Debris flow susceptibility mapping using a qualitative heuristic method and Flow-R along the Yukon Alaska Highway Corridor, Canada

Author:

Blais-Stevens A.,Behnia P.

Abstract

Abstract. 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.

Funder

Natural Resources Canada

Publisher

Copernicus GmbH

Subject

General Earth and Planetary Sciences

Reference36 articles.

1. Beguería, S., Van Asch, Th. W. J., Malet, J.-P., and Gröndahl, S.: A GIS-based numerical model for simulating the kinematics of mud and debris flows over complex terrain, Nat. Hazards Earth Syst. Sci., 9, 1897–1909, https://doi.org/10.5194/nhess-9-1897-2009, 2009.

2. Berti, M. and Simoni, A.: Prediction of debris flow inundation areas using empirical mobility relationships, Geomorphology, 90, 144–161, 2007.

3. Blais-Stevens, A., Couture, R., and Page, A.: Landslide inventory along the Alaska Highway Corridor, Yukon, Geol. Surv. of Can., Ottawa, Ont., Open File 6654, DVD, 2010a.

4. Blais-Stevens, A., Couture, R., Page, A., Koch, J., Clague, J. J., and Lipovsky, P.: Landslide susceptibility, hazard and risk assessments along pipeline corridors in Canada, in: Proceedings of the 63rd Canadian geotechnical conference and 6th Canadian permafrost conference, Calgary (AB), 878–885, 2010b.

5. Blais-Stevens, A. Lipovsky, P., Kremer, M., Couture, R., and Page, A.: Landslide inventory and susceptibility mapping for a proposed pipeline route, Yukon Alaska Highway Corridor, in:  Proceedings of the Second World Landslide Forum, Rome, Italy, 362, (ESS Cont. # 20110101), 2011.

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