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Ilam tunnels inspection, maintenance, and rehabilitation: A case study

机译:ilam隧道检查,维护和康复:案例研究

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Due to the complexities of design and technical issues of construction, tunnels are considered to be enormous financial investments. Therefore, rehabilitation with the purpose of providing a higher life span is essential. Underground facilities usually have a higher service period than expected when designed, which often requires regular inspection. This study aims at providing a guideline for future tunnel investigations and maintenance. Offered solutions with regard to different cases of an anomaly for three available tunnels in the Ilam province have been introduced. These currently servicing tunnels are usually constructed as unlined rock tunnels excavated, using controlled blasting. Masonry, reinforced concrete, and shotcrete lining systems have been used in the collapsible zones. These infrastructures as part of the transportation network of the Ilam province in Iran are located in one of the most active seismic, as well as high rainfall zones in the Middle East. Aging and degradation of material alongside recent earthquake activities can lead to massive destruction of the tunnels if regular maintenance work doesn't take place. All tunnels were evaluated using advanced numerical analysis methods. Stress and displacement values in the rock mass and different lining systems have been investigated using various analytic methods and the rehabilitation programs for tunnels were developed and introduced. The high risk of failure in the tunnel in the Payambar tunnel is predicted in cases of a seismic event affected by the inclination of rock layers. Methods of rehabilitation have been proposed to improve stability and decrease deformations. The formation of icicles in the Azadi tunnel during the cold seasons have been solved through employing a temporary water drainage system. Unlined tunnel sections were planned to be covered with reinforced concrete lining and both cast-in-place and precast segmental lining systems have been proposed. In the Shabab tunnels an extremely disturbed, 2-3 m deep rock layer was found between the masonry lining and the top of the tunnels, due to its controlled blasting excavation technique. Filling the voids using a pressure grouting technique was discovered in order to improve the tunnel stability during an earthquake event.
机译:由于施工的设计和技术问题的复杂性,隧道被认为是巨大的金融投资。因此,具有提供更高寿命的康复至关重要。在设计时,地下设施通常具有比预期更高的服务期,这通常需要定期检查。本研究旨在为未来的隧道调查和维护提供指导。已经介绍了ILAM省内三种可用隧道异常的不同病例的解决方案。这些目前的维修隧道通常由挖掘出来的非线岩石隧道,使用受控爆破。可折叠区域使用砌体,钢筋混凝土和喷射衬里系统。这些基础设施作为伊朗伊兰省伊兰省的交通网络的一部分,位于最活跃的地震之一,以及中东的高降雨区。如果常规维护工作未发生,近期地震活动的衰老和降解材料较近的地震活动可能导致隧道大规模破坏。使用先进的数值分析方法评估所有隧道。使用各种分析方法研究了岩体质量和不同衬里系统中的应力和位移值,并开发并介绍了隧道的康复计划。在受岩层倾斜影响的地震事件的情况下,预测了船舶隧道中隧道中失效的高风险。已经提出了康复方法来提高稳定性和降低变形。通过采用临时排水系统,解决了冷季的Azadi隧道中的冰柱形成。计划用钢筋混凝土衬砌覆盖未衬里隧道部分,并提出了就地铸造和预制的节段衬里系统。在Shabab隧道中,由于其受控的爆破挖掘技术,在砌体衬里和隧道顶部之间发现了2-3米深层岩层。发现使用压力灌浆技术填充空隙,以便在地震事件期间提高隧道稳定性。

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