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Non-destructive evaluation of the grouted ratio of a pipe roof support system in tunneling

机译:隧道施工中管棚支护体系注浆比的无损评价

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The pipe roof system is widely used in the New Austrian Tunneling Method (NATM) as the main support system. Thus, the integrity of the pipe roof system influences the tunnel stability. The purpose of this study is to evaluate the grouted ratio of a pipe roof system using a non-destructive method in the laboratory and in the field. In the laboratory tests, four specimens embedded in soils and five non-embedded specimens are prepared with different grouted ratios of 0%, 25%, 50%, 75%, and 100%. The steel pipes are 6 m in length, 60.5 mm in external diameter, and 3.8 mm in thickness. Field tests are conducted with two fully grouted pipes with dimensions of 12 m in length, 60.5 mm in external diameter, and 3.8 mm in thickness. The reflection method of guided waves, which are generated by a hammer impact and are measured using an acoustic emission sensor, is used for the non-destructive testing. Experimental studies demonstrate that the group velocities and the main frequencies of the guided waves decrease as the grouted ratio increases for embedded and non-embedded specimen in soils. The variation of the main frequency, however, is more significant than the variation of the group velocity. In addition, the group velocities and main frequencies of the field specimens are lower than those of the embedded specimens. This study demonstrates that the variations of the group velocity and main frequency may be used effectively to estimate the grout ratio of a pipe roof system in tunneling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:管顶系统在新奥地利隧道法(NATM)中被广泛用作主要支撑系统。因此,管顶系统的完整性影响隧道的稳定性。这项研究的目的是在实验室和现场使​​用非破坏性方法评估管棚系统的注浆率。在实验室测试中,准备了四个埋在土壤中的标本和五个非嵌入式标本,其灌浆比分别为0%,25%,50%,75%和100%。钢管的长度为6 m,外径为60.5 mm,厚度为3.8 mm。现场测试是使用两个完全灌浆的管道进行的,管道的长度为12 m,外径为60.5 mm,厚度为3.8 mm。通过锤击产生并使用声发射传感器测量的导波的反射方法用于无损检测。实验研究表明,对于埋入式和非埋入式标本,随着灌浆比的增加,导波的群速度和主频率会降低。但是,主频率的变化比群速度的变化更重要。此外,野外标本的群速度和主频率要低于埋入标本的群速度和主频。这项研究表明,群速度和主频率的变化可以有效地用于估算隧道中管棚系统的灌浆比。 (C)2016 Elsevier Ltd.保留所有权利。

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