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The upper continental crust an aquifer and its fluid: hydaulic and chemical data from 4 km depth in fractured crystalline basement rocks at the KTB test site

机译:上大陆壳含水层及其流体:TB试验现场破裂的晶体基底岩石中4 km深度的水力和化学数据

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Detailed information on the hydrogeologic and hydraulic properties of the deeper parts of the upper continental crust is scarce. The pilot hole of the deep research drillhole (KTB) in crystalline basement of central Germany provided access to the crust for an exceptional pumping experiment of 1-year duration. The hydraulic properties of fractured crystalline rocks at 4 km depth were derived from the well test and a total of 23100 m~3 of saline fluid was pumped from the crustal reservoir. The experiment shows that the water-saturated fracture pore space of the brittle upper crust is highly connected, hence, the continental upper crust is an aquifer. The pressure-time data from the well tests showed three distinct flow periods: the first period relates to wellbore storage and skin effects, the second flow period shows the typical characteristics of the homogeneous isotropic basement rock aquifer and the third flow period relates to the influence of a distant hydraulic border, probably an effect of the Franconian lineament, a steep dipping major thrust fault known from surface geology. The data analysis provided a transmissivity of the pumped aquifer T = 6.1 x 10~(-6) m~2 sec~(-1), the corresponding hydraulic conductivity (permeability) is K = 4.07 x 10~(-8) m sec~(-1) and the computed storage coefficient (storativity) of the aquifer of about S = 5 x 10~(-6). This unexpected high permeability of the continental upper crust is well within the conditions of possible advective flow. The average flow porosity of the fractured basement aquifer is 0.6-0.7% and this range can be taken as a representative and characteristic values for the continental upper crust in general. The chemical composition of the pumped fluid was nearly constant during the 1-year test. The total of dissolved solids amounts to 62 g l~(-1) and comprise mainly a mixture of CaCl_2 and NaCl; all other dissolved components amount to about 2 g l~(-1). The cation proportions of the fluid (X_(Ca) approximately 0.6) reflects the mineralogical composition of the reservoir rock and the high salinity results from desiccation (H_2O-loss) due to the formation of abundant hydrate minerals during water-rock interaction. The constant fluid composition suggests that the fluid has been pumped from a rather homogeneous reservoir lithology dominated by metagabbros and amphibolites containing abundant Ca-rich plagioclase.
机译:缺乏上大陆壳较深部分的水文地质和水力特性的详细信息。位于德国中部结晶地下室的深层研究钻孔(KTB)的导向孔提供了进入地壳的通道,可进行为期1年的出色抽水实验。通过试井得到了4 km深度的裂缝性结晶岩的水力特性,并从地壳储层中抽出了总计23100 m〜3的盐水。实验表明,脆性上地壳的饱和含水孔隙孔隙高度连通,因此大陆上地壳是含水层。试井的压力-时间数据显示了三个不同的流动周期:第一个流动周期与井筒存储和集肤效应有关,第二个流动周期显示了均质各向同性地下岩层含水层的典型特征,第三个流动时期与影响有关远处的水力边界,这可能是法兰克系的影响,这是一种从地表地质学中得知的陡峭的大推力断层。数据分析提供了抽水层的透射率T = 6.1 x 10〜(-6)m〜2 sec〜(-1),相应的水力传导率(渗透率)为K = 4.07 x 10〜(-8)m sec 〜(-1),计算出的蓄水层储水系数(储水度)约为S = 5 x 10〜(-6)。大陆上地壳的这种出乎意料的高渗透性完全在可能的对流作用下。地下基底含水层的平均孔隙度为0.6-0.7%,该范围通常可以作为大陆上地壳的代表值和特征值。在为期一年的测试中,泵送流体的化学成分几乎保持不变。溶解的固体总量为62 g l〜(-1),主要包含CaCl_2和NaCl的混合物;所有其他溶解的成分总计约2 g l〜(-1)。流体的阳离子比例(X_(Ca)约为0.6)反映了储层岩石的矿物学组成,并且由于水-岩石相互作用过程中形成了大量的水合矿物而导致的干燥(H_2O损失)导致高盐度。恒定的流体组成表明,流体是从相当均质的储层岩性中抽出的,该岩性主要由含有丰富的富含Ca的斜长石的变质岩和闪石组成。

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