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Numerical and experimental investigation of pillar reinforcement with pressurized grouting and pre-stress

机译:加压注浆与预应力加固柱的数值与试验研究

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To prevent and/or minimize flood-induced damage in metropolitan cities like Seoul, South Korea, construction of an underground rainwater storage cavern becomes an alternative to other conventional countermeasures. In this paper, a new pillar-reinforcement method was developed to improve pillar stability that is crucial for the successful construction of the rainwater storage cavern. Three pillar reinforcing scenarios were compared numerically: (1) shotcrete installation only, (2) shotcrete installation and pillar-reinforcement with radially pressurized grouting and pre-stress, and (3) shotcrete installation and pillar-reinforcement with vertical upward pressurized grouting and pre-stress. The third pillar-reinforcement readily made the stress condition return to an elastic state showing superior performance to the other methods. In addition, two pillar widths of 800 mm and 1200 mm were considered to investigate the effects of pillar width on pillar reinforcement by carrying out a small-scale model test, in which the three pillar-reinforcement scenarios can be modeled step-by-step. The pillar width of 1200 mm resulted in smaller major principal stresses, representing better reinforcing performance than that of 800 mm. Moreover, it was shown that the pressurized grouting enhances the ground strength and more importantly lessened stress concentration in the pillar. However, applying pre-stress further increased ground strength because of the increase in internal pressure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了防止和/或最大程度减少洪水在韩国首尔等大城市造成的破坏,建造地下雨水蓄水洞室成为其他常规对策的替代选择。在本文中,开发了一种新的支柱加固方法,以提高支柱的稳定性,这对于成功建造雨水蓄水洞穴至关重要。数值比较了三种支柱加固方案:(1)仅喷射混凝土安装;(2)径向加压灌浆和预应力的喷射混凝土安装和支柱加固;(3)垂直向上加压灌浆和预应力的喷射混凝土安装和支柱加固。 -强调。第三支柱的加强使应力状态容易恢复到弹性状态,从而表现出优于其他方法的性能。另外,考虑通过进行小规模模型测试来研究两个宽度分别为800 mm和1200 mm的立柱宽度,以研究立柱宽度对立柱加固的影响,其中可以逐步建模这三个立柱加固方案。 1200 mm的立柱宽度导致较小的主应力,比800 mm的具有更好的增强性能。而且,已经表明,加压灌浆增强了地面强度,更重要的是减小了支柱中的应力集中。但是,由于内部压力的增加,施加预应力会进一步提高地面强度。 (C)2016 Elsevier Ltd.保留所有权利。

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