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Variation of Mechanical Properties of Soft Marine Clay with Methane Gas Content

机译:甲烷气体含量的软海洋粘土力学性能变异

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To quantify the effects of methane gas on mechanical properties of soft marine clay, an exhaustive laboratory testing program was developed using zeolite to uniformly disseminate gas bubbles inside the clay matrix. Results from controlled rate-of-strain (CRS) tests indicated that as the gas content increases, there is a reduction in the interpreted preconsolidation pressure, although the rigidity of the clay with more gas increased throughout the test. Minivane test results indicated that the undisturbed shear strength decreases as the amount of methane gas increases, while the residual and remolded strengths remain practically unchanged, i.e., are independent of the gas content. Similarly results from triaxial tests indicated that the undisturbed shear strength is reduced as the gas content increases, but there was no change in the failure mode. Interestingly, the normalized shear strength increased for the clay with gas, when the samples were tested at 100 percent of deformation per hour. It is theorized that the methane gas bubbles interact with both the clay platelets and the pore water, and, to certain point, bear part of the load, thus modifying the distribution of the load in the soil structure; that is to say, there is a partial load transfer from the gas bubbles to the soil structure, as the clay particles confine the methane gas.
机译:为了量化甲烷气体对软海洋粘土力学性能的影响,使用沸石在粘土基质内均匀地传播气泡的详尽实验室测试程序。受控菌株(CRS)试验的结果表明,随着气体含量的增加,解释的前透透压压力降低,尽管在整个试验过程中粘土的刚性增加。小型试验结果表明,随着甲烷气体的量增加,不受干扰的剪切强度降低,而残留和重折叠的强度仍然实际不变,即与气体含量无关。类似地,三轴试验结果表明,随着气体含量的增加,未受干扰的剪切强度降低,但故障模式没有变化。有趣的是,当样品以每小时100%的变形测试时,粘土的归一化剪切强度增加了粘土。理解甲烷气泡与粘土血小板和孔隙水相互作用,以及某些点承载载荷的一部分,从而改变土壤结构中负荷的分布;也就是说,随着粘土颗粒限制甲烷气体,存在从气泡到土壤结构的部分负载转移。

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