Geomorphic Controls on Landslide Activity in Champlain Sea Clays along Green’s Creek, Eastern Ontario, Canada

Author:

Hugenholtz Chris H.1,Lacelle Denis2

Affiliation:

1. Department of Geography, University of Calgary, 2500 University Drive N.W., Calgary, Alberta, T2N 1N4

2. Department of Earth Sciences, University of Ottawa, 140 Louis Pasteur, Ottawa, Ontario, K1N 6N5

Abstract

Landslides in Champlain Sea clays have played an important role in shaping Eastern Ontario’s landscape. Despite extensive research, there is a limited understanding of the relations between landslide activity, climatic controls, and the geomorphic evolution of river valleys in Champlain Sea clay deposits. With these issues in mind, a study was undertaken to determine the controls on the spatio-temporal distribution of contemporary landslide activity in valley slopes composed of Champlain Sea clay. The study area was the Green’s Creek valley located in the east end of Ottawa, Ontario. Observations and measurements indicate that landslide activity is closely related to valley development. An inventory of landslide activity from 73 years of aerial photographs revealed that landslides occurred preferentially in slopes located on the outside of meander bends, and that they often recurred in the same slope after a period of ripening. The largest and highest density of landslides occurred along a major tributary valley where geomorphic features such as knickpoints, V-shaped valley profiles and bedrock depth-to-slope height ratios reflect an unstable phase of valley development. A small number of landslides incurred successive failures along the slopes of the backscarp for several years-to-decades after the initial failure. Correlation analysis showed that the temporal distribution of landslide activity has fluctuated in response to decadal-scale changes in the amount of precipitation.

Publisher

Consortium Erudit

Subject

Paleontology,Geology

Reference52 articles.

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2. Aylsworth, J.M., Lawrence, D.E. and Guertin, J., 2000. Did two massive earthquakes in the Holocene induce widespread landsliding and near-surface deformation in part of the Ottawa Valley, Canada? Geology, 28: 903-906.

3. Bélanger, J.R., 1994. Urban geology of Canada’s National Capital Region. Geological Survey of Canada, Ottawa, Open File 2878, 1 diskette.

4. ——— 2001. Urban Geology of the National Capital Area. Website: http://gsc.nrcan.gc.ca/urbgeo/natcap/index_e.php. Last accessed December 5, 2005.

5. Bjerrum, L., Loken, T., Heiberg, S. and Foster, R., 1969. A field study of factors responsible for quick clay slides, p. 531-540. Proceedings of the 7th International Conference on Soil Mechanics and Foundation Engineering (August 1969, Mexico City), vol. 2, 702 p.

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