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and stream flow. Earth Surface Processes and Landforms, 22(8): 705–719.
Smith T B, Owens P N. 2014. Flume- and field-based evaluation of a time-integrated suspended
sediment sampler for the analysis of sediment properties. Earth Surface Processes and Landforms,
39(9): 1197–1207.
Stone P M, Walling D E. 1997. Particle size selectivity considerations in suspended sediment budget
investigations. Water, Air and Soil Pollution, 99(1–4): 63–70.
Sutherland D G, Ball M H, Hilton S J, et al. 2002. Evolution of a landslide-induced sediment wave
in the Navarro River, California. Geological Society of America Bulletin, 114(8): 1036–1048.
Turcotte D L. 1986. Fractals and fragmentation. Journal of Geophysical Research Solid Earth,
91(B2): 1921–1926.
Tyler S W, Wheatcraft S W. 1992. Fractal scaling of soil particle-size distributions: analysis and
limitations. Soil Science Society of America Journal, 56(2): 362–369.
Walling D E, Moorehead P W. 1989. The particle size characteristics of fluvial suspended sediment:
an overview. Hydrobiologia, 176(1): 125–149.
Walling D E, Woodward J C. 1995. Tracing sources of suspended sediment in river basins: a case
study of the River Culm, Devon, UK. Marine and Freshwater Research, 46(1): 327–336.
Walling D E, Owens P N, Waterfall B D, et al. 2000. The particle size characteristics of fluvial
suspended sediment in the Humber and Tweed catchments, UK. Science of the Total Environment,
251–252: 205–222.
Wang D, Fu B J, Zhao W W, et al. 2008. Multifractal characteristics of soil particle size distribution
under different land-use types on the Loess Plateau, China. Catena, 72(1): 29–36.
Wang Y C, Liu K, Lau D L, et al. 2010. Maximum SNR pattern strategy for phase shifting methods
in structured light illumination. Journal of the Optical Society of America A, 27(9): 1962–1971.
Wendling V, Legout C, Gratiot N, et al. 2016. Dynamics of soil aggregate size in turbulent flow:
respective effect of soil type and suspended concentration. Catena, 141: 66–72.
Woodward J C, Walling D E. 2007. Composite suspended sediment particles in river systems: their
incidence, dynamics and physical characteristics. Hydrological Processes, 21(26): 3601–3614.
Xu J X. 1999. Erosion caused by hyperconcentrated flow on the Loess Plateau of China. Catena,
36(1–2): 1–19.
Xu J X. 2000. Grain-size characteristics of suspended sediment in the Yellow River, China. Catena,
38(3): 243–263.
Xu J X. 2002. Implication of relationships among suspended sediment size, water discharge and
suspended sediment concentration: the Yellow River basin, China. Catena, 49(4): 289–307.
Xu X Z, Liu Z Y, Wang W L, et al. 2015a. Which is more hazardous: avalanche, landslide, or
mudslid? Natural Hazards, 76(3): 1939–1945.
Xu X Z, Liu Z Y, Xiao P Q, et al. 2015b. Gravity erosion on the steep loess slope: Behavior, trigger
and sensitivity. Catena, 135: 231–239.
Xu X Z, Guo W Z, Liu Y K, et al. 2017. Landslides on the Loess Plateau of China: a latest statistics
together with a close look. Natural Hazards, 86(3): 1393–1403.
Zhang J Y, Gu P P, Li L Y, et al. 2016. Changes of soil particle size fraction along a chronosequence in
sandy desertified land: a fundamental process for ecosystem succession and ecological restoration.
Journal of Soils and Sediments, 16(12): 2651–2656.
207
Slattery M C, Burt T P. 1997. Particle size characteristics of suspended sediment in hillslope runoff
and stream flow. Earth Surface Processes and Landforms, 22(8): 705–719.
Smith T B, Owens P N. 2014. Flume- and field-based evaluation of a time-integrated suspended
sediment sampler for the analysis of sediment properties. Earth Surface Processes and Landforms,
39(9): 1197–1207.
Stone P M, Walling D E. 1997. Particle size selectivity considerations in suspended sediment budget
investigations. Water, Air and Soil Pollution, 99(1–4): 63–70.
Sutherland D G, Ball M H, Hilton S J, et al. 2002. Evolution of a landslide-induced sediment wave
in the Navarro River, California. Geological Society of America Bulletin, 114(8): 1036–1048.
Turcotte D L. 1986. Fractals and fragmentation. Journal of Geophysical Research Solid Earth,
91(B2): 1921–1926.
Tyler S W, Wheatcraft S W. 1992. Fractal scaling of soil particle-size distributions: analysis and
limitations. Soil Science Society of America Journal, 56(2): 362–369.
Walling D E, Moorehead P W. 1989. The particle size characteristics of fluvial suspended sediment:
an overview. Hydrobiologia, 176(1): 125–149.
Walling D E, Woodward J C. 1995. Tracing sources of suspended sediment in river basins: a case
study of the River Culm, Devon, UK. Marine and Freshwater Research, 46(1): 327–336.
Walling D E, Owens P N, Waterfall B D, et al. 2000. The particle size characteristics of fluvial
suspended sediment in the Humber and Tweed catchments, UK. Science of the Total Environment,
251–252: 205–222.
Wang D, Fu B J, Zhao W W, et al. 2008. Multifractal characteristics of soil particle size distribution
under different land-use types on the Loess Plateau, China. Catena, 72(1): 29–36.
Wang Y C, Liu K, Lau D L, et al. 2010. Maximum SNR pattern strategy for phase shifting methods
in structured light illumination. Journal of the Optical Society of America A, 27(9): 1962–1971.
Wendling V, Legout C, Gratiot N, et al. 2016. Dynamics of soil aggregate size in turbulent flow:
respective effect of soil type and suspended concentration. Catena, 141: 66–72.
Woodward J C, Walling D E. 2007. Composite suspended sediment particles in river systems: their
incidence, dynamics and physical characteristics. Hydrological Processes, 21(26): 3601–3614.
Xu J X. 1999. Erosion caused by hyperconcentrated flow on the Loess Plateau of China. Catena,
36(1–2): 1–19.
Xu J X. 2000. Grain-size characteristics of suspended sediment in the Yellow River, China. Catena,
38(3): 243–263.
Xu J X. 2002. Implication of relationships among suspended sediment size, water discharge and
suspended sediment concentration: the Yellow River basin, China. Catena, 49(4): 289–307.
Xu X Z, Liu Z Y, Wang W L, et al. 2015a. Which is more hazardous: avalanche, landslide, or
mudslid? Natural Hazards, 76(3): 1939–1945.
Xu X Z, Liu Z Y, Xiao P Q, et al. 2015b. Gravity erosion on the steep loess slope: Behavior, trigger
and sensitivity. Catena, 135: 231–239.
Xu X Z, Guo W Z, Liu Y K, et al. 2017. Landslides on the Loess Plateau of China: a latest statistics
together with a close look. Natural Hazards, 86(3): 1393–1403.
Zhang J Y, Gu P P, Li L Y, et al. 2016. Changes of soil particle size fraction along a chronosequence in
sandy desertified land: a fundamental process for ecosystem succession and ecological restoration.
Journal of Soils and Sediments, 16(12): 2651–2656.
