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两种岩石的不同类型渗透特性实验及其机理分析 被引量:9
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作者 李长洪 张立新 +2 位作者 姚作强 张吉良 苗胜军 《北京科技大学学报》 EI CAS CSCD 北大核心 2010年第2期158-163,共6页
为研究岩石不同渗透特性,对石灰岩和闪长岩进行了瞬态渗透实验,研究了岩样全应力-应变过程中的渗透率演化规律以及孔隙压差与时间的关系,并建立了岩样变形破坏过程的应变-渗透率方程,最后分析了这两种不同类型岩石渗透机理.实验结果表明... 为研究岩石不同渗透特性,对石灰岩和闪长岩进行了瞬态渗透实验,研究了岩样全应力-应变过程中的渗透率演化规律以及孔隙压差与时间的关系,并建立了岩样变形破坏过程的应变-渗透率方程,最后分析了这两种不同类型岩石渗透机理.实验结果表明,闪长岩的渗透率在峰前很低且基本不变,在峰值强度时产生"突跳"现象,石灰岩的渗透率在岩石强度峰值前后随岩石变形逐渐增大.应变-渗透率曲线的拟合方程更能深刻描述岩石破裂过程的渗透规律,孔隙压差与时间的变化关系呈一元四次多项式的关系.岩石渗透性与岩石的应力状态和岩石内部结构及力学性质有关. 展开更多
关键词 石灰岩 闪长岩 渗透实验 孔隙压差 渗透机理 突水
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水体扰动条件下物质在沉积介质中的迁移
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作者 李邵龙 陈道毅 《环境科学》 EI CAS CSCD 北大核心 2015年第10期3683-3690,共8页
为了研究在上覆水体扰动条件下物质在沉积介质中的迁移,本实验建立了简单的沉积物再悬浮发生装置,并分别利用不同粒径大小的沙粒作为均质沉积物,同时利用500μg·cm-3的溶解性罗丹明B作为示踪剂,观察在紊流扰动条件下物质在不同的... 为了研究在上覆水体扰动条件下物质在沉积介质中的迁移,本实验建立了简单的沉积物再悬浮发生装置,并分别利用不同粒径大小的沙粒作为均质沉积物,同时利用500μg·cm-3的溶解性罗丹明B作为示踪剂,观察在紊流扰动条件下物质在不同的均匀沉积介质中的迁移情况.结果表明,在粒径不同的各类沉积介质中,由于不同颗粒的孔隙度、渗透率不同,在各沉积介质中形成的孔隙水压力差产生了孔隙水对流现象,从而导致了物质在多孔介质中发生垂向或水平迁移,并且其平均迁移速度受到染色剂的埋深和多孔介质的粒径大小的影响.而在均匀的沉积层中,200 r·min-1的扰动主要影响各沉积介质中物质的垂向迁移,并且当适当增加介质的粒径时,这种垂向对流迁移现象相对增强. 展开更多
关键词 均质 对流 孔隙压差 扰动 罗丹明B
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Theoretical model for the improved PCC pile using expansive concrete
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作者 ZHOU Hang HUA JianMin +1 位作者 DING XuanMing CHU Jian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第5期772-791,共20页
Conventional PCC pile technique has been widely used as embankment piles for highway construction in China. To further improve the PCC pile capacity, the expansive concrete technique has been applied to the PCC pile t... Conventional PCC pile technique has been widely used as embankment piles for highway construction in China. To further improve the PCC pile capacity, the expansive concrete technique has been applied to the PCC pile to replace the normal concrete recently. The use of expansive concrete for the PCC pile could increase the pile diameter as well as the contact pressure at the pile-soil interface due to the expansion process of concrete, which allows the improved PCC pile to provide higher capacity than the conventional PCC pile. This paper presents a theoretical model for the new improved PCC pile using expansive concrete technique. The model is formulated by assuming the PCC pile installation process as large strain undrained cylindrical cavity expansion and the subsequent pile shaft expansion combined with soil consolidation process is simulated by the small strain cylindrical cavity expansion combined with strain-controlled consolidation. Then, similarity solution technique is used to solve the problem of cavity expansion in modified cam Clay (MCC) model, while the strain-controlled consolidation is calculated through the finite difference method (FDM). Subsequently, the suitability of the cavity expansion solution in the interpretation of the PCC pile installation is verified by comparing the calculated excess pore pressure with the measured value in an instrumented field test. The stress changes and excess pore pressure during the PCC pile installation and subsequent pile shaft expansion are investigated by means of parametric study. The proposed theoretical model first reveals and quantifies the fundamental mechanism of the PCC pile using expansive concrete technique and it provides a theoretical basis for developing design methods of the new improved PCC pile in the future. 展开更多
关键词 cavity expansion PCC pile expansive concrete CONSOLIDATION theoretical analysis
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