首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >High resolution mapping of supra-glacial drainage pathways reveals link between micro-channel drainage density, surface roughness and surface reflectance
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High resolution mapping of supra-glacial drainage pathways reveals link between micro-channel drainage density, surface roughness and surface reflectance

机译:冰川上排水路径的高分辨率映射揭示了微通道排水密度,表面粗糙度和表面反射率之间的联系

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摘要

This paper reports on the use of a small unmanned aerial vehicle (sUAV) carrying a standard compact camera, to construct a high resolution orthomosaic (OM) and digital elevation model (DEM) over the lower reaches of the glacier Midtre Lovenbreen, Svalbard. Structure from Motion (SfM) techniques were used to build the OM and DEM, and together these reveal insights into the nature of supra-glacial drainage. Major meandering supra-glacial drainage pathways show clear dynamism, via meander cutoffs and abandoned channels. In addition, the imagery reveals a very extensive network of smaller channels that may well carry substantial amounts of water. This network of channels is in part controlled by the structure of the glacier, but in turn, these channels have a significant impact on the ice surface. Roughness of the ice surface is higher where channels are most extensive. In addition, we find a relationship between channel density and surface reflectance, such that greater channel density is associated with lower reflectance values. Given the role of surface reflectance and roughness in the energy balance of glaciers, it is therefore apparent that extensive networks of small supra-glacial channels across such glaciers have the potential to have an important impact on energy exchanges between the atmosphere and the ice surface. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文报道了使用小型无人飞行器(sUAV)和标准紧凑型相机,在斯瓦尔巴特群岛Midtre Lovenbreen冰川的下游构造高分辨率正镶嵌(OM)和数字高程模型(DEM)。运动结构(SfM)技术用于构建OM和DEM,这些技术共同揭示了超冰川排水的本质。主要蜿蜒的超冰川排水路径通过蜿蜒的截止点和废弃的渠道显示出明显的动力。另外,图像还显示了非常广泛的较小渠道网络,这些渠道很可能会承载大量的水。该通道网络部分受冰川结构控制,但这些通道又对冰面产生重大影响。在通道最宽的地方,冰面的粗糙度较高。此外,我们发现通道密度与表面反射率之间存在关系,因此,较大的通道密度与较低的反射率值相关。考虑到表面反射率和粗糙度在冰川能量平衡中的作用,因此显而易见的是,横跨此类冰川的小型超冰川通道的广泛网络有可能对大气与冰面之间的能量交换产生重要影响。版权所有(c)2015 John Wiley&Sons,Ltd.

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