Flume tests in wettable and water repellent sands: insights into the initiation of wildfire-related debris flows

Author:

Lourenço Sérgio D.N.1,Wang Gong-Hui2,Kamai Toshitaka2

Affiliation:

1. Department of Civil Engineering, The University of Hong Kong

2. Disaster Prevention Research Institute, Kyoto University

Publisher

The Japanese Geotechnical Society

Subject

General Computer Science

Reference20 articles.

1. 1) Arye G., J., Tarchitzky and Chen, Y. (2011): Treated wastewater effects on water repellency and soil hydraulic properties of soil-aquifer treatment infiltration basins, J. Hydrol. 397, 136-145.

2. 2) Bachmann, J., Guggenberger, G., Baumgartl, Th., Ellerbrock, R.H., Urbanek, E., Göbel, M.-O., Kaiser, K., Horn, R. and Fischer, W.R. (2008): Physical carbon - sequestration mechanisms under special consideration of soil wettability. Special Issue SPP 1090, J. Plant Nutr. Soil Sci., 171, 14–26.

3. 3) Busscher, H.J., Weerkamp, A.H., Mei, H.C. van der, Pelt, A.W.J. van, Jong, H.P. De and Arends, J. (2000): Measurement of the Surface Free Energy of Bacterial Cell Surfaces and Its Relevance for Adhesion, App. Environ. Microbiology 48 (5) 980-983.

4. 4) Chenu, C., Bissonnais, Y. L. and Arrouays D. (2000): Organic Matter Influence on Clay Wettability and Soil Aggregate Stability, Soil Sci. Soc. Am. J. 64, 1479–1486.

5. 5) De Gennes, P.G. (1985): Wetting: statics and dynamics, Rev. Modern Physics 57 (3) I, 827-863.

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