板土交界处裂隙发育与化学注浆时间对一维电渗固结的影响
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TU411.2

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国家自然科学基金(51609102、51709129);江苏省自然科学基金(BK20170187)


Influence of electrode crack development and chemical grouting time on one dimensional electroosmosis consolidation
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    摘要:

    通过一维电渗固结试验,研究了板土交界处裂缝(板土脱开)与注浆时间对软土电渗固结过程的影响。采用紧序注入CaCl2溶液和Na2SiO3溶液的方式,进行注浆时间对照试验。基于沉淀或胶体和离子对电渗固结的综合效应,研究了电流、排水量、土样含水量与抗剪强度、裂缝与体缩,以及电渗能耗等随注浆时间的变化规律。结果表明:板土交界处裂隙(板土脱开)总是先于其他土体裂缝产生,板土脱开导致电流值的急剧减小是造成电渗效果下降的主要原因;一维电渗固结过程中存在板土交界处裂隙发展旺盛时间tcr,以tcr为表征指标确定最佳注浆时间,可达到最佳的电渗效益。为防止在土体中出现明显的含水量突变现象,应尽可能避免在1/3tcr时刻前注浆,在2/3tcr时刻注浆能够实现最佳电渗固结效果。

    Abstract:

    The effects of cracks (soil disengagement) and grouting time at the interface between slab and soil on the osmotic consolidation process of soft soil were studied through one-dimensional electroosmosis consolidation test. The "grouting time" control test was performed by injecting CaCl2 solution and Na2SiO3 solution in a tight sequence. Based on the combined effects of "precipitation or colloid" and "ion" on electroosmosis consolidation, the variation of current, drainage, soil moisture content and shear strength, cracks and body shrinkage and energy consumption of electroosmosis with grouting time were studied. The test results show that cracks at the interface between slab and soil (slab detachment) always occur before other parts, and the sharp decrease of current value caused by slab detachment is the main reason of the reduction of electroosmotic effect; During the consolidation process, there is a time tcr for the fast development stage of crack at the slab-soil interface. Using tcr as the indicator to determine the optimal grouting time can achievethe best electroosmosis effect. In order to prevent the obvious abrupt change of water content in the soil, it should be noted that the grouting time should be not earlier then 1/3 tcr, and grouting at 2/3 tcr can achieve the best electroosmotic consolidation effect.

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高程,顾佳杰,孙秀丽,刘文化.板土交界处裂隙发育与化学注浆时间对一维电渗固结的影响[J].土木与环境工程学报(中英文),2020,42(4):67-75. Gao Cheng, Gu Jiajie, Sun Xiuli, Liu Wenhua. Influence of electrode crack development and chemical grouting time on one dimensional electroosmosis consolidation[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2020,42(4):67-75.10.11835/j. issn.2096-6717.2020.008

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  • 收稿日期:2019-10-25
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  • 在线发布日期: 2020-08-10
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