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Geodetic point surface mass balances: a new approach to determine point surface mass balances on glaciers from remote sensing measurements

机译:大地测量点表面质量余额:一种测定遥感测量冰川点表面质量余额的新方法

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Mass?balance observations are very useful to assess climate change in different regions of the world. As opposed to glacier-wide mass balances which are influenced by the dynamic response of each glacier, point mass balances provide a direct climatic signal that depends on surface accumulation and ablation only. Unfortunately, major efforts are required to conduct in situ measurements on glaciers. Here, we propose a new approach that determines point surface mass balances from remote sensing observations. We call this balance the geodetic point surface mass balance. From observations and modelling performed on the Argentière and Mer de Glace glaciers over the last decade, we show that the vertical ice flow velocity changes are small in areas of low bedrock slope. Therefore, assuming constant vertical velocities in time for such areas and provided that the vertical velocities have been measured for at least?1 year in the past, our method can be used to reconstruct annual point surface mass balances from surface elevations and horizontal velocities alone. We demonstrate that the annual point surface mass balances can be reconstructed with an accuracy of about 0.3?m of water equivalent per year (m?w.e.?a ?1 ) using the vertical velocities observed over the previous years and data from unmanned aerial vehicle images. Given the recent improvements of satellite sensors, it should be possible to apply this method to high-spatial-resolution satellite images as well.
机译:弥撒?平衡观测值得评估世界各地的气候变化非常有用。与冰川范围的质量平衡相反,受到每个冰川的动态响应的影响,点质量平衡提供了直接的气候信号,其仅取决于表面累积和消融。不幸的是,需要在冰川原位测量中进行重大努力。在这里,我们提出了一种新的方法,确定从遥感观察中确定点表面质量余额。我们称之为平衡大地面积质量平衡。在过去十年中,在Argentière和Mer de Glace冰川上进行的观测和建模,我们表明垂直冰流速变化在低基岩斜坡的区域中很小。因此,假设这种区域的恒定垂直速度,并且还提供了过去已经测量的垂直速度至少?过去1年,我们的方法可用于从表面升高和单独的水平速度重建年度点表面质量余量。我们证明,使用每年每年的水当量约0.3Ωm的精度来重建每年点表面质量余额。鉴于最近的卫星传感器的改进,应该可以将该方法应用于高空间分辨率的卫星图像。

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