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발파시 터널 숏크리트의 최대입자속도와 부착상태평가 분석
홍의준,장석부,송기일,조계춘,Hong, Eui-Joon,Chang, Seok-Bue,Song, Ki-Il,Cho, Gye-Chun 한국터널지하공간학회 2010 한국터널지하공간학회논문집 Vol.12 No.3
숏크리트의 부착강도는 천정부의 낙반방지와 발파진동에 의한 숏크리트 탈락방지에 중요한 역할을 하는 요소이다. 따라서, 숏크리트의 부착상태평가는 품질관리의 주요 요소가 될 수 있다. 본 연구는 터널 내 발파에 의하여 숏크리트에 미치는 최대 입자속도를 예측하고, 발파 진동에 의한 숏크리트의 부착상태를 평가하기 위하여 수행되었다. 이를 위하여 현재 시공중인 터널현장에서 피난연락갱의 발파시 본선부 및 서비스 터널의 발파진동을 측정하였으며 충격반향시험을 수행하여 숏크리트-암반의 부착상태를 평가하였다. 충격반향시험 신호분석을 위하여 시간-주파수 영역 해석 기법을 도입하였으며 평가결과, 국내에서 일반적으로 시행되는 발파조건에서는 숏크리트와 암반의 부착력 손실(들뜸 현상)은 거의 발견되지 않았으며, 숏크리트 부착력 손상 가능성은 낮은 것으로 판단되었다. Bonding strength of shotcrete is a significant influential factor which plays the role of collapse prevention of tunnel crown and of debonding prevention of shotcrete induced by the blasting vibration. Thus, the evaluation of the shotcrete bonding state is one of the core components for shotcrete quality control. In this study, the peak particle velocities induced by blasting were measured on the shotcrete in a tunnel construction site and its effect on the bonding state of shotcrete is investigated. Drilling and blasting technique was used for the excavation of intersection tunnel connecting the main tunnel with the service tunnel. Blast-induced vibrations were monitored at some points of the main tunnel and the service tunnel. The shotcrete bonding state was evaluated by using impact-echo test coupled with the time-frequency domain analysis which is called short-time Fourier transformation. Analysis results of blast-induced vibrations and the time-frequency domain impact-echo signals showed that the blasting condition applied to the excavation of intersection tunnel hardly affects on the tunnel shotcrete bonding state. The general blasting practice in Korea was evaluated to have a minor negative impact on shotcrete quality.
터널의 품질관리를 위한 숏크리트 초기강도의 현장강도 시험기술
홍의준(Hong Eui-Joon),장석부(Chang Seok-Bue),이성우(Lee Sung-Woo),김기림(Kim Ki-Lim),문상조(Moon Sang-Jo) 한국철도학회 2007 한국철도학회 학술발표대회논문집 Vol.- No.-
Generally, the strength of the field shotcrete is heavily dependent on the field mixing and spraying conditions so that it is different from the strength of the shotcrete mixed in laboratories. As a support member, the early strength of shotcrete unlike concrete as structural material is very important to the initial stabilization of the excavation face in tunnels. Therefore, the field methods to efficiently test the early strength of shotcrete have been highly required. This paper aimed to verify the pneumatic pin penetration test and the point load test for measuring the early strength of the field shotcrete. Through a series of uniaxial compression, pin penetration, and point load tests for the range of the early shotcrete strength, two equations to estimate reliably the uniaxial compressive strength by the pin penetration and the point load tests were derived. Field tests in working tunnel were carried out in order to estimate the economic efficiency. As a result, pin penetration method was proved to be the most effective method for testing the early strength of the field shotcrete.
대단면 암반터널의 안정성에 미치는 숏크리트 부착강도의 영향에 관한 연구
장석부,홍의준,문상조,Chang, Seok-Bue,Hong, Eui-Joon,Moon, Sang-Jo 한국터널지하공간학회 2005 터널기술 Vol.7 No.4
암반에 건설되는 대단면 터널에서 숏크리트의 부착강도는 암반탈락 방지와 발파진동에 의한 숏크리트 탈락방지에 매우 중요하다. 그럼에도 불구하고 숏크리트 부착강도는 압축강도에 비하여 설계 및 시공단계에서 중요한 요소로 고려되지 않았다. 따라서 본 연구의 목적은 숏크리트 부착강도가 대단면 암반 터널의 안정성에 미치는 영향을 분석하는 것이다. 먼저, Holmgren의 punch-loaded 시험조건을 모사한 수치해석 모델을 이용하여 다양한 부착강도에 대한 매개변수연구를 수행하였다. 그 결과, 숏크리트의 최대지지력은 숏크리트층과 블록간의 부착 강도와 선형 비례관계를 보임을 확인하였다. 또한, 숏크리트층과 굴착면에 부착강도를 고려하는 경우와 기존의 완전부착 조건에 대한 개별요소해석을 수행하여 숏크리트 부착강도의 영향을 검토하였다. Shotcrete adhesive strength in large section tunnels in jointed rock masses plays an important role in preventing rock block from falling and shotcrete debonding due to blasting vibration. Nevertheless, it has not been considered as a major factor such as shotcrete compressive strength in design and construction. For this reason, the purpose of this study is to analyze the effect on shotcrete adhesive strength for large-sectioned tunnels. First, the parametric study using numerical model similar to Holmgren's punch-loaded test was executed for various range of adhesive strength. It shows that the shotcrete bearing capacity is linearly proportioned to the adhesive strength between shotcrete layer and blocks. And then, distinct element analysis of a jointed rock tunnel for an adhesive strength of 1 MPa and a conventional fully-bonded condition between the shotcrete layer and the excavation face was compared in order to evaluate the effect of the shotcrete adhesive strength.