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大口径钢筋混凝土排水管道施工新工艺——半开槽顶管施工技术介绍 被引量:10
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作者 郭伟 陈波 吴纪东 《给水排水》 CSCD 北大核心 2012年第12期100-103,共4页
针对大口径钢筋混凝土排水管道的施工难点,提出了大口径钢筋混凝土排水管道施工新工艺——半开槽顶管施工技术,详细介绍了其施工方法和适用条件。实践证明,该技术可解决大口径管道施工中的基础问题和材料耗用问题,对同类大口径钢筋混凝... 针对大口径钢筋混凝土排水管道的施工难点,提出了大口径钢筋混凝土排水管道施工新工艺——半开槽顶管施工技术,详细介绍了其施工方法和适用条件。实践证明,该技术可解决大口径管道施工中的基础问题和材料耗用问题,对同类大口径钢筋混凝土排水管道的施工具有借鉴意义。 展开更多
关键词 大口径排水管道 钢筋混凝 半开槽顶管 土弧
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西藏日土地区弗野岩体的成因——锆石U-Pb年龄及Hf同位素约束 被引量:10
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作者 张璋 耿全如 +2 位作者 彭智敏 丛峰 关俊雷 《地质通报》 CAS CSCD 北大核心 2015年第2期262-273,共12页
班公湖—怒江成矿带西段日土—多龙地区为一条燕山期岩浆弧,已相续发现多处大、中型矿产,具有良好的成矿地质条件。弗野岩体位于该岩浆弧西侧,岩性以闪长岩和闪长玢岩为主,蚀变较强;微量元素原始地幔标准化后亏损Ba、Nb、Ta、Sr和Ti,富... 班公湖—怒江成矿带西段日土—多龙地区为一条燕山期岩浆弧,已相续发现多处大、中型矿产,具有良好的成矿地质条件。弗野岩体位于该岩浆弧西侧,岩性以闪长岩和闪长玢岩为主,蚀变较强;微量元素原始地幔标准化后亏损Ba、Nb、Ta、Sr和Ti,富集Th、U和Pb;稀土元素球粒陨石标准化后表现出整体向右缓倾,显示负Eu异常;D1046和D1049两件样品的锆石LuHf同位素结果显示,εHf(t)主要集中在-5.2^-12.2区间,TDM1模式年龄介于0.98~1.28Ga之间;锆石206Pb/238U年龄加权平均值分别为119.06±0.48Ma和120.03±0.68Ma,均形成于早白垩世中期。结合岩石地球化学特征判断其属于I型花岗岩类,源区物质来源于幔源物质和下地壳物质。根据该岩浆弧带的岩体特征判断,班公湖—怒江特提斯洋至少在中侏罗世已经开始了向北的俯冲作用,且在早白垩世这种向北的俯冲作用仍在持续。 展开更多
关键词 -多龙岩浆 弗野岩体 岩石成因 LA-ICP-MS锆石U-PB年龄 锆石HF同位素 西藏
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大口径混凝土排水管道双排联铺施工技术
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作者 陈波 吴纪东 《给水排水》 CSCD 北大核心 2011年第11期95-96,共2页
结合某城市积水点改造项目(管道为D02 800×2),介绍了大口径混凝土排水管道双排连铺的施工方法。双管间距小、施工扰动、回填和夯实是施工的难点,总结了施工工艺流程,从修筑土弧基础、管道安装和回填等几个方面介绍了大口径排水管... 结合某城市积水点改造项目(管道为D02 800×2),介绍了大口径混凝土排水管道双排连铺的施工方法。双管间距小、施工扰动、回填和夯实是施工的难点,总结了施工工艺流程,从修筑土弧基础、管道安装和回填等几个方面介绍了大口径排水管道双排联铺施工技术。 展开更多
关键词 大口径混凝排水管道 双排联铺 土弧基础 施工 回填 夯实
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排水管道四点支承法的理论和工程实践 被引量:1
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作者 萧岩 焦永达 +1 位作者 曹生龙 李林呈 《市政技术》 2000年第3期29-38,共10页
目前北京市大部分开槽施工的排水管道仍然沿用传统的施工方法:用平口混凝土或钢筋混凝土排水管,在槽底浇筑混凝土条形管基。管与管之间采用钢丝网砂浆抹带方法做刚性连接(图1)。虽然管底条形混凝土基础可以起到提高排水管的承载能力、... 目前北京市大部分开槽施工的排水管道仍然沿用传统的施工方法:用平口混凝土或钢筋混凝土排水管,在槽底浇筑混凝土条形管基。管与管之间采用钢丝网砂浆抹带方法做刚性连接(图1)。虽然管底条形混凝土基础可以起到提高排水管的承载能力、保证重力流的坡度等作用,但是混凝土基础的浇筑和养生会增加开槽的土方量并延长晾槽的时间,这不仅增加了降水费用和技术措施费用。 展开更多
关键词 排水管道 四点支承法 土弧基础法 砂垫层
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Mechanism of formation of sliding ground fissure in loess hilly areas caused by underground mining 被引量:10
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作者 Liu Hui Deng Kazhong +1 位作者 Lei Shaogang Bian Zhengfu 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期553-558,共6页
Based on a shallow-buried coal seam covered with thick loose layers in hilly loess areas of western China,we developed a mechanical model for a mining slope with slope stability analysis, and studied the mechanism of ... Based on a shallow-buried coal seam covered with thick loose layers in hilly loess areas of western China,we developed a mechanical model for a mining slope with slope stability analysis, and studied the mechanism of formation and development of a sliding ground fissure by the circular sliding slice method.Moreover, we established a prediction model of a sliding fissure based on a mechanical mechanism,and verified its reliability on face 52,304, an engineering example, situated at Daliuta coal mine of Shendong mining area in western China. The results show that the stress state of a mining slope is changed by its gravity and additional stress from the shallow-buried coal seam and gully terrain. The mining slope is found to be most unstable when the ratio of the down-sliding to anti-sliding force is the maximum, causing local fractures and sliding fissures. The predicted angles for the sliding fissure of face 52,304 on both sides of the slope are found to be 64.2° and 82.4°, which are in agreement with the experimental data. 展开更多
关键词 Loess hilly area Sliding ground fissure Mechanical model Landslide stability Circular sliding Slice method
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Arc-length technique for nonlinear finite element analysis 被引量:9
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作者 MEMONBashir-Ahmed 苏小卒 《Journal of Zhejiang University Science》 EI CSCD 2004年第5期618-628,共11页
Nonlinear solution of reinforced concrete structures, particularly complete load-deflection response, requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard, ... Nonlinear solution of reinforced concrete structures, particularly complete load-deflection response, requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard, ordinary solution techniques lead to instability near the limit points and also have problems in case of snap-through and snap-back. Thus they fail to predict the complete load-displacement response. The arc-length method serves the purpose well in principle, received wide acceptance in finite element analysis, and has been used extensively. However modifications to the basic idea are vital to meet the particular needs of the analysis. This paper reviews some of the recent developments of the method in the last two decades, with particular emphasis on nonlinear finite element analysis of reinforced concrete structures. 展开更多
关键词 Arc-length method Nonlinear analysis Finite element method Reinforced concrete Load-deflection path Document code: A CLC number: TU31 Arc-length technique for nonlinear finite element analysis* MEMON Bashir-Ahmed# SU Xiao-zu (苏小卒) (Department of Structural Engineering Tongji University Shanghai 200092 China) E-mail: bashirmemon@sohu.com xiaozub@online.sh.cn Received July 30 2003 revision accepted Sept. 11 2003 Abstract: Nonlinear solution of reinforced concrete structures particularly complete load-deflection response requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard ordinary solution techniques lead to instability near the limit points and also have problems in case of snap-through and snap-back. Thus they fail to predict the complete load-displacement response. The arc-length method serves the purpose well in principle received wide acceptance in finite element analysis and has been used extensively. However modifications to the basic idea are vital to meet the particular needs of the analysis. This paper reviews some of the recent developments of the method in the last two decades with particular emphasis on nonlinear finite element analysis of reinforced concrete structures. Key words: Arc-length method Nonlinear analysis Finite element method Reinforced concrete Load-deflection path
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Coefficient of consolidation by end of arc method
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作者 Mohsen Abbaspout Reza Porhoseini +1 位作者 Kazem Barkhordari Ahmad Ghorbani 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期332-337,共6页
One of the most important issues in geotechnical engineering is excess pore pressure caused by clay soil loading and consolidation. Regarding uncertainties and complexities, this issue has long been the subject of att... One of the most important issues in geotechnical engineering is excess pore pressure caused by clay soil loading and consolidation. Regarding uncertainties and complexities, this issue has long been the subject of attention of many researchers. In this work, a one-dimensional consolidation apparatus was equipped in a way that pore water pressure and settlement could be continuously read and recorded during consolidation process under static loading. The end of primary consolidation was obtained using water pressure changes helping to present a new method for determining the end of primary consolidation and consolidation coefficient. This method was then compared with two classical theory methods of lg t and t. Using Terzaghi's theory, the way of pore pressure dissipation for lg t, t and the new method was found and compared with experimental results. It is concluded that the new method has better results. 展开更多
关键词 one-dimensional consolidation of soil excess pore pressure end primary consolidation consolidation coefficient static loading
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