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Hydraulic Conductivity and Scale Effects Investigation in Basalt in the Dam Area of Xiluodu Hydroelectric Station, Jinshajiang River, China

机译:Xiluodu水电站大坝区玄武岩型液压导电性和规模效应研究

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摘要

Hydraulic conductivity (K) and scale effects in basalt in the dam area of Xiluodu hydroelectric station were investigated by three kinds of field hydraulic tests with different test scale, 2608 water pressure tests in single borehole, 54 water seepage tests in adit and groundwater tracer test. Statistical results show the high heterogeneity of fractured rock and K difference between two neighboring test intervals are often more than two orders of magnitude. However, there is a strong decreasing trend of hydraulic conductivity with the increase of vertical depth. Moreover, these three kinds of hydraulic test results demonstrate that hydraulic conductivity increases with the increase of test scale in heterogeneous basalt and the heterogeneous degree of K decreases with the increase of test scale. K from water seepage test in adit, with the test scale of 1-2 m, is dispersed from 0.00024 m/d to 3.46 m/d. K from water pressure test in single borehole, with the test scale of 4-7 m, is 0.0002-1.04 m/d. K from groundwater tracer test, with the test scale of 70-145 m, is concentrated between 0.46 m/d and 2.1 m/d. High heterogeneity of fractured rock and multi-level of fractures are thought as the major reason resulted in scale effects of hydraulic conductivity.
机译:用不同的测试规模的三种场液压试验研究了Xiluodu水电站大坝区域的液压导电性(k)和尺度效应,用不同的测试量表,单钻孔2608水压试验,Adit和地下水跟踪试验中的54次水压试验。统计结果显示裂缝岩石的高异质性,两个相邻测试间隔之间的k差异通常超过两个数量级。然而,随着垂直深度的增加,液压导电性的趋势很大。此外,这三种液压试验结果表明,随着测试规模的增加,液压导电随着试验规模的增加而增加,随着试验量表的增加,k的异质程度降低。 k来自水的渗流测试,在Adit中的测试量表为1-2 m,分散在0.00024m / d至3.46m / d。 K从单钻孔中的水压试验,测试等级为4-7米,为0.0002-1.04 m / d。 K来自地下水示踪试验,测量为70-145米,浓缩在0.46m / d和2.1m / d之间。裂缝岩石的高异质性和多层次的裂缝被认为是主要原因导致水力传导率的规模效应。

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