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Experimental Research on Viscosity Characteristics of Grouting Slurry in a High Ground Temperature Environment

机译:高地温度环境中灌浆浆料粘度特性的实验研究

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摘要

The grouting method is a technical means to prevent and control the thermal damage of the tunnel with high ground temperature in the underground hot water area, and the viscosity characteristic of the slurry is the key factor of grouting treatment. When grouting in high ground temperature geological conditions, the slurry inevitably has both time-varying and temperature-varying characteristics of viscosity in the process of filling high-temperature fissures and plugging geothermal water. At present, the research on the viscosity characteristics of slurry at high temperature is rarely reported in the literature. In this paper, laboratory tests were carried out to measure the time-varying viscosity of ordinary cement slurry; cement-sodium silicate slurry, widely used in engineering; and high ground temperature grouting slurry (HGTGS), independently developed by our research group, at different preheating temperatures (20, 40, 60, 80 °C). The viscosity function curves of the three kinds of slurry were obtained by function fitting method, and the viscosity variation law of slurry was analyzed. The study found that the time-varying process of viscosity of the cement-sodium silicate slurry and the HGTGS in specific temperature conditions can be divided into two stages: The slow rising period of viscosity and the rapid rising period of viscosity. Whereas, the time-varying process of viscosity of ordinary cement slurry in specific temperature conditions includes only one stage of the slow rising period of viscosity. The viscosity of ordinary cement slurry and cement-sodium silicate slurry increases with the increase of temperature, while the viscosity of the HGTGS decreases with the increase of temperature. There are corresponding viscosity time-varying equations for the three kinds of slurry in different temperature conditions. The viscosity time-varying equation of the ordinary cement slurry accords with the linear function form, and the viscosity time-varying equation of the cement-sodium silicate slurry accords with the power-law function form. The viscosity time-varying equation of the HGTGS conforms to the exponential function form. On this basis, the unified description equation of the viscosity characteristics of grouting slurry in high ground temperature and the applicability of different types of grouting materials are obtained. This study has a certain reference value and guidance for theoretical analysis, numerical simulation and engineering application of grouting in high ground temperature environment.
机译:灌浆方法是防止和控制地下热水面积高层温度的隧道热损坏的技术装置,并且浆料的粘度特性是灌浆处理的关键因素。当在高层温度地质条件下灌浆时,浆料不可避免地具有填充高温裂缝和堵塞地热水过程中粘度的时变和温度变化的特性。目前,在文献中很少报道对高温浆料粘度特性的研究。在本文中,进行了实验室测试以测量普通水泥浆料的时变粘度;水泥 - 硅酸钠浆料,广泛用于工程;和高层灌浆浆料(HGTGS),由我们的研究组独立开发,在不同预热温度(20,40,60,80℃)。通过功能配合方法获得三种浆料的粘度函数曲线,分析了浆料的粘度变异律。该研究发现,硅酸钠浆料的粘度的时变过程和特定温度条件下的HGTGS可分为两个阶段:粘度慢上升,粘度的快速上升期。然而,在特定温度条件下普通水泥浆料的粘度的时变过程仅包括粘度慢上升期的一个阶段。普通水泥浆料和水泥硅酸钠浆料的粘度随温度的增加而增加,而HGTG的粘度随温度的增加而降低。在不同温度条件下存在三种浆料的相应粘度时变等式。普通水泥浆料的粘度时变等式符合线性函数形式,以及水泥硅酸钠浆料的粘度时变等式符合动力法函数形式。 HGTGS的粘度时变形方程符合指数函数形式。在此基础上,获得高层温度灌浆浆料粘度特性的统一描述等式,以及不同类型灌浆材料的适用性。本研究具有一定的参考价值和指导,用于理论分析,数值模拟和工程在高地温度环境中灌浆的工程应用。

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