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Full-scale embankment failure test under simulated train loading

机译:模拟列车荷载下的全尺寸路堤破坏试验

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A full-scale embankment failure experiment was conducted in 2009 in Pernio, Finland. A small, extensively instrumented railway embankment on a soft clay foundation was brought to failure by loading over a period of 30 h. Instrumentation consisted of over 300 different measurement points, including 37 piezometers and nine automatically monitored inclinometer tubes. The relatively rapid loading simulated a heavy train coming to a standstill on the embankment. The primary purpose of the experiment was to gather field data of a failure caused by a rapidly applied load, with an emphasis on the pore pressure response in the clay foundation layer. The test was also used to assess the suitability of various instruments for real-time stability monitoring. The embankment failure was an asymmetric bearing capacity mechanism that is hypothesised to have been triggered by an undrained creep rupture. During the last 2 h of the experiment, pore pressure and displacements increased at an accelerating rate while the external load was kept constant. The time-dependency of the pore pressure and displacement responses was a key factor in the experiment. With regards to monitoring of similar in-service train embankments, proper placement of instruments according to predicted failure mechanisms was found to be important.
机译:2009年,在芬兰的Pernio进行了一次全面的路堤破坏试验。在30个小时的荷载下,一个软土地基上的小型,功能齐全的铁路路堤被破坏。仪器由300多个不同的测量点组成,包括37个压力计和9个自动监控的测斜管。相对较快的负载模拟了重型火车在路堤上停顿。实验的主要目的是收集由快速施加的载荷引起的破坏的现场数据,重点是粘土基础层中的孔隙压力响应。该测试还用于评估各种仪器对实时稳定性监控的适用性。路堤破坏是一种不对称的承载力机制,据推测是由不排水的蠕变破裂引起的。在实验的最后2小时内,孔隙压力和位移以加速速率增加,而外部载荷保持恒定。孔隙压力和位移响应的时间依赖性是实验中的关键因素。关于监视类似的在役火车路堤,发现根据预测的故障机制正确放置仪表很重要。

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