Arid
DOI10.1002/(SICI)1096-9837(199605)21:5<399::AID-ESP567>3.0.CO;2-M
Surface roughness evolution of soils containing rock fragments
vanWesemael, B; Poesen, J; deFigueiredo, T; Govers, G
通讯作者vanWesemael, B
来源期刊EARTH SURFACE PROCESSES AND LANDFORMS
ISSN0197-9337
出版年1996
卷号21期号:5页码:399-411
英文摘要

Soil surface roughness is a dynamic property which determines, to a large extent, erosion and infiltration rates. Although soils containing rock fragments are widespread in the Mediterranean region, the effect of the latter on surface roughness evolution is yet poorly understood. Therefore, laboratory experiments were conducted in order to investigate the effect of rock fragment content, rock fragment size and initial moisture content of the fine earth on the evolution of interrill surface roughness during simulated rainfall. Surface elevations of simulated plough layers along transects of 50 cm length were measured before and after simulated rainfall (totalling 192.5 mm, I = 70 mm h(-1)) with a laser microreliefmeter. The results were used to investigate whether systematic variations in interrill surface roughness along stony hillslopes in southeastern Spain could be attributed to rock fragment cover and rock fragment size. Soil surface elevations were measured along the contour lines (50 cm long transects) with a contact microreliefmeter. Roughness was expressed by two parameters related to the height and frequency of roughness elements, respectively: standard deviation of de-trended surface elevations (random roughness: RR), and correlation length (L) derived from exponential fits of the autocorrelation functions.


The frequently used assumption that surface roughness (RR) of cultivated topsoils decreases exponentially with cumulative rain is not valid for soil surfaces covered by rock fragments. The RR of soils containing small rock fragments (1.7-2.7 cm) increased with cumulative rainfall after an initial decrease during the first 17.5 mm of rainfall. For soils containing large rock fragments (7.7 cm), RR increased with rainfall above a threshold rock fragment content by mass of 52 per cent. For a given rainfall application, RR increased non-linearly with rock fragment content. The correlation length for soils containing small rock fragments decreases with rock fragment content and is significantly lower than for soils with large rock fragments. Soils covered with small rock fragments (large RR and small L) are thus well protected against raindrop impact by a water film in the depressions between the rock fragments.


On abandoned agricultural fields along hillslopes in southeastern Spain, rock fragments cover increases non-linearly with slope owing to selective erosion of finer particles on steep slopes. The increase of surface cover by large rock fragments (>25 mm) is even more pronounced. The simultaneous increase of rock fragment cover and rock fragment size with slope explains the non-linear increase of RR with slope. These relationships differ for soils covered by platy misaschists and those covered with cubic andesites. The variations in correlation length along the hillslopes are not clear, probably owing to a simultaneous increase in rock fragment cover and rock fragment size. These findings may provide a better prediction of soil surface roughness of interrill areas covered by rock fragments using slope angle and lithology.


英文关键词soil surface roughness rock fragment properties simulated rainfall semi-arid hillslopes
类型Article
语种英语
国家PORTUGAL
收录类别SCI-E
WOS记录号WOS:A1996UN98000002
WOS关键词DEPRESSIONAL STORAGE ; WATER-CONTENT ; RAINFALL ; MICRORELIEFMETER ; TILLAGE
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/132577
作者单位(1)ESCOLA SUPER AGR BRAGANCA,P-5300 BRAGANCA,PORTUGAL
推荐引用方式
GB/T 7714
vanWesemael, B,Poesen, J,deFigueiredo, T,et al. Surface roughness evolution of soils containing rock fragments[J],1996,21(5):399-411.
APA vanWesemael, B,Poesen, J,deFigueiredo, T,&Govers, G.(1996).Surface roughness evolution of soils containing rock fragments.EARTH SURFACE PROCESSES AND LANDFORMS,21(5),399-411.
MLA vanWesemael, B,et al."Surface roughness evolution of soils containing rock fragments".EARTH SURFACE PROCESSES AND LANDFORMS 21.5(1996):399-411.
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