Characteristics of runoff and sediment generation of forest vegetation on a hill slope by use of artificial rainfall apparatus

Xiang Li , Jian-zhi Niu , Jiao Li , Bao-yuan Xie , Yi-ni Han , Jing-ping Tan , Ying-hu Zhang

Journal of Forestry Research ›› 2012, Vol. 23 ›› Issue (3) : 419 -424.

PDF
Journal of Forestry Research ›› 2012, Vol. 23 ›› Issue (3) : 419 -424. DOI: 10.1007/s11676-012-0279-8
Original Paper

Characteristics of runoff and sediment generation of forest vegetation on a hill slope by use of artificial rainfall apparatus

Author information +
History +
PDF

Abstract

We studied the impact of forest vegetation on soil erosion, surface runoff, and sediment generation by using field simulated rainfall apparatus. We measured runoff and sediment generation of five 4.5 × 2.1 m runoff plots (a bare soil as a control; two Pinus tabulaeformis forest plots and two Platycladus orientalis forest with row spacing of 1 m × 1 m and 1.5 m × 1.5 m, respectively) in Beijing Jiu Feng National Forest Park under three rainfall intensities (0.42, 0.83, 1.26 mm per minute). Forest vegetation significantly reduced soil erosion and sediment yield. Mean total runoff volume in the four tree stand plots was 93% of that in the control plot, demonstrating the limited effectiveness of forest vegetation in runoff control. With increasing rainfall intensity, runoff reduction in forest plots declined from 28.32% to 2.1%. Similar trends in runoff coefficient and the relationship between runoff volume and rainfall duration was observed. Mean total sediment yield and mean sediment yield reduction rate under different treatments was 55.05% and 43.17% of those in the bare soil control plot, respectively. Rainfall intensity played an important role in runoff and sediment generation processes, and had a greater impact on runoff than on soil erosion and sediment generation. When considering several factors in runoff and sediment transport processes, the P. tabulaeform plot with row spacing at 1 × 1 m had a greater effect on soil and water conservation than did other forested plots.

Cite this article

Download citation ▾
Xiang Li, Jian-zhi Niu, Jiao Li, Bao-yuan Xie, Yi-ni Han, Jing-ping Tan, Ying-hu Zhang. Characteristics of runoff and sediment generation of forest vegetation on a hill slope by use of artificial rainfall apparatus. Journal of Forestry Research, 2012, 23(3): 419-424 DOI:10.1007/s11676-012-0279-8

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Bergkamp G.. A hierarchical view of the interactions of runoff and infiltration with vegetation and micro topography in semiarid shrub lands. Catena, 1998, 33(3): 201-220.

[2]

Bochet E., Poesen J., Rubio J.L.. Mound development as an interaction of individual plants with soil, water erosion and sedimentation processes on slopes. Earth Surface Processes and Landforms, 2000, 25(8): 847-867.

[3]

Boer M., Puigdefábregas J.. Effects of spatially structured vegetation patterns on hillslope erosion in a semiarid Mediterranean environment: a simulation study. Earth Surface Processes and Landforms, 2005, 30: 149-167.

[4]

Branson F.A., Owen J.B.. Plant cover, runoff, and sediment yield relationships on Mancos shale in Western Colorado. Water Resources Research, 1970, 6: 184-790.

[5]

Calvo A., Boix C., Imeson A.C.. Runoff generation, sediment movement and soil water behaviour on calcareous (limestone) slopes of some Mediterranean environments in southeast Spain. Geomorphology, 2003, 50: 269-291.

[6]

Casermeiro M.A., Molina J.A., Caravaca M.T.D.L., Costa J.H., Massanet M.I.H., Moreno P.S.. Influence of scrubs on runoff and sediment loss in soils of Mediterranean climate. Catena, 2004, 57: 91-107.

[7]

Cerdà A.. Parent material and vegetation affect soil erosion in eastern Spain. Soil Science Society of America Journal, 1999, 63: 362-368.

[8]

Lang R.D.. The effect of ground cover on surface runoff from experimental plots. Journal of Soil Conservation Service of New South Wales, 1979, 35: 108-114.

[9]

Lang R.D.. The effect of ground cover on runoff and erosion from plots at Scone. 1990, Sydney, Australia: Macquarie University

[10]

Li X.Y., Wang Y.J.. Research on slop runoff process in two vegetation types in Jinyun Mountain in Chongqing City. Journal of Beijing Forestry University, 2003, 25(5): 81-84.

[11]

Li Z.G., Cao Y., Liu B.Z., Luo Z.D.. Current status and developing trend of soil erosion in China. Science of Soil and Water Conservation, 2008, 6(1): 57-62.

[12]

Ludwig J.A., Tongway D.J.. Spatial-organization of landscapes and its function in semiarid woodlands, Australia. Landscape Ecology, 1995, 10: 51-63.

[13]

Maestre F., Cortina J.. Insights into ecosystem composition and function in a sequence of degraded semiarid steppes. Restoration Ecology, 2004, 12: 493-501.

[14]

Marston R.B.. General cover requirements for summer storm runoff control on Aspen sites in Northern Utah. Journal of Forestry, 1952, 50: 303-307.

[15]

Sanchez L.A., Ataroff M., Lopez R.. Soil erosion under different vegetation covers in the Venezuelan Andes. Environmentalist, 2002, 22(1): 161-172.

[16]

Victor H., Carmen Pleguezuelo.. Soil-erosion and runoff prevention by plant covers. A review. Agronomy journal, 2008, 28: 65-86.

[17]

Wang G.Q., Li T.J., Xue H., He L.. Mechanism analysis of watershed sediment processes. Journal of Basic Science And Engineering, 2006, 14(4): 455-462.

[18]

Xie Y., Lin X.J., Liu Y.N., Zheng Y.Z., Liu B.Y., Zhang G.H.. Calibration of simulated rainfall intensity and its spatial distribution for trough rainfall simulator. Bulletin of Soil and Water Conservation, 2008, 28(4): 1-6.

[19]

You Z., Li Z.B.. Mechanism and experiment of vegetation on slope to reduce runoff and sediment. Journal of Sediment Research, 2011, 3: 59-62.

[20]

Yu G.Q., Li Z.B., Zhang X., Li P., Chen L., J L.L.. Effects of vegetation types on hillslope runoff-erosion and sediment yield. Advances in Water Science, 2010, 23(4): 593-599.

[21]

Zhang G.H., Liang Y.M.. Study on process of runoff and sediment yield in artificial grassland on simulated rainfall condition. Journal of Soil and Water Conservation, 1996, 2(3): 56-59.

[22]

Zhang G.H., Liu B.Y., Li P.K.. Principles and properties of Artificial Trough Rainfall Simulator. Bulletin of Soil and Water Conservation, 2007, 27(6): 56-61.

[23]

Zhang H.J.. Soil erosion theory. 1999, Beijing: China Forestry Publishing House, 13 16

AI Summary AI Mindmap
PDF

150

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/