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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Debris flow susceptibility mapping using a qualitative heuristic method and Flow-R along the Yukon Alaska Highway Corridor, Canada
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Debris flow susceptibility mapping using a qualitative heuristic method and Flow-R along the Yukon Alaska Highway Corridor, Canada

机译:使用定性启发式方法和流量-1沿着加拿大育空阿拉斯加高速公路走廊的定性启发式方法和流动r

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摘要

This research activity aimed at reducing risk to infrastructure, such as a proposed pipeline route roughly parallel to the Yukon Alaska Highway Corridor (YAHC), by filling geoscience knowledge gaps in geohazards. Hence, the Geological Survey of Canada compiled an inventory of landslides including debris flow deposits, which were subsequently used to validate two different debris flow susceptibility models. A qualitative heuristic debris flow susceptibility model was produced for the northern region of the YAHC, from Kluane Lake to the Alaska border, by integrating data layers with assigned weights and class ratings. These were slope angle, slope aspect, surficial geology, plan curvature, and proximity to drainage system. Validation of the model was carried out by calculating a success rate curve which revealed a good correlation with the susceptibility model and the debris flow deposit inventory compiled from air photos, high-resolution satellite imagery, and field verification. In addition, the quantitative Flow-R method was tested in order to define the potential source and debris flow susceptibility for the southern region of Kluane Lake, an area where documented debris flow events have blocked the highway in the past (e.g. 1988). Trial and error calculations were required for this method because there was not detailed information on the debris flows for the YAHC to allow us to define threshold values for some parameters when calculating source areas, spreading, and runout distance. Nevertheless, correlation with known documented events helped define these parameters and produce a map that captures most of the known events and displays debris flow susceptibility in other, usually smaller, steep channels that had not been previously documented.
机译:这项研究活动旨在减少对基础设施的风险,例如拟议的管道路线,粗略平行于育空阿拉斯加公路走廊(YAHC),通过填补地质科学知识差距。因此,加拿大的地质调查编制了山体滑坡库存,包括碎片流量沉积物,随后用于验证两种不同的碎片流动敏感模型。通过将数据层与分配的权重和级别的额定值集成,为阿拉斯加边境的kluane湖到阿拉斯加边境而制作了一个定性的启发式碎片流动敏感模型。这些是斜坡角度,斜坡方面,表格地质,平面曲率和排水系统的邻近。通过计算成功率曲线来进行模型的验证,该成功率曲线揭示了与易感模型的良好相关性和从空中照片,高分辨率卫星图像和现场验证编制的碎片流量存款库存。此外,测试了定量流动-R方法,以便为Kluane Lake的南部地区定义潜在的来源和碎片流动敏感,这是一种记录的碎片流动事件阻断了过去的高速公路(例如1988)。此方法需要试验和错误计算,因为在计算源区域,传播和跳动距离时,允许yahc的碎片流有关碎片流量的详细信息,以便我们为某些参数定义阈值。然而,与已知的文档事件的相关性有助于定义这些参数并产生捕获大多数已知事件的地图,并在其他未以前记录的其他通常更小的陡目的信道中显示碎片流量敏感性。

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