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Effect of Bentonite Slurry Pressure on Interface Friction of Pipe Jacking

机译:膨润土泥浆压力对顶管界面摩擦的影响

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Pipe jacking is a technique used to construct tunnels by pushing prefabricated pipes through the ground from an entrance shaft to an exit shaft. This technique is referred as microtunneling in U.S. terminology, therefore, in the rest of the text, pipejacking and microtunneling will be used as having the same meaning. Pipe jacking is a more economical alternative to segmental lined tunnels. However, the main limitation of pipe jacking is the jacking distance, which is directly dependent on the friction between the pipe and the soil. Therefore, reducing the friction between the pipe and soil is a critical issue in terms of economy and construction speed. In pipe jacking, in order to reduce the friction between pipe and soil, a bentonite injection is applied. In this paper, a new laboratory test setup was prepared to simulate pipe jacking. The main aim of this test setup was to find the effects of bentonite pressure on the lubrication efficiency, which has not been clarified in the literature yet. In order to verify the test method, results of laboratory tests were compared with measurements of the friction between jacked pipe and soil in several real life projects. The measurements were compared with the coefficient of friction values obtained from three different field measurements conducted in different projects. According to the results, it can be stated that by applying continuous bentonite injection even under very low pressure, an interface can be created between bentonite slurry and a concrete pipe, and this bentonite interface is able to reduce the friction coefficient tremendously to approximately 10% of the sand-concrete pipe interface friction coefficient. But when the injection is not applied continuously, the application of bentonite slurry injection decreases the coefficient of friction to half of that in the case of no bentonite injection. (C) 2016 American Society of Civil Engineers.
机译:顶管技术是一种通过将预制管从入口井道穿过地面到出口井道来建造隧道的技术。该技术在美国术语中称为微隧道技术,因此,在本文的其余部分中,将使用千斤顶和微隧道技术具有相同的含义。顶管是分段衬砌隧道的一种更经济的选择。但是,顶管的主要限制是顶起距离,顶起距离直接取决于管道与土壤之间的摩擦力。因此,就经济性和施工速度而言,减少管子与土壤之间的摩擦是至关重要的问题。在顶管过程中,为了减少管与土壤之间的摩擦,采用了膨润土注入法。在本文中,准备了一种新的实验室测试装置来模拟顶管。该测试装置的主要目的是发现膨润土压力对润滑效率的影响,目前尚未在文献中阐明。为了验证测试方法,在一些实际项目中将实验室测试的结果与顶管与土壤之间的摩擦力的测量结果进行了比较。将这些测量结果与在不同项目中进行的三个不同现场测量获得的摩擦系数值进行比较。根据结果​​可知,即使在非常低的压力下也通过连续注入膨润土,可以在膨润土浆料与混凝土管之间形成界面,该膨润土界面能够将摩擦系数大幅降低至约10%。砂混凝土管界面的摩擦系数。但是,如果不连续进行注入,则通过膨润土浆液的注入将摩擦系数降低到不进行膨润土注入的情况下的一半。 (C)2016年美国土木工程师学会。

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