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A Study on Efficient Deconstruction of Supporters with Response Ratio

응답비를 고려한 효율적인 버팀보 해체방안에 관한연구

  • 최정열 (동양대학교 건설공학과) ;
  • 박상욱 ((주)동해종합기술공사) ;
  • 정지승 (동양대학교 건설공학과)
  • Received : 2022.06.10
  • Accepted : 2022.08.18
  • Published : 2022.09.30

Abstract

As the recent structure construction is constructed as a large-scale and deep underground excavation in close proximity to the building, the installation of retaining wall and supporters (Struts) has become complicated, and the number of supporters to avoid interference of the structural slab has increased. This construction process becomes a factor that causes an increase in construction joints of a structure, leakage and an increase in wall cracks. In addition, this reduced the durability and workability of the structure and led to an increase in the construction period. This study planned to dismantle the two struts simultaneously as a plan to reduce the construction joints, and corrected the earth pressure by assuming the reaction force value by the initial earth pressure and the measured data as the response ratio. After recalculating the corrected earth pressure through the iterative trial method, it was verified by numerical analysis that simultaneous disassembly of the two struts was possible. As a result of numerical analysis applying the final corrected earth pressure, the measured value for the design reaction force was found to be up to 197%. It was analyzed that this was due to the effect of grouting on the ground and some underestimation of the ground characteristics during design. Based on the result of calculating the corrected earth pressure in consideration of the response ratio performed in this study, it was proved analytically that the improvement of the brace dismantling process is possible. In addition, it was considered that the overall construction period could be shortened by reducing cracks due to leakage and improving workability by reducing construction joints. However, to apply the proposed method of this study, it is judged that sufficient estimations are necessary as there are differences in ground conditions, temporary facilities, and reinforcement methods for each site.

최근의 구조물공사는 건물과 근접하여 대규모, 대심도 지하굴착 공사로 흙막이벽과 버팀보의 설치가 복잡해지고, 구조물 슬래브의 간섭을 피하기 위한 버팀보의 단수가 많아졌다. 이러한 시공공정은 구조물의 시공이음 개소의 증가와 누수 및 벽체균열 증가를 유발하는 요인이 되어 구조물 전체의 내구성과 시공성 저하 및 공사기간의 증대로 이어졌다. 본 연구는 시공이음 개소를 축소하기 위한 방안으로서 버팀보 2단을 동시에 해체하는 것을 계획하고, 이를초기가정토압에 의한 반력 값과 현장의 계측치를 응답비로 가정하여 토압을 보정하였다. 반복시산법을 통해 보정토압을 재 산정한 후, 버팀보 2단 동시해체가 가능함을 수치해석으로 검증하였다. 최종 보정 토압을 적용한 수치해석결과, 설계반력에 대한 계측 값이 최대 197%로 나타났다. 이는 지반에 시행한 그라우팅의 효과와 설계 시 지반 특성치를 다소 과소평가한 데에서 기인된 것으로 분석되었다. 본 연구에서 수행한 응답비를 고려한 보정토압 산정결과를 바탕으로 버팀보 해체공정의 개선이 가능함을 해석적으로 입증하였다. 또한 이를 바탕으로 시공이음 축소로 누수에 의한 균열 감소와 시공성도 개선되어 전체적인 공기의 단축도 가능할 것으로 검토되었다. 그러나 현장마다 지반여건과 가시설 및 보강공법 등의 차이가 있어 이를 적용하기 위해서는 충분한 검토와 확인이 필요할 것으로 판단된다.

Keywords

References

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