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岛状冻土区应用生石灰桩复合地基效果评价 被引量:1
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作者 杨晓明 程佳 蔡汉成 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2022年第4期941-948,共8页
生石灰桩预融处理岛状冻土是一种新的地基处理技术,目前国内外相关研究极少。为明确生石灰桩复合地基在岛状冻土区的实际效果,依托漠河机场改扩建工程地基处理项目开展生石灰桩预融技术研究。通过对现场生石灰桩开展地温及变形监测、挖... 生石灰桩预融处理岛状冻土是一种新的地基处理技术,目前国内外相关研究极少。为明确生石灰桩复合地基在岛状冻土区的实际效果,依托漠河机场改扩建工程地基处理项目开展生石灰桩预融技术研究。通过对现场生石灰桩开展地温及变形监测、挖探及室内外试验,经过近1 a的观测和试验,对生石灰桩复合地基的地温、桩径、干密度、含水率等关键参数的变化特征进行深入分析,明确生石灰桩处理岛状冻土地基能达到预融并加固融土地基的工程效果。研究结果表明:生石灰桩能完全融化桩间冻土,且预融处理后的复合地基在3个月内即已基本稳定。处理后的复合地基变形量小(竖向膨胀2.4~3.0 mm),稳定快(施工完成后3个月达到稳定),承载力满足设计要求。生石灰桩预融冻土后桩体发生膨胀,膨胀率受深度影响较小,与土体粒径成分关系较大,砂类土膨胀率低于黏性土。生石灰桩膨胀对桩周土体的挤密作用随范围扩大而减小,最大影响范围为1.25倍桩径。生石灰桩完工近1 a后,桩体完全熟化,桩体含水率明显高于桩周地基土体,桩周地基土体含水率平均降低了约8%,且距离桩体越近含水率越低。 展开更多
关键词 石灰桩复合地基 岛状冻土 地温 含水率
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材料与施工
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《交通建设与管理》 1999年第7期19-21,共3页
关键词 钩连块体 嵌岩 抛石层 软·土·地基 石灰桩复合地基 水运工程 超深孔 海事处理 底锚固型式 港工
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行驶300t重荷载气垫船地坪施工技术
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作者 王小女 《安徽建筑》 2013年第5期58-60,共3页
石灰桩通过生石灰吸收水膨胀挤密桩周土,使桩间土强度提高并能与桩间土共同作用形成复合地基,提高了地基承载力,减小沉降;环氧树脂自流平,具有硬度高、耐磨性好,洁净度高、附着力强、耐压、耐冲击,整体面层无连接缝。
关键词 石灰桩复合地基 环氧树脂自流平 地坪施工
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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土力学、地基基础工程
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《运输经理世界》 1996年第12期4-6,共3页
关键词 地基基础工程 土力学 软·土·地基 土工布 喷粉 低应变动测法 建筑技术 水泥搅拌 粉喷 石灰桩复合地基
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