期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
孔隙溶液盐分浓度对大连湾海相淤泥水泥固化土渗透性状影响研究 被引量:6
1
作者 詹博博 丁建文 +2 位作者 王恒 王健华 赵轮 《硅酸盐通报》 CAS CSCD 北大核心 2018年第11期3587-3591,共5页
通过对大连湾洗盐淤泥土、未洗盐淤泥土、固化淤泥土进行固结渗透试验研究孔隙溶液盐分浓度对重塑土和固化土渗透性状的影响,结果表明:在相同孔隙比时,大连湾重塑土及较低水泥掺量下的固化土渗透系数随孔隙溶液盐分浓度的降低而减小,最... 通过对大连湾洗盐淤泥土、未洗盐淤泥土、固化淤泥土进行固结渗透试验研究孔隙溶液盐分浓度对重塑土和固化土渗透性状的影响,结果表明:在相同孔隙比时,大连湾重塑土及较低水泥掺量下的固化土渗透系数随孔隙溶液盐分浓度的降低而减小,最大减小了50%,而且随着孔隙比的减小,高盐分浓度与低盐分浓度的渗透曲线逐渐逼近甚至重合;另外得出,对于固化淤泥土,随着水泥掺量的增加,原泥中盐分对固化土渗透性状的影响逐渐减弱。 展开更多
关键词 孔隙溶液盐分浓度 海相淤泥 水泥固化土 渗透性
下载PDF
Salinity effects on soil shrinkage characteristic curves of fine-grained geomaterials 被引量:3
2
作者 Partha Narayan Mishra Alexander Scheuermann +1 位作者 Thierry Bore Ling Li 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2019年第1期181-191,共11页
Fine-grained clayey soils are prone to substantial volume changes during desiccation in response to the dynamics of their moisture regime,and are of critical importance in several geotechnical and geoenvironmental eng... Fine-grained clayey soils are prone to substantial volume changes during desiccation in response to the dynamics of their moisture regime,and are of critical importance in several geotechnical and geoenvironmental engineering applications. As such, the complex interactions between the fraction of soil solids and the ionic pore fluid play a critical role in governing such volume changes, and have been the focus in studies dealing with marine geotechnology, mine-tailing ponds, engineered barrier systems, etc.With this in mind, the present investigation evaluates the volume changes and accompanying densification from a saturated slurry state to a constant volume state of a reference fine-grained geomaterial,kaolin, subjected to evaporative dewatering. For this purpose, several parametric studies involving determination of soil shrinkage characteristic curves(SSCCs) of kaolin under the influence of varied salt constituents and concentrations of pore fluid are performed. Furthermore, a critical assessment of SSCCs depicting progressive shrinkage and volume change behaviour of geomaterials is provided, followed by the analysis of experimentally obtained SSCCs of the kaolin to explore the impacts of pore fluid salinity.Moreover, the SSCCs are parameterised with a predictive model and the fitting parameters are used to quantitatively demonstrate the salinity-dependent volume change response of a representative finegrained porous system. 展开更多
关键词 KAOLIN pore fluid salinity Soil shrinkage curves pore space dynamics GEOTECHNICAL engineering
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部