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Delineation of groundwater potential zones using remote sensing and GIS-based data-driven models

机译:使用遥感和基于GIS的数据驱动模型来描绘地下水潜在区域

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The rapid increase in human population has increased the groundwater resources demand for drinking, agricultural and industrial purposes. The main purpose of this study is to produce groundwater potential map (GPM) using weights-of-evidence (WOE) and evidential belief function (EBF) models based on geographic information system in the Azna Plain, Lorestan Province, Iran. A total number of 370 groundwater wells with discharge more than 10m(3)s(-1)were considered and out of them, 256 (70%) were randomly selected for training purpose, while the remaining114 (30%) were used for validating the model. In next step, the effective factors on the groundwater potential such as altitude, slope aspect, slope angle, curvature, distance from rivers, drainage density, topographic wetness index, fault distance, fault density, lithology and land use were derived from the spatial geodatabases. Subsequently, the GPM was produced using WOE and EBF models. Finally, the validation of the GPMs was carried out using areas under the ROC curve (AUC). Results showed that the GPM prepared using WOE model has the success rate of 73.62%. Similarly, the AUC plot showed 76.21% prediction accuracy for the EBF model which means both the models performed fairly good predication accuracy. The GPMs are useful sources for planners and engineers in water resource management, land use planning and hazard mitigation purpose.
机译:人口的迅速增加增加了地下水资源对饮酒,农业和工业目的的需求。本研究的主要目的是使用基于Azna Plange,伊朗罗门兰省的Azna Plange的地理信息系统,使用权重(WOE)和证据信念功能(EBF)模型产生地下水潜在地图(GPM)。通过排出超过10M(3)次(-1)的370个地下水孔的总数被考虑,其中256(70%)被随机选择培训目的,而剩余的114(30%)用于验证该模型。在下一步中,从空间地理数据库中得出了从空间地理数据库中得出的地下水位,斜坡,斜坡角,曲率,距离,引流密度,地形湿度指数,故障距离,故障密度,岩性和土地使用的有效因素。 。随后,使用WOE和EBF模型生产GPM。最后,使用ROC曲线(AUC)下的区域进行GPMS的验证。结果表明,使用WOE模型制备的GPM的成功率为73.62%。类似地,AUC图显示了EBF模型的76.21%的预测精度,这意味着模型的良好的预测精度都具有相当良好的预测精度。 GPMS是水资源管理中规划者和工程师的有用来源,土地利用规划和缓解目的。

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