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Assessment of land cover changes and hydrologic response of Tamne River Basin (Ghana).

机译:评估塔姆河流域(加纳)的土地覆盖变化和水文响应。

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摘要

Northeastern Ghana, West Africa, is characterised by a high population growth rate and adverse climatic conditions, e.g., a long dry season followed by a short-duration but intense rainfall pattern. Land degradation in this part of the country has caused farmers to extend their agricultural activities into marginal lands including flood plains. The consequence is an increase in flood damage to cropland, livestock, infrastructure and human lives. In this study, the nature of vegetation change in the Tamne River Basin was assessed by integrating remote sensing and geographic information systems (GIS). Inter-annual variation in rainfall and streamflow were assessed using statistical hypothesis testing. Gumbel Extreme Value distribution was used to estimate peak flow magnitudes for selected return periods. Field observations and interviews with farmers provided first hand information about the farming systems in the Tamne River Basin. The study also provided a broad framework for detailed watershed analysis at the basin and sub-basin level, including the monitoring of land use change and distributed hydrologic modelling. In addition, the study highlighted some of the problems related to incomplete and outdated environmental information, and their implications on the effective integration of remote sensing and GIS for resource management and policy formulation in Ghana. (Abstract shortened by UMI.)
机译:西非加纳东北部的特点是人口增长率高和不利的气候条件,例如干旱的季节长,干旱持续时间短,但降雨模式强烈。该国该地区的土地退化使农民将农业活动扩展到包括洪泛平原在内的边缘土地。结果是洪水对农田,牲畜,基础设施和人类生命的破坏增加。在这项研究中,通过集成遥感和地理信息系统(GIS)评估了塔姆河流域植被变化的性质。使用统计假设检验评估降雨和流量的年际变化。使用Gumbel极值分布来估计选定返回时段的峰值流量幅度。实地观察和对农民的采访提供了有关塔姆内河流域农业系统的第一手信息。该研究还为流域和次流域一级的详细流域分析提供了广阔的框架,包括监测土地利用变化和分布式水文模型。此外,研究突出了与不完整和过时的环境信息有关的一些问题,以及它们对加纳的遥感和GIS有效整合以进行资源管理和政策制定的影响。 (摘要由UMI缩短。)

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