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Runoff as a factor influencing experimentally determined interrill erodibilities

PIA Kinnell
31(3) pp.333 - 342


45 articles found in Crossref database.

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Janeau J.L., Bricquet J.P., Planchon O., Valentin C.
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Quantifying sheet erosion rate on steep grassland in the loess region of China
Guo Qi, Wang Zhanli, Zhang Qilin, Zhang Qingwei, Shen Nan, Wu Bing, Tian Naling, Liu Jun’e
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Comment on “Predicting interrill erodibility factor from measured infiltration rate” by M. Ben‐Hur and M. Agassi
Kinnell P. I. A.
Water Resources Research. 2000 36(9). p.2793
Modelling sheet erosion on steep slopes of clay loess soil using a rainfall simulator
Wu Bing, Li Ludi, Xu Ling, Li Xinlu
Biosystems Engineering. 2022 216 p.1
Introduction to Environmental Soil Physics (2003)
Impact of near‐surface hydraulic gradient on the interrill erosion process
Wang Chenfeng, Wang Bin, Wang Yunqi, Wang Yujie, Zhang Wenlong, Yan Yuke
European Journal of Soil Science. 2020 71(4). p.598
Environmental Soil Physics (1998)
Detachment of soil particles by shallow flow: Sampling methodology and observations
Ciampalini Rossano, Torri Dino
CATENA. 1998 32(1). p.37
A review of the mechanical effects of plant roots on concentrated flow erosion rates
Vannoppen W., Vanmaercke M., De Baets S., Poesen J.
Earth-Science Reviews. 2015 150 p.666
Fractal dimension of soil aggregates as an index of soil erodibility
Ahmadi Abbas, Neyshabouri Mohammad-Reza, Rouhipour Hassan, Asadi Hossein
Journal of Hydrology. 2011 400(3-4). p.305
Discussion on “GIS Based Distributed Model for Soil Erosion and Rate of Sediment Outflow from Catchments” by Manoj K. Jain, Umesh C. Kothyari, and Kittur G. Ranga Raju
Kinnell P. I.
Journal of Hydraulic Engineering. 2007 133(7). p.843
Effect of Root Density on Erosion and Erodibility of a Loamy Soil Under Simulated Rain
Katuwal Sheela, Vermang Jan, Cornelis Wim M., Gabriels Donald, Moldrup Per, de Jonge Lis Wollesen
Soil Science. 2013 178(1). p.29
The effect of slope angle on splash detachment in an unmanaged Japanese cypress plantation forest
Mizugaki Shigeru, Nanko Kazuki, Onda Yuichi
Hydrological Processes. 2010 24(5). p.576
Effects of near soil surface components on soil erosion on steep granite red soil colluvial deposits
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Rare earth elements tracing interrill erosion processes as affected by near-surface hydraulic gradients
Wang Chenfeng, Wang Bin, Wang Yujie, Wang Yunqi, Zhang Wenlong, Zhang Xunchang J.
Soil and Tillage Research. 2020 202 p.104673
High‐Resolution Measurement of Topographic Changes in Agricultural Soils
Oz I., Arav R., Filin S., Assouline S., Furman A.
Vadose Zone Journal. 2017 16(12). p.1
Flow hydraulic characteristics and dynamic erodibility of saline-sodic soil slopes for coastal areas under simulated rainfall conditions
Liu Dongdong, She Dongli
Archives of Agronomy and Soil Science. 2022 68(5). p.646
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Zehetner Franz, Miller William P.
CATENA. 2006 65(3). p.201
Interrill soil erosion processes on steep slopes
Zhang X.C. (John), Wang Z.L.
Journal of Hydrology. 2017 548 p.652
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Soil and Tillage Research. 2020 203 p.104687
Methodologies for interrill soil erosion studies
Agassi M, Bradford J.M
Soil and Tillage Research. 1999 49(4). p.277
Effects of rainfall intensity and slope gradient on the dynamics of interrill erosion during soil surface sealing
Assouline S., Ben-Hur M.
CATENA. 2006 66(3). p.211
Hydraulic mechanisms of the uneven enrichment of soil organic carbon in sediments during rain-induced overland flow
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PLOS ONE. 2022 17(2). p.e0262865
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Vereecken H., Schnepf A., Hopmans J.W., Javaux M., Or D., Roose T., Vanderborght J., Young M.H., Amelung W., Aitkenhead M., Allison S.D., Assouline S., Baveye P., Berli M., Brüggemann N., Finke P., Flury M., Gaiser T., Govers G., Ghezzehei T., Hallett P., Hendricks Franssen H.J., Heppell J., Horn R., Huisman J.A., Jacques D., Jonard F., Kollet S., Lafolie F., Lamorski K., Leitner D., McBratney A., Minasny B., Montzka C., Nowak W., Pachepsky Y., Padarian J., Romano N., Roth K., Rothfuss Y., Rowe E.C., Schwen A., Šimůnek J., Tiktak A., Van Dam J., van der Zee S.E.A.T.M., Vogel H.J., Vrugt J.A., Wöhling T., Young I.M.
Vadose Zone Journal. 2016 15(5). p.1
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Handbook of Erosion Modelling (2010)
Guerra A. J. T., Soares da Silva A.
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Land Degradation & Development. 2015 26(8). p.825
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Detachment of Undisturbed Soil by Shallow Flow
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Soil Science Society of America Journal. 2003 67(3). p.713
Predicting interrill erodibility factor from measured infiltration rate
Ben‐Hur M., Agassi M.
Water Resources Research. 1997 33(10). p.2409
A New Splash and Sheet Erosion Equation for Rangelands
Wei H., Nearing M.A., Stone J.J., Guertin D.P., Spaeth K.E., Pierson F.B., Nichols M.H., Moffet C.A.
Soil Science Society of America Journal. 2009 73(4). p.1386
Erosion processes and erodibility of cultivated soils in North Rhine‐Westphalia under artificial rain. I. Site characteristics and results of laboratory experiments
Kehl Martin, Everding Christoph, Botschek Johannes, Skowronek Armin
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Bagarello V., Ferro V.
Hydrological Processes. 2004 18(1). p.141

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