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Elastoplastic Modelling of an In Situ Concrete Spalling Experiment using the Ottosen Failure Criterion

机译:使用Ottosen破坏准则的现浇混凝土剥落试验的弹塑性建模

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摘要

An in situ concrete spalling experiment will be carried out in the ONKALO rock characterization facility. The purpose is to establish the failure strength of a thin concrete liner on prestressed rock surface, when the stress states in both rock and concrete are increased by heating. A cylindrical hole 1.5 m in diameter and 7.2 m in depth is reinforced with a 40 mm thin concrete liner from level -3 m down. Eight 6 m long 4 kW electrical heaters are installed around the hole 1 m away. The experiment setup is described and results from predictive numerical modelling are shown. Elastoplastic modelling using the Ottosen failure criterion predicts damage initiation on week 5 and the concrete ultimate strain limit of 0.0035 is exceeded on week 10. The support pressure generated by the liner is 3.2 MPa and the tangential stress of rock is reduced by -33 %. In 2D fracture mechanical simulations, the support pressure is 3 MPa and small localized damage occurs after week 3 and damage process slowly continues during week9 of the heating period. In conclusion, external heating is a potent way of inducing damage and thin concrete liner significantly reduces the amount of damage.
机译:在ONKALO岩石表征设施中将进行原位混凝土剥落实验。目的是通过加热使岩石和混凝土中的应力状态都增加时,建立薄混凝土衬砌在预应力岩石表面的破坏强度。一个直径为1.5 m,深度为7.2 m的圆柱孔从-3 m处向下用40 mm的薄混凝土衬砌进行了加固。在1 m处的孔周围安装了八个6 m长的4 kW电加热器。描述了实验设置,并显示了预测数值建模的结果。使用奥托森破坏准则的弹塑性模型预测在第5周开始破坏,在第10周超过混凝土极限应变极限0.0035。衬砌产生的支撑压力为3.2 MPa,岩石的切向应力降低了-33%。在2D断裂力学模拟中,支撑压力为3 MPa,在第3周后会发生少量局部损坏,并且在加热期间的第9周内,损坏过程会缓慢进行。总而言之,外部加热是引起损坏的有效方法,而薄的混凝土衬砌可显着减少损坏量。

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