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Effects of land-cover change on rainfall-runoff relationships: A case study of the Yarkon-Ayalon watershed, Israel

机译:土地覆盖变化对降雨-径流关系的影响:以以色列亚尔孔-阿亚隆流域为例

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Temporal changes and spatial patterns are often studied by analyzing land-cover changes (LCCs) using spaceborne images. LCC is an important factor, affecting runoff regime within watersheds through processes such as urbanization, agricultural activities, quarries and afforestation. The objective of this research was to estimate the effects of 20 years of LCCs on rainfall-runoff relations in an extreme rainfall event, in a sub-basin scale. A Landsat TM-derived classification map was used as an input for the Kinematic Runoff and Erosion (KINEROS2) hydrological model along with precipitation data of an extreme rainfall event. Model calibration was performed by using total runoff volume data based on hydrometric measurements taken during this rainfall event. Validation of the model performance was conducted by comparing the model results to measured data in order to receive output accuracy estimation. A similar procedure was then used with a 2009 land-cover classification map, derived from a Landsat TM image, as an input to KINEROS2 model, along with the same precipitation data and calibration parameters, in order to understand the possible outcomes of a rainfall event of such magnitude and duration after 20 years of LCCs. The results show a slight increase in runoff volume and peak discharge values between the examined time periods as a result of LCCs. In addition, a strong relationship was spotted between vegetation cover along the six sub-basins and the runoff volume. The LCCs that had the most pronounced effects on runoff volumes were related to urbanization and vegetation removal.
机译:通常通过使用星载图像分析土地覆盖变化(LCC)来研究时间变化和空间格局。 LCC是一个重要因素,它通过诸如城市化,农业活动,采石场和绿化等过程影响流域内的径流状况。这项研究的目的是在次流域尺度上评估20年生命周期成本对极端降雨事件中降雨-径流关系的影响。使用Landsat TM得出的分类图作为运动径流和侵蚀(KINEROS2)水文模型的输入,以及极端降雨事件的降水数据。通过使用总径流量数据进行模型校准,该数据基于这次降雨事件期间进行的水文测量。通过将模型结果与测量数据进行比较来验证模型性能,以便接收输出精度估计。然后使用类似的程序处理2009年的土地覆盖分类图,该图来自Landsat TM图像,作为KINEROS2模型的输入,以及相同的降水量数据和校准参数,以了解降雨事件的可能结果。 LCC达到20年后,其强度和持续时间会有所变化。结果显示,由于LCC,在所检查的时间段之间,径流量和峰值排放量略有增加。此外,在六个子流域的植被覆盖与径流量之间也发现了很强的关系。对径流量影响最显着的低碳国家与城市化和植被清除有关。

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