首页> 外文期刊>Central European Forestry Journal >Effect of deforestation on watershed water balance: hydrological modelling-based approach / Vplyv odlesnenia na vodnú bilanciu povodia: prístup na báze hydrologického modelovania
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Effect of deforestation on watershed water balance: hydrological modelling-based approach / Vplyv odlesnenia na vodnú bilanciu povodia: prístup na báze hydrologického modelovania

机译:毁林对流域水平衡的影响:基于水文模型的方法/毁林对流域水平衡的影响:水文模型方法

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Changes in land cover, including deforestation, can have significant effect on watershed hydrology. We used hydrological model with distributed parameters to evaluate the effect of simulated deforestation on water balance components in the watershed Uli?ka (97 km2, 84.3% forest cover) located in the eastern Slovakia. Under the current land cover, average interception accounted for 21.1% of the total precipitation during the calibration period 2001-2013. Most of the precipitation (77%) infiltrated into the soil profile, and less than half of this amount percolated into the ground water aquifer. The surface runoff accounted for 1.2% of the total precipitation only, while the interflow accounted for ca. 12%. The largest proportion of the precipitation contributed to the base flow (23%). Watershed`s deforestation induced significant decrease in the interception and evapotranspiration (by 76% and 12%, respectively). At the same time, total runoff, surface runoff, interflow and base flow increased by 20.4, 38.8, 9.0 and 25.5%, respectively. Daily discharge increased by 20%. The deforestation significantly increased peak discharge induced by a simulated extreme precipitation event with the recurrence interval of 100 years. In the deforested watershed, the peak discharge was higher by 58% as compared with the current land cover. Peak discharge occurred in 432 minutes with the current land cover and in 378 minutes with deforestation, after the precipitation event had started. The presented assessment emphasized the risk of adverse effect of excessive deforestation on watershed hydrology. At the same time, the developed model allows testing the effect of other land cover scenarios, and thus supports management in the investigated watershed.
机译:土地覆盖的变化(包括森林砍伐)可能对流域水文学产生重大影响。我们使用具有分布式参数的水文模型来评估模拟砍伐森林对斯洛伐克东部流域Uli?ka(97 km2,森林覆盖率84.3%)中水平衡成分的影响。在目前的土地覆盖下,在2001-2013年的校准期内,平均拦截量占总降水量的21.1%。大部分降水(77%)渗入土壤剖面,而其中不到一半渗入地下水含水层。地表径流仅占总降水量的1.2%,而径流约占降水总量的1.2%。 12%。降水的最大比例促成了基本流量(23%)。流域的森林砍伐导致截留量和蒸散量显着减少(分别减少了76%和12%)。同时,总径流量,地表径流量,内部流量和基础流量分别增加了20.4%,38.8%,9.0%和25.5%。每日排放量增加了20%。一次间隔为100年的模拟极端降水事件导致的森林砍伐显着增加了峰值排放量。在砍伐森林的流域,与当前的土地覆盖相比,高峰排放量增加了58%。降雨事件开始后,目前的土地覆盖量在432分钟内达到高峰排放,而在毁林下则在378分钟内达到峰值排放。提出的评估强调了过度砍伐森林对流域水文学的不利影响。同时,开发的模型可以测试其他土地覆盖方案的效果,从而支持所调查流域的管理。

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