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A comparative study on the hydro-mechanical behavior of compacted bentonite/sand plug based on laboratory and field infiltration tests

机译:基于实验室和现场渗透试验的压实膨润土/砂塞水力力学性能对比研究

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摘要

SEALEX is a research project aiming at identifying the key factors that affect the long-term performance of bentonite-based sealing systems with an initial technological void. In this context, a series of in situ experiments have been performed in field conditions. Meanwhile, a small-scale test (1/10) was carried out in controlled conditions in the laboratory, aiming at providing useful information for analyzing the in situ tests in terms of saturation time and sealing effectiveness. In this paper, the results of the small-scale test are presented along with the results from the first in situ test (PT-N1). It was observed that during the saturation process, the evolution of the injected water volume followed a hyperbolic relationship with time in both the laboratory and field conditions. In the laboratory conditions, a decrease in axial swelling pressure occurred due to filling of the technological void. By contrast, this decrease has not been observed in the field conditions. Comparison of the injected water and the axial swelling pressure between the two different scales enabled the definition of a same time upscaling ratio of 2.5 (in situ experiment/small-scale test). Accordingly, the saturation duration of the in situ experiment was estimated to be equal to two years. For the small-scale test, a swelling strain evolution rate of 0.588 mm/day was identified in the case of infiltration from two sides of the sample. This is useful when predicting the evolution of swelling strain in the case of failure of the sealing plug. After filling of an additional 20% void, a swelling pressure of 0.18 MPa was obtained, indicating the favorable sealing capacity of the material after filling the technological void.
机译:SEALEX是一个研究项目,旨在确定影响具有初始技术缺陷的膨润土基密封系统的长期性能的关键因素。在这种情况下,在野外条件下进行了一系列的原位实验。同时,在实验室中受控条件下进行了小规模试验(1/10),旨在为分析饱和时间和密封效果方面的现场试验提供有用的信息。在本文中,将提供小规模测试的结果以及第一个原位测试(PT-N1)的结果。可以观察到,在饱和过程中,在实验室和野外条件下,注入的水量随时间呈双曲线关系。在实验室条件下,由于填充了技术空隙,导致轴向膨胀压力降低。相反,在野外条件下没有观察到这种下降。通过比较两个不同刻度之间的注入水和轴向溶胀压力,可以定义同时放大比例为2.5(原位实验/小规模测试)。因此,原位实验的饱和持续时间估计等于两年。对于小规模测试,在从样品两侧渗入的情况下,确定的溶胀应变演化速率为0.588 mm /天。在密封塞失效的情况下预测膨胀应变的演变时,这很有用。填充额外的20%空隙后,溶胀压力为0.18 MPa,表明填充技术空隙后材料的密封性能良好。

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