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A new approach for determination of adhesion coefficient in pipejacking method by experimental and numerical analysis: An example from Istanbul

机译:实验和数值分析确定顶管法附着系数的新方法:以伊斯坦布尔为例

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The common technique used for the construction and maintenance of infrastructure facilities until recently involved traditional open excavation methods. Technological advancements and developments in gathering geotechnical information on our working environment have given birth to the development of new methods which will prevent problems that may have emerged due to the use of traditional methods during the construction of infrastructure facilities. One of these new methods is trenchless technology which is becoming increasingly popular in the infrastructure construction industry. One of its processes, the pipejaking process, is of special importance in busy urban centres and densely populated living quarters as it has proved to be the most sustainable method for working in such environments and for global use. The name of this process is trenchless technology. There is an increasing demand for infrastructure systems, especially in cities, because of increasing populations and varying lifestyles, and in the areas around cities which are environmentally sensitive. Routes of infrastructure (pipelines) to be constructed have many obstructions such as motorways, buildings, railways, rivers, creeks, and canals. The pipejacking process, a trenchless technology to overcome these problems and obstructions, has been achieving an important scope of application in Turkey and the rest of the world. Infrastructure facilities planned to be constructed by the application of this system can be built under every kind of ground condition in a correct, swift, and economic manner, without needing an open excavation and its associated traffic problems and conditions that may cause danger to human life and property. Within the context of this study, the collector line, constructed in ?ile district by the pipejacking process (which is 1535 m in length and 800 mm in diameter), was examined, and jacking force length graphics were prepared with the use of jacking force records obtained from the machine. After analysing these graphics, change of coefficients of α adhesion was researched and, for use at cohesioned grounds, an α value was suggested in order to predict friction resistance and accordingly possible jacking force values that may be faced. First, with the assistance of the Plaxis 3D Tunnel Program, considering land conditions, the examined line was modelled. Then, stress values resulting from this modelling and graphic analyses were compared, and observed harmonies or inharmonies were discussed. Lastly, parameters that are effective on these harmonies or inharmonies were defined. In addition, considering jacking forces and stress values observed where bentonite is whether used or not, the lubricant's effect on the jacking action was examined. Within the context of this study, stoppages, lubrication during jacking process, and their effects on the jacking force and stresses were analysed. Thus, a versatile study regarding the pipejacking process has been put forward for consideration.
机译:直到最近,用于基础设施建设和维护的常用技术都涉及传统的露天挖掘方法。在收集有关我们工作环境的岩土工程信息方面的技术进步和发展催生了新方法的开发,这些新方法将防止在基础设施建设期间使用传统方法可能出现的问题。这些新方法之一是非开挖技术,该技术在基础设施建设行业中越来越受欢迎。在拥挤的城市中心和人口稠密的居住区中,其过程之一,即管道堵塞过程特别重要,因为事实证明,它是在这种环境下工作和全球使用的最可持续的方法。此过程的名称是无沟槽技术。对基础设施系统的需求不断增加,尤其是在城市中,这是由于人口增加和生活方式的变化,以及城市周围环境敏感的地区。要建造的基础设施(管道)路线有许多障碍物,例如高速公路,建筑物,铁路,河流,小河和运河。顶管工艺是一种克服这些问题和障碍的非开挖技术,已在土耳其和世界其他地区实现了重要的应用范围。可以通过正确,快速和经济的方式在各种地面条件下构建计划通过该系统应用构建的基础设施,而无需进行露天挖掘及其相关的交通问题和可能对人类生命造成危险的条件和财产。在本研究的背景下,检查了通过吊管工艺在菲利普区(长度为1535 m,直径为800 mm)建造的集热管,并利用顶管力绘制了顶管力长度图形从机器获得的记录。在分析了这些图形之后,研究了α附着系数的变化,并建议将其用于内聚地面,以预测摩擦阻力以及因此可能面临的顶推力值。首先,在Plaxis 3D隧道计划的帮助下,考虑到土地条件,对检查的线进行了建模。然后,比较由该建模和图形分析得出的应力值,并讨论观察到的和谐或不和谐。最后,定义了对这些和声或不和声有效的参数。另外,考虑到是否使用膨润土时所观察到的顶升力和应力值,研究了润滑剂对顶升作用的影响。在本研究的背景下,分析了顶升过程中的停顿,润滑以及它们对顶升力和应力的影响。因此,已经提出了关于管道顶进过程的通用研究供考虑。

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