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Geospatial and regression tree analysis to map groundwater depth for manual well drilling suitability in the Zinder region of Niger

机译:尼日尔Zinder地区的地理空间和回归树分析可绘制地下水深度,以进行手动井钻探

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Manual and low-tech well drilling techniques have potential to assist in reaching the United Nations' millennium development goal for water in sub-Saharan Africa. This study used publicly available geospatial data in a regression tree analysis to predict groundwater depth in the Zinder region of Niger to identify suitable areas for manual well drilling. Regression trees were developed and tested on a database for 3681 wells in the Zinder region. A tree with 17 terminal leaves provided a range of ground water depth estimates that were appropriate for manual drilling, though much of the tree's complexity was associated with depths that were beyond manual methods. A natural log transformation of groundwater depth was tested to see if rescaling dataset variance would result in finer distinctions for regions of shallow groundwater. The RMSE for a log-transformed tree with only 10 terminal leaves was almost half that of the untransformed 17 leaf tree for groundwater depths less than 10. m. This analysis indicated important groundwater relationships for commonly available maps of geology, soils, elevation, and enhanced vegetation index from the MODIS satellite imaging system.
机译:手工和低技术的钻井技术有潜力协助实现联合国对撒哈拉以南非洲水的千年发展目标。这项研究在回归树分析中使用了公开的地理空间数据来预测尼日尔Zinder地区的地下水深度,从而确定适合进行手动钻井的区域。开发了回归树并在Zinder地区3681口井的数据库上进行了测试。一棵有17个末端叶片的树提供了一系列适合于人工钻探的地下水深度估算值,尽管该树的大部分复杂性与超出人工方法的深度有关。测试了地下水深度的自然对数转换,以查看重新缩放数据集方差是否会导致对浅层地下水区域进行更好的区分。对于地下水深度小于10 m的仅10个末端叶的经对数转换的树,其RMSE几乎是未转换的17叶树的RMSE的一半。该分析表明,从MODIS卫星成像系统获得的地质,土壤,海拔和增强植被指数的常用地图具有重要的地下水关系。

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