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Wind Erosion in Western Queensland Australia

Modelling Land Susceptibility to Wind Erosion in Western ... - Ninti One

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Chappell, A., McTa<strong>in</strong>sh, G.H., Leys, J.F., Strong, C., 2003. Us<strong>in</strong>g geostatistics to elucidatetemporal change <strong>in</strong> the spatial variation of aeolian sediment transport. Earth SurfaceProcesses and Landforms, 28(6): 567-585.Chappell, A., Zobeck, T.M., Brunner, G., 2006. Us<strong>in</strong>g bi-directional soil spectral reflectanceto model soil surface changes <strong>in</strong>duced by ra<strong>in</strong>fall and w<strong>in</strong>d-tunnel abrasion. RemoteSens<strong>in</strong>g of Environment, 102(3-4): 328-343.Chappell, A., Strong, C.L., McTa<strong>in</strong>sh, G.H., Leys, J.F., 2007. Detect<strong>in</strong>g <strong>in</strong>duced <strong>in</strong> situerodibility of a dust-produc<strong>in</strong>g playa <strong>in</strong> <strong>Australia</strong> us<strong>in</strong>g a bi-directional soil spectralreflectance model. Remote Sens<strong>in</strong>g of Environment, 106(4): 508-524.Chen, W., Zhibao, D., Zhenshan, L., Zuotao, Y., 1996. <strong>W<strong>in</strong>d</strong> tunnel test of the <strong>in</strong>fluence ofmoisture on the erodibility of loessial sandy loam soils by w<strong>in</strong>d. Journal of AridEnvironments, 34(4): 391-402.Chepil, W.S., 1942. Measurement of w<strong>in</strong>d erosiveness of soils by dry siev<strong>in</strong>g procedure.Scientific Agriculture, 23(3): 154-160.Chepil, W.S., 1944. Utilization of crop residue for w<strong>in</strong>d erosion control. Science <strong>in</strong>Agriculture, 24: 307-319.Chepil, W.S., 1950a. Properties of soil which <strong>in</strong>fluence w<strong>in</strong>d erosion. 2. Dry aggregatestructure as an <strong>in</strong>dex of erodibility. Soil Science, 69(5): 403-414.Chepil, W.S., 1950b. Properties of soil that <strong>in</strong>fluence w<strong>in</strong>d erosion: 1. The govern<strong>in</strong>gpr<strong>in</strong>ciple of surface roughness. Soil Science, 69(2): 149-162.Chepil, W.S., 1953. Factors that <strong>in</strong>fluence clod structure and erodibility of soil by w<strong>in</strong>d. 1.Soil Texture. Soil Science, 75: 473-483.Chepil, W.S., Woodruff, N.P., 1954. Estimations of <strong>W<strong>in</strong>d</strong> Erodibility of Field Surfaces. SoilScience Society of America Journal, 9: 257-265.Chepil, W.S., 1954. Seasonal fluctuations <strong>in</strong> soil structure and erodibility of soil by w<strong>in</strong>d.Soil Science Society of America Proceed<strong>in</strong>gs, 18: 13-16.Chepil, W.S., 1956. Influence of Moisture on Erodibility of Soil by <strong>W<strong>in</strong>d</strong>. Soil ScienceSociety Proceed<strong>in</strong>gs, 20: 288 - 291.Chepil, W.S., 1957. Width of field strips to control w<strong>in</strong>d erosion. Kansas AgriculturalExperiment Station, Technical Bullet<strong>in</strong> 092: 16.Chepil, W.S., 1959. <strong>W<strong>in</strong>d</strong> erodibility of farm fields. Journal of Soil and Water Conservation,14: 214-219.Chepil, W.S., Woodruff, N., 1963. The physics of w<strong>in</strong>d erosion and its controls. Advances <strong>in</strong>Agronomy, 15: 211-302.207

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