HR: 0800h
AN: B41B-0460 [Abstracts]
TI: Landuse Dynamics in a Small Watershed of the Semi-arid Zimbabwe
AU: * Kileshye-Onema, J
EM: kileshyej@ebe.pg.wits.ac.za
AF: School of Civil and Environmental Engineering, University of Witwatersrand, Private Bag 3,
WITS, 2050, South Africa
AU: Rooyen, A v
EM: a.vanrooyen@cgiar.org
AF: ICRISAT-Bulawayo, Matopos Research Station
PO Box 776, Bulawayo, n.a., Zimbabwe
AB:
Zimbabwe has experienced a controversial land reform program with physical, political and socio-economical
consequences for the country and the entire southern African region. Here, land use decision making is related to
water.
A study has been undertaken in Insiza River watershed (3401 km 2), located within the semi-arid southern part of
Zimbabwe. The Insiza River is a tributary of Mzingwane River, which drains into the transboundary Limpopo River,
contributing around 9 % of the unit runoff of the latter river. The Insiza watershed is divided into two main
hydrological zones, the Upper Insiza and the Lower Insiza. Mean Annual Runoff of the two hydrological zones is
50 mm and 38 mm respectively. Through a supervised classification of satellite images, the landuse dynamics
was assessed from Landsat images acquired in April 1991 and April 2000.
Five signature files, bare ground, water bodies, mixed impacted land, good natural vegetation and croplands
were used to define the Insiza watershed land use set up while processing Landsat images with IDRISI.
For the decade considered, the major changes occurred within mixed impacted lands that were converted into
croplands. This conversion was observed on 14% of the total area of the Insiza watershed.
Moreover there was a decrease in water bodies (from 1.3% to 0.89%), bare ground (from 1.2% to 0.9%) and in
natural good vegetation (from 50.99% to 50.48%) land types. These changes were observed in the Upper Insiza,
where the commercial farms were located. However, the decrease in natural good vegetation and the conversion
of mixed impacted lands into fields took place mainly in the communal lands.
DE: 1622 Earth system modeling (1225)
DE: 1632 Land cover change
DE: 1640 Remote sensing (1855)
DE: 1804 Catchment
SC: Biogeosciences [B]
MN: 2007 Fall Meeting