Controlling factors of gullying in the Maracuja Catchment, southeastern Brazil

被引:78
作者
Bacellar, LDP
Netto, ALC
Lacerda, WA
机构
[1] Univ Fed Ouro Preto, Dept Geol, Ouro Preto, MG, Brazil
[2] Univ Fed Rio de Janeiro, Dept Geog, Rio De Janeiro, RJ, Brazil
[3] Univ Fed Rio de Janeiro, COPPE, PEC, Rio De Janeiro, Brazil
关键词
gullying; erosion; human impacts; geomorphologic controls; catchment;
D O I
10.1002/esp.1193
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Hundreds of gullies ('vocorocas') of huge dimensions (up to 400-500 m long, 150 m wide and 50 m deep) are very common in the small Maracuja Catchment in southeastern Brazil. These erosional features, which occur with an uneven intensity throughout the area, started due to bad soil management practices at the beginning of European settlement, at the end of the 17th century, and nowadays are still evolving, but at a slower rate. As surface soils are usually very resistant to erosion, the outcrop of the more erodible basement saprolites seems to be an essential condition for their beginning. An analysis of well known erosion controlling factors was performed, aiming to explain the beginning and evolution of these gullies and to understand the reasons for their spatial distribution. Data shows that geology and, mainly, geomorphology are the main controlling factors, since gullies tend to be concentrated in basement rock areas with lower relief (domain 2) of Maracuja Catchment, mainly at the fringes of broad and flat interfluves. At the detailed scale (1:10 000), gullies are more common in amphitheatre-like headwater hollows that frequently represent upper Quaternary gullies (paleogullies), which demonstrate the recurrence of channel erosion. So, gullies occur in areas of thicker saprolites (domain 2), in places with a natural concentration of surface and underground water (hollows). Saprolites of the preserved, non-eroded hollows are usually pressurized (confined aquifer) due to a thick seal of Quaternary clay layer, in a similar configuration to the ones found in hollows of mass movement (mudflow) sites in southeastern Brazil. Therefore, the erosion of the resistant soils by human activities, such as road cuts and trenches ('valos'), or their mobilization by mudflow movements, seem to be likely mechanisms of gullying initiation. Afterwards, gullies evolve by a combination of surface and underground processes, such as wash and tunnel erosion and falls and slumps of gully walls. Copyright (c) 2005 John Wiley & Sons, Ltd.
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页码:1369 / 1385
页数:17
相关论文
共 53 条
[1]  
ALCANTARA MAT, 1997, THESIS EESC SAO PAUL
[2]  
[Anonymous], 1983, AAPG BULL, V67, P841
[3]  
AUGUSTIN CHR, 1994, P 14 INT SED C REC, pG5
[4]  
BACELLAR LAP, 2004, P 9 INT S LANDSL RIO
[5]  
BACELLAR LAP, 2000, THESIS RIO JANEIRO F
[6]   Aggregate stability as an indicator of soil susceptibility to runoff and erosion;: validation at several levels [J].
Barthès, B ;
Roose, E .
CATENA, 2002, 47 (02) :133-149
[7]   EPISODIC LATE QUATERNARY PALAEOGULLY EROSION IN NORTHERN KWAZULU NATAL, SOUTH-AFRICA [J].
BOTHA, GA ;
WINTLE, AG ;
VOGEL, JC .
CATENA, 1994, 23 (3-4) :327-340
[8]   Tributary-trunk stream relations in a cut-and-fill landscape: a case study from Wolumla catchment, New South Wales, Australia [J].
Brierley, GJ ;
Fryirs, K .
GEOMORPHOLOGY, 1999, 28 (1-2) :61-73
[9]  
Bryan R. B., 1976, Catena, V3, P99, DOI 10.1016/S0341-8162(76)80021-5
[10]   Soil erodibility and processes of water erosion on hillslope [J].
Bryan, RB .
GEOMORPHOLOGY, 2000, 32 (3-4) :385-415