期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
石油天然气长输管道内充填技术研究
1
作者 叶勇 《石油和化工设备》 CAS 2024年第8期69-71,63,共4页
由于石油天然气长输管道应力条件较为复杂,对其进行有效的内充填处理是降低其发生应力形变的重要手段,为此,提出石油天然气长输管道内充填技术研究。在将新型复合泥浆作为石油天然气长输管道内充填材料,结合石油天然气长输管道的分布,... 由于石油天然气长输管道应力条件较为复杂,对其进行有效的内充填处理是降低其发生应力形变的重要手段,为此,提出石油天然气长输管道内充填技术研究。在将新型复合泥浆作为石油天然气长输管道内充填材料,结合石油天然气长输管道的分布,设置了差异化间距的钻孔,以套管与钻孔的同轴度一致为基准,将套管导正在钻孔中心位置,并采用梯形螺纹管箍连接套管;在内充填施工阶段,对注浆压力和注浆速度进行重点控制。在测试结果中,应用设计石油天然气长输管道内充填技术后的管道应力形变量均在0.5mm以内达到收敛,具有良好的应力性能。 展开更多
关键词 石油天然气长输管道 内充填技术 新型复合泥浆 钻孔 梯形螺纹管箍 注浆压力 注浆速度
下载PDF
A new clay-cement composite grouting material for tunnelling in underwater karst area 被引量:10
2
作者 ZHANG Cong YANG Jun-sheng +4 位作者 FU Jin-yang OU Xue-feng XIE Yi-peng DAI Yong LEI Jin-shan 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1863-1873,共11页
A new clay-cement composite grouting material (CCGM) for tunnelling in underwater karst area was developed through the excellent synergistic interactions among cement, clay, meta-aluminate and lignin. The probable for... A new clay-cement composite grouting material (CCGM) for tunnelling in underwater karst area was developed through the excellent synergistic interactions among cement, clay, meta-aluminate and lignin. The probable formation mechanism of the material was proposed based on a series of experimental tests. The results show that with an optimal mass ratio (2:1:1:0.024) for water, cement, clay and additives, the obtained CCGM displayed an excellent grouting performance for karst in an underwater condition. Compared with neat cement grouts and clay-cement grouts, CCGM has faster gel time, lower bleeding rate and bulk shrinkage rate, greater initial viscosity, and a strong resistance to water dispersion. A successful engineering application indicates that CCGM not only fulfils a better grouting performance for karst in underwater conditions but also reduces the engineering cost and environmental pollution. 展开更多
关键词 tunnel karst UNDERWATER new grouting material clay-cement composite
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部