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Twenty-five years' geotechnical observation and testing in the Tertiary Boom Clay formation

机译:在第三纪臂粘土地层中进行了25年的岩土工程观察和测试

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The research and development programme on geological disposal for high-level and long-lived waste (HLW) in Belgium was initiated in 1974. A deep tertiary clay formation, the Boom Clay, present under the Mol-Dessel nuclear site, was selected as a reference host formation for experimental purposes. The construction of the underground laboratory HADES (at a depth of 223 m, initiated in 1980 and extended in 2002) allowed the building of a valuable geotechnical database, and led to the development of improved excavation techniques that significantly reduce the excavation-damaged zone (EDZ). Since the operational start of HADES about 25 years ago, many geotechnical measurements have been performed around excavations. Comparison between in situ measurements and modelling results allowed a continuous improvement of our knowledge on the Boom Clay behaviour. Important issues for interpreting the measurements correctly are good control of the excavation parameters and the boundary conditions. An extensive characterisation of the hydromechanical response of Boom Clay around an excavation for short- and long-term conditions has been performed. One important finding was the occurrence of measurable hydraulic effects at a distance of about 60 m (12·5 tunnel diameters) ahead of the tunnel excavation.
机译:1974年,比利时启动了针对高放废物和长寿命废物的地质处置的研究和开发计划。选择了深层的第三系粘土,即位于摩尔-德塞尔核电站下的动臂粘土,作为高密度和长寿命废物的地质处置。出于实验目的参考宿主的形成。 HADES地下实验室的建设(深度为223 m,始于1980年并于2002年扩展)允许建立有价值的岩土数据库,并导致开发改进的开挖技术,从而大大减少了开挖损坏的区域( EDZ)。自HADES于25年前投入运营以来,围绕开挖进行了许多岩土工程测量。现场测量结果与建模结果之间的比较使我们对动臂粘土性能的认识不断提高。正确解释测量结果的重要问题是对挖掘参数和边界条件的良好控制。对于短期和长期工况,动臂粘土在开挖周围的水力力学响应已得到广泛表征。一个重要的发现是在隧道开挖前约60 m(隧道直径12·5)处可测量的水力作用。

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