首页> 外文期刊>Journal of earth system science >Predictive permeability model of faults in crystalline rocks; verification by joint hydraulic factor (JH) obtained from water pressure tests
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Predictive permeability model of faults in crystalline rocks; verification by joint hydraulic factor (JH) obtained from water pressure tests

机译:结晶岩断层的预测渗透率模型;通过水压测试获得的联合水力系数(JH)进行验证

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In the present study, a new model is proposed to predict the permeability per fracture in the fault zones by a new parameter named joint hydraulic factor (JH). JH is obtained from Water Pressure Test WPT) and modified by the degree of fracturing. The results of JH correspond with quantitative fault zone descriptions, qualitative fracture, and fault rock properties. In this respect, a case study was done based on the data collected from Seyahoo dam site located in the east of Iran to provide the permeability prediction model of fault zone structures. Datasets including scan-lines, drill cores, and water pressure tests in the terrain of Andesite and Basalt rocks were used to analyse the variability of in-site relative permeability of a range from fault zones to host rocks. The rock mass joint permeability quality, therefore, is defined by the JH. JH data analysis showed that the background sub-zone had commonly 3 Lu (less of 5 ?— 10a?’5 m3/s) per fracture, whereas the fault core had permeability characteristics nearly as low as the outer damage zone, represented by 8 Lu (1.3 ?— 10a?’4 m3/s) per fracture, with occasional peaks towards 12 Lu (2 ?— 10a?’4 m3/s) per fracture. The maximum JH value belongs to the inner damage zone, marginal to the fault core, with 14a€“22 Lu (2.3 ?— 10a?’4 a€“3.6 ?— 10a?’4 m3/s) per fracture, locally exceeding 25 Lu (4.1 ?— 10a?’4 m3/s) per fracture. This gives a proportional relationship for JH approximately 1:4:2 between the fault core, inner damage zone, and outer damage zone of extensional fault zones in crystalline rocks. The results of the verification exercise revealed that the new approach would be efficient and that the JH parameter is a reliable scale for the fracture permeability change. It can be concluded that using short duration hydraulic tests (WPTs) and fracture frequency (FF) to calculate the JH parameter provides a possibility to describe a complex situation and compare, discuss, and weigh the hydraulic quality to make predictions as to the permeability models and permeation amounts of different zone structures.
机译:在本研究中,提出了一个新模型,通过一个称为联合水力系数(JH)的新参数来预测断层带中每条裂缝的渗透率。 JH是从水压测试(WPT)获得的,并通过压裂程度进行了修改。 JH的结果与定量断层带描述,定性断裂和断层岩石特性相对应。在这方面,根据从位于伊朗东部的Seyahoo大坝现场收集的数据进行了案例研究,以提供断层带结构的渗透率预测模型。包括扫描线,钻芯和安山岩和玄武岩岩石地形中的水压测试在内的数据集用于分析从断层带到主岩的一定范围内的现场相对渗透率的变化性。因此,岩体节理的渗透性质量由JH定义。 JH数据分析表明,每个裂缝本底分区通常> 3 Lu(小于5?-10a?'5 m3 / s),而断层岩心的渗透率特性几乎与外部破坏区一样低,表示为每条裂缝为8 Lu(1.3?— 10a?4 m3 / s),偶尔有朝向每条裂缝12 Lu(2?-10a?4 m3 / s)的峰值。最大JH值属于内部破坏区域,位于断层核心的边缘,每条裂缝14a€22 Lu(2.3?-10a?4a?3.6?10a?4 m3 / s),局部超过每个裂缝25 Lu(4.1?10a?4 m3 / s)。这给出了JH在结晶岩中的断裂核心,内部破坏区和外部破坏区之间约1:4:2的比例关系。验证工作的结果表明,新方法将是有效的,并且JH参数是裂缝渗透率变化的可靠尺度。可以得出结论,使用短时水力测试(WPT)和裂缝频率(FF)计算JH参数可以描述复杂的情况,并比较,讨论和权衡水力质量,从而对渗透率模型做出预测和不同区域结构的渗透量。

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