均值分别比我们的大地测量估计分别为3?%,分别为3?%。我们发现基于表面分类的分配雪,FIRN和冰密度对大地体重变化的影响大于密度值。我们的结果表明,可以使用跨越几个山脉的一系列冰川来生产季节性质量变化的准确评估。这些协议多个季节,年和冰川展示了高分辨率的大地测量方法增加冰川数量可以可靠地估计季节性质量平衡的能力。

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