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Wellbore Skin in Mine Dewatering and Drinking Water Supply: Field Observation, Mineralogy and Hydraulic Effect

机译:矿井皮肤脱水和饮用水供应:野外观察,矿物学和液压效果

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When it comes to well loss and efficiency, the occurrence of wellbore skin layers is one of the strongest influencing factors. Besides difficulties to remove the skin layer that is necessary during the drilling process, it is also not easily possible to determine if a skin layer is present in a well and whether or not it imposes a certain degree of well loss.With this work, three types of skin layers are presented (surface cake, deep-bed filtration, layered cake in the aquifer), that have been observed at dewatering wells excavated in open-pits of the Rhenish lignite mining district in western Germany. Disturbed and undisturbed samples were analyzed for their geochemical and mineralogical composition in order to better understand the formation of the skin layer types and their fate during well operation.Geochemical analysis revealed the skin layer to be mainly composed of quartz (~ 40 wt-%), kaolinite/illite (~ 30 wt-%), organic material (5-15%) and secondary gypsum precipitates (up to 12.5 wt-%). Despite the high quartz contents, the granulometry yields high fractions of clay and silt (75-85 %). However, preferential flow paths, transecting the skin layer are created by micro-cracks and erosion-pathways which will cause a higher hydraulic conductivity than could be expected from the granulometry.
机译:在损失和效率方面,井筒皮肤层的发生是最强烈的影响因素之一。除了难以去除钻井过程中所需的皮肤层之外,还不容易确定是否在井中存在皮肤层,以及是否施加一定程度的损失。这是三个表现出皮肤层的类型(表面饼,深床过滤,含水层中的层状饼干),在德国铼褐土矿业区的开放式露头挖掘出来,已经观察到。分析干扰和未受干扰的样品,用于它们的地球化学和矿物学组合物,以便在井作用过程中更好地理解皮肤层类型的形成及其命运。地球化学分析显示皮肤层主要由石英(〜40重量%)组成,高岭土/ illite(〜30重量%),有机材料(5-15%)和次级石膏沉淀物(高达12.5重量%)。尽管石英含量高,但粒度计量产生高粘土和淤泥(75-85%)。然而,递过皮肤层的优先流动路径由微裂纹和腐蚀途径产生,这将导致液压导电性比可以从粒度测量预期更高的液压导电性。

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