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首页> 外文期刊>Erdkunde >RAINFOREST CONVERSION IN CENTRAL SuLAWESI, INDONESIA: RECENT DEVELOPMENT AND CONSEQUENCES FOR RIVER DISCHARGE AND WATER RESOURCES: An integrated remote sensing and hydrological modelling approach
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RAINFOREST CONVERSION IN CENTRAL SuLAWESI, INDONESIA: RECENT DEVELOPMENT AND CONSEQUENCES FOR RIVER DISCHARGE AND WATER RESOURCES: An integrated remote sensing and hydrological modelling approach

机译:印度尼西亚中苏拉威西中部的RAINFOREST转换:河流水和水资源的最新发展及其后果:集成的遥感和水文建模方法

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摘要

The present land cover of humid tropical catchment areas mainly regulates the flow of vapour to the atmosphere. Therefore land use decisions play an important role for the water balance of a tropical catchment. Studies that relate land cover changes with river discharge changes for humid tropical catchment areas at the mesoscale level are rare. This article applies an integrated remote sensing and hydrological modelling approach to analyse the impact of land cover changes on the water resources of amesoscale humid tropical catchment. First, a change detection analysis of Landsat/ETM+ satellite images was carried out to quantify land cover changes of the mesoscale Gumbasa River catchment in Central Sulawesi, Indonesia. Thereafter the distributed hydrological model WASIM-ETH was calibrated and validated for the current Landsat/ETM+ scene. The historical Landsat/ETM+ scene was integrated for the hydrological model application as a historical land cover scenario. Further hypothetical total-change scenarios were carried out. The results of the hydrological model scenario application clearly demonstrate a strong relationship between deforestation rates and increasing discharge variability. Especially a significant increase of high water discharges wassimulated for the applied scenarios. With regard to the high deforestation rates of the research catchment, one can expect further changes of the water balance.
机译:当前潮湿热带集水区的土地覆盖主要调节蒸气向大气的流动。因此,土地使用决策对于热带流域的水平衡起着重要作用。在中尺度水平上,关于湿润热带集水区的土地覆盖变化与河流流量变化相关的研究很少。本文采用了一种综合的遥感和水文模拟方法,以分析土地覆盖变化对非等温湿润热带集水区水资源的影响。首先,对Landsat / ETM +卫星图像进行了变化检测分析,以量化印度尼西亚苏拉威西省中尺度Gumbasa河流域的土地覆盖变化。之后,针对当前Landsat / ETM +场景对分布式水文模型WASIM-ETH进行了校准和验证。将历史Landsat / ETM +场景整合为水文模型应用程序,作为历史土地覆盖场景。进一步进行了假设的总变更方案。水文模型情景应用的结果清楚地表明了森林砍伐率与排放变化之间的密切关系。对于所应用的场景,尤其是模拟了高排水量的显着增加。关于研究流域的高森林砍伐率,人们可以期待水平衡的进一步变化。

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