首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   10篇
  免费   5篇
  国内免费   5篇
地球物理   3篇
地质学   13篇
海洋学   3篇
自然地理   1篇
  2022年   1篇
  2019年   2篇
  2018年   2篇
  2017年   1篇
  2015年   2篇
  2014年   1篇
  2013年   1篇
  2012年   2篇
  2010年   1篇
  2006年   2篇
  2005年   2篇
  2003年   1篇
  2000年   1篇
  1997年   1篇
排序方式: 共有20条查询结果,搜索用时 15 毫秒
1.
无压浸渍工艺生产的PDC石油钻头钻遇砾石夹层不适应。根据砾石夹层砾石坚硬、软硬互层、非均质、研磨性强的特点,研究了新型PDC钻头,在钻头结构上主要采取外抛内锥带辅助切削齿的结构形式,在复合片上主要采用非平面结合方式,即采用双向多条直槽非平面结合。按此方案设计与生产了3只钻头,分别在3口井试用,直接钻穿砾石夹层馆陶组地层井段,钻井效率提高26%,突破了砾石夹层钻进不能使用PDC钻头的禁区。  相似文献   
2.
结合青海省微电机厂棚户区改造项目深基坑止水帷幕施工的成功经验,总结出卵漂石地层深基坑双排单重管高压旋喷桩止水帷幕施工的施工工艺及技术要点。  相似文献   
3.
王俊  王闯  何川  胡雄玉  江英超 《岩土力学》2018,39(8):3038-3046
采用?800 mm模型土压盾构开展室内掘进试验,以探究砂卵石中土压盾构隧道掌子面失稳诱发地层变形特征。同时,补充开展三维离散元仿真以挖掘室内试验难以获取的掌子面失稳信息,并研究隧道埋深对掌子面稳定性的影响规律。研究结果表明:砂卵石地层中盾构隧道掌子面失稳发展到地表后,沉降曲面呈上大下小逐步收缩的沙漏状,影响范围小于砂土地层。考虑盾构动态掘进过程后,卵石颗粒接触关系变化十分剧烈,掌子面稳定性被削弱,极限支护压力随之增大。掌子面极限支护压力随隧道埋深基本呈线性增加,极限支护压力与初始支护压力之比则随埋深增大而减小。掌子面失稳机制可根据隧道埋深划分为3种模式。与既有研究相比,考虑了盾构动态掘进过程与实际工程更加接近,可为确保砂卵石地层土压盾构隧道施工掌子面稳定提供参考。  相似文献   
4.
盾构穿越砂卵石地层地表沉降特征细宏观分析   总被引:2,自引:0,他引:2  
滕丽  张桓 《岩土力学》2012,33(4):1141-1150
以成都砂卵石地层中地铁1号线的土压平衡盾构掘进施工为研究背景,采用室内试验、PFC2D二维颗粒流程序和 Plaxis 3D有限元软件对盾构穿越砂卵石地层地表沉降特征进行了细宏观数值模拟,揭示了土压盾构穿越砂卵石地层的失稳机制和沉降规律,并结合实际施工参数和实测地表沉降数据进行了对比分析,获得了土压盾构在砂卵石地层中掘进引起的地表横向沉降槽和纵向沉降槽曲线,分析了不同大小的开挖面土仓压力和盾尾注浆压力对地表沉降的影响,给出了砂卵石地层开挖面土仓压力的建议值和盾尾注浆压力参数的合理取值范围。细宏观分析表明,与注浆压力相比较,土仓压力对地表最大沉降曲线的形状影响较小;但必须关注土仓压力的变化,在砂卵石地层中由于土拱效应对开挖面稳定性影响较大,甚至发生突然坍塌破坏。  相似文献   
5.
不同沉积物养护海滩对台风响应的差异性研究   总被引:2,自引:2,他引:0  
本文通过对厦门天泉湾人工卵石滩和会展人工沙滩在1614“莫兰蒂”超强台风影响前后的典型剖面监测,结合水文动力要素的观测和数值模拟,计算了台风影响过程的波浪场、总水位,分析了剖面形态和台风过程的剖面平均变化量。结果表明,强潮海岸人工卵石滩与人工沙滩对台风响应的特征明显不同,人工卵石滩横向上大部分卵石向岸输移堆积,滩面侵蚀,滩肩堆积形成更高的风暴滩肩,坡度明显变陡。而人工沙滩则表现为明显的沉积物离岸输运,上部滩面侵蚀,下部滩面淤积,滩面坡度明显变缓,受台风登陆后的强烈向岸风作用,滩肩顶有所夷平,滩肩高度变化很小。海滩滩肩在台风过程中是否侵蚀与台风登陆和影响过程的总水位(天文潮、风暴增水、波浪爬高)密切相关,两个人工海滩的风暴响应模式均为冲蚀;台风影响过程中,波浪能量相对强、滩面坡度相对陡的人工卵石滩比人工沙滩的剖面平均变化量小,对于台风的响应程度小,在强侵蚀高能海岸采用砾石等粗粒径沉积物进行海滩养护是减缓砂质海滩侵蚀的一种有效手段。  相似文献   
6.
付兵 《探矿工程》2012,39(6):80-84
四川安谷水电站勘探竖井所处地层河床砂卵石层深厚,采用传统的人工挖掘护壁或沉井施工工艺,施工难度大。针对地层的特点,采用冲击钻机成孔的方式施工。同时,在竖井中开挖试验平硐,遵循多炮眼、小进尺、小药量,光面爆破的施工方案,圆满完成试验平硐的开挖。介绍了其施工技术及注意事项。  相似文献   
7.
Non‐uniform flows encompassing both accelerating and decelerating flows over a cobble‐bed flume have been experimentally investigated in a flume at a scale of intermediate relative submergence. Measurements of mean longitudinal flow velocity u, and determinations of turbulence intensities u′, v′, w′, and Reynolds shear stress ?ufwf have been made. The longitudinal velocity distribution was divided into the inner zone close to the bed and the outer zone far from the bed. In the inner zone of the boundary layer (near the bed) the velocity profile closely followed the ‘Log Law’; however, in the outer zone the velocity distribution deviated from the Log Law consistently for both accelerating and decelerating flows and the changes in bed slopes ranging from ?2% to + 2% had no considerable effect on the outer zone. For a constant bed slope (S = ±0·015), the larger the flow rate, the smaller the turbulence intensities. However, no detectable pattern has been observed for u′, v′ and w′ distributions near the bed. Likewise, for a constant flow rate (Q = 0·040 m3/s), with variation in bed slope the longitudinal turbulent intensity profile in the longitudinal direction remained concave for both accelerating and decelerating flows; whereas vertical turbulent intensity (w′) profile presented no specific form. The results reveal that the positions of maximum values of turbulence intensities and the Reynolds shear stress depend not only on the flow structure (accelerating or decelerating) but also on the intermediate relative submergence scale. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   
8.
时钟 《探矿工程》2017,44(5):78-83
以常德沅江过江隧道江南工作井作为工程实例,通过对周边地层、水文特性的了解分析,从抽水试验、井位布设、抗突涌验算、沉降分析、坑外回灌等各方面进行了初步的分析,对降水相关的各项技术措施进行了梳理,通过工程实践对降水方案的可行性进行了论证,对类似高富水、强透水卵石地层条件下的深基坑降水施工具有一定的借鉴意义。  相似文献   
9.
This study presents the first detailed field‐based analysis of the morphology of bifurcations within anabranching cobble–gravel rivers. Bifurcations divide the flow of water and sediment into downstream anabranches, thereby influencing the characteristics of the anabranches and the longevity of river islands. The history, morphology, bed grain size, and flow vectors at five bifurcations on the Renous River, New Brunswick, Canada, were studied in detail. The angles of bifurcations within five anabranching rivers in the Miramichi basin were investigated. The average bifurcation angle was 47°, within the range of values cited for braided river bifurcations. Bifurcation angle decreased when anabranches were of similar length. Shields stresses in channels upstream of bifurcations were lower than reported values for braided rivers. Stable bifurcations displayed lower Shields stresses than unstable bifurcations, contrary to experimental results from braided river bifurcations. Bifurcations in anabranching rivers are stabilized by vegetation that slows channel migration and helps to maintain a uniform upstream flow field. The morphology of stable bifurcations enhances their stability. A large bar, shaped like a shallow ramp that increases in elevation to floodplain level, forms at stable bifurcations. Floodplains at stable bifurcations accrete upstream at rates between 0·9 and 2·5 m a?1. Bars may also form within the entrance of an anabranch downstream of the bifurcation node. These bars are associated with bifurcation instability, forming after a period of stability or an avulsion. Channel abandonment occurs when a bar completely blocks the entrance to one anabranch. The stability of channels upstream of bifurcations and the location of bars at bifurcations influence bifurcation stability and the maintenance of river anabranching in the long term. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
10.
地浸砂岩型铀矿卵砾石层钻进用钻头的试验研究   总被引:1,自引:0,他引:1  
介绍了金刚石-硬质合金复合球齿钻头在内蒙古某地区铀矿床卵砾石层中的生产试验情况.在钻进卵砾石层时,保径未做加强的金刚石-硬质合金复合球齿钻头的平均钻进效率为2.50 m/h,钻头的平均寿命为7.34 m/个;保径加强型金刚石-硬质合金复合球齿钻头的平均钻进效率为2.82 m/h,钻头的平均寿命为10.18 m/个;而普通合金钻头的平均钻进效率为1.29 m/h,钻头的平均寿命为1.19 m/个.试验表明金刚石-硬质合金复合球齿钻头是一种理想的钻进卵砾石层的钻头.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号