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首页> 外文期刊>Journal of Glaciology >Assessing the applicability of terrestrial laser scanning for mapping englacial conduits
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Assessing the applicability of terrestrial laser scanning for mapping englacial conduits

机译:评估陆地激光扫描对映射闸门管道的适用性

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摘要

The morphology of englacial drainage networks and their temporal evolution are poorly characterised, particularly within cold ice masses. At present, direct observations of englacial channels are restricted in both spatial and temporal resolution. Through novel use of a terrestrial laser scanning (TLS) system, the interior geometry of an englacial channel in Austre Broggerbreen, Svalbard, was reconstructed and mapped. Twenty-eight laser scan surveys were conducted in March 2016, capturing the glacier surface around a moulin entrance and the uppermost 122 m reach of the adjoining conduit. The resulting point clouds provide detailed 3-D visualisation of the channel with point accuracy of 6.54 mm, despite low (60%) overall laser returns as a result of the physical and optical properties of the clean ice, snow, hoar frost and sediment surfaces forming the conduit interior. These point clouds are used to map the conduit morphology, enabling extraction of millimetre-to-centimetre scale geometric measurements. The conduit meanders at a depth of 48 m, with a sinuosity of 2.7, exhibiting teardrop shaped cross-section morphology. This improvement upon traditional surveying techniques demonstrates the potential of TLS as an investigative tool to elucidate the nature of glacier hydrological networks, through reconstruction of channel geometry and wall composition.
机译:enylacial排水网络的形态及其时间进化的特征差,特别是在冷冰块内。目前,在空间和时间分辨率的情况下,enylacial通道的直接观察受到限制。通过新颖的使用陆地激光扫描(TLS)系统,重建和映射了澳大利亚人斯瓦尔巴堡的enylacial通道的内部几何形状。在2016年3月进行了二十八次激光扫描调查,捕获冰川地面围绕摩尔入口和相邻导管的最上面的122米。结果点云提供了6-d的3-D,光度可视化的光点精度为6.54mm,尽管是清洁冰,雪,树膜霜的物理和光学性质的总激光返回的总激光返回沉积物表面形成导管内部。这些点云用于映射导管形态,从而能够提取毫米到厘米刻度的几何测量。导管蜿蜒深度为48米,具有2.7的圆形度,表现出泪珠形状的横截面形态。这种改进传统测量技术通过重建通道几何形状和墙壁组成来表现出TLS作为阐明冰川水文网络性质的调查工具的潜力。

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