• 제목/요약/키워드: Maximum building settlement

검색결과 19건 처리시간 0.029초

건물 침하방지를 위한 Underpinning 사례연구 (A Case Study of Underpinning for Building Settlement Reduction)

  • 박병기;이인모
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 1993년도 가을 학술발표회 논문집
    • /
    • pp.57-62
    • /
    • 1993
  • Settlements of maximum 23cm have occurred in and Apartment building consturcted on a fill layer with pile foundations. The main reason of the settlements was due to the negative skin friction applied to the pile, and settlement of adjacent ground since most pile tips are acted as a floating foundation founded on the stratum where the SPT N value was mostly less than 30. To underpin this building, the Jumbo Special Pile grouging was adopted, and instrumented data showed little differential settlement after the JSP underpinning.

  • PDF

침하건물 복원을 위한 정밀 다점 주입공법의 적용 (Application of D-ROG technology for restoration of the subsided building)

  • 이주형;고효석;홍진표;박재현;조삼덕
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2009년도 춘계 학술발표회
    • /
    • pp.405-410
    • /
    • 2009
  • This paper presents a case study that achieved both of serviceability and safety of the building through soil reinforcement and restoration around foundations subjected to serious differential settlement using D-ROG method. The building which has one basement floor and three ground floors is founded on soft ground and differential settlement occurred to the maximum extent of 678mm. The foundation type of the building is a independent mat foundation. Soil profiles consist of landfill layer, alluvial layer, weathered rock, and soft rock. The bearing layer consisting of gravel and weathered rock is located 16.0~17.0m below the bottom of the building. As a result of soil reinforcement and restoration, the recovery ratio of more than 90% can be attained with the maximum set-up of 657mm.

  • PDF

터널굴착에 따른 인접건물 손상위험도 평가시스템 (Tunneling-induced Building Damage Risk Assessment System)

  • Park, Yong-Won;Yoon, Hyo-Seok
    • 한국지반공학회논문집
    • /
    • 제18권3호
    • /
    • pp.51-59
    • /
    • 2002
  • 이 논문에서는 터널막장 주변지반의 3차원적 지반거동을 고려한 인접건물의 손상위험도 평가시스템 개발에 관한 내용을 다루었다 이 시스템은 크게 건물 및 지반정보 모듈, 계측데이터 모듈, 침하평가모듈 및 건물 손상평가모듈로 구성되어 있다. 지반 침하평가 및 건물 손상평가 모듈은 이 시스템의 핵심 모듈로서 Attewell 등(1982)이 제안한 침하평가 모형을 토대로 터널시공으로 인한 침하량 및 범위를 정량적으로 평가한 후, 터널노선에 인접한 건물의 손상위험도를 Mair 등(1996)이 제시한 건물손상 평가방법을 근거로 평가한다. 터널굴착으로 인한 지반거동 평가에서 가장 큰 영향인자인 지반손실률($V_{s}$)또는 최대침하량($w_{max}$)및 변곡점(i)의 위치는 계측자료, 수치 해석 결과 그리고 각종 경험식을 사용하여 자동적으로 계산되도록 구축하였다. 한편, 건물 손상평가는 터널막장의 위치를 변화시키며 임의 구간의 인접건물에 대한 손상위험도 평가가 수행될 수 있는 기능을 부여하였다. 개발된 시스템 검증은 Boscardin과 Cording(1989)이 워싱턴 DC의 매트로 터널에 인접한 2층 조적식 건물의 계측사례를 적용하여 수행하였다.

Influence characteristics of isolation piles on deformation of existing shallow foundation buildings under deep excavation

  • Liu, Xinrong;Liu, Peng;Zhou, Xiaohan;Wang, Linfeng;Zhong, Zuliang;Lou, Xihui;Chen, Tao;Zhang, Jilu
    • Geomechanics and Engineering
    • /
    • 제31권1호
    • /
    • pp.1-14
    • /
    • 2022
  • Urban deep excavation will affect greatly on the deformation of adjacent existing buildings, especially those with shallow foundations. Isolation piles has been widely used in engineering to control the deformation of buildings adjacent to the excavation, but its applicability is still controversial. Based on a typical engineering, numerical calculation models were established and verified through monitoring data to study the influence characteristics of isolation piles on the deformation of existing shallow foundation buildings. Results reveal that adjacent buildings will increase building settlement δv and the deformation of diaphragm walls δh, while the isolation piles can effectively decrease these. The surface settlement curve is changed from "groove" type to "double groove" type. Sufficiently long isolation pile can effectively decrease δv, while short isolation piles will lead to a negative effect. When the building is within the range of the maximum settlement location P, maximum building rotation θm will increase with the pile length L and the relative position between isolation pile and building d/D increase (d is the distance between piles and diaphragm walls, D is the distance between buildings and diaphragm walls), instead, θm will decrease for buildings outside the location P, and the optimum was obtained when d/D=0.7.

Reliability assessment of EPB tunnel-related settlement

  • Goh, Anthony T.C.;Hefney, A.M.
    • Geomechanics and Engineering
    • /
    • 제2권1호
    • /
    • pp.57-69
    • /
    • 2010
  • A major consideration in the design of tunnels in urban areas is the prediction of the ground movements and surface settlements associated with the tunneling operations. Excessive ground movements can damage adjacent building and utilities. In this paper, a neural network model is used to predict the maximum surface settlement, based on instrumented results from three separate EPB tunneling projects in Singapore. This paper demonstrates that by coupling the trained neural network model to a spreadsheet optimization technique, the reliability assessment of the settlement serviceability limit state can be carried out using the first-order reliability method. With this method, it is possible to carry out sensitivity studies to examine the effect of the level of uncertainty of each parameter uncertainty on the probability that the serviceability limit state has been exceeded.

Comparison of dynamic behavior of shallow foundations based on pile and geosynthetic materials in fine-grained clayey soils

  • Shariati, Mahdi;Azar, Sadaf Mahmoudi;Arjomand, Mohammad-Ali;Tehrani, Hesam Salmani;Daei, Mojtaba;Safa, Maryam
    • Geomechanics and Engineering
    • /
    • 제19권6호
    • /
    • pp.473-484
    • /
    • 2019
  • In this paper, the geotechnical report of the Northern Fereshteh area in Tabriz is used and the characteristics of shallow foundation of a single pile and compared pile group and geogrid in terms of the settlement of a building foundation on clayey soil. Additionally, impacts of existing variables such as the number of geogrid layers, the length of the pile, and the depth of groundwater level affected by the dynamic load caused by the Taiwan Jiji earthquake via numerical analysis using PLAXIS software are examined. The results of fifty-four models indicated that the construction of a pile group with a diameter of 1 meter and a length of 14 meters significantly diminished the consolidation settlement of the soil in the Northern Fereshteh area, where the settlement value has been triggered by the load inflicted by earthquake. Moreover, the construction of four layers of geogrid at intervals of one meter led to a significant decrease in the settlement. Finally, after reaching a maximum depth, it had no reducing effects on the foundation settlement.

도심지 터널 굴착에 따른 인접구조물의 손상평가에 관한 연구 (1) -지상 건물의 기하학적 및 위치적 특성을 중심으로- (A Study on the Safety Assessment of Adjacent Structures Caused by Tunnel Excavation in Urban Area -Focused on the Characteristics of Geometries and Locations for Nearby Building-)

  • 김창용;문현구;배규진
    • 한국지반공학회논문집
    • /
    • 제15권4호
    • /
    • pp.19-42
    • /
    • 1999
  • 도심지에 터널을 건설할 때는 설계ㆍ시공에 있어서 중요한 몇몇 고려 사항이 있다. 첫째는 특정한 지반조건과 시공조건에 대해서 지반변위의 크기와 분포를 예측하는 것이다. 두 번째는 예측된 지반거동에 상응하는 인접구조물들의 잠재적 손상을 평가하는 것이고, 셋째는 잠재적 손상이 예견되는 구조물에 대한 적절한 보강대책을 선정하는 것이다. 본 연구는 주로 첫 번째와 두 번째 단계의 문제를 해결하는데 주안점을 두고 있고 특히, 지상에 존재하는 건물의 기하학적 특성과 위치적 특성을 고려한 손상평가 방법에 연구의 초점을 두고 있다. 이를 위해서 도심지 터널 굴착 시 발생할 수 있는 지표침하 거동 예측 결과를 기반으로 예측할 수 있는 지상 건물의 손상평가 인자들(뒤틈각(angular distortion), 처짐비(deflection ratio), 건물의 최대침하량, 부등침하량, 수평변형률)을 도입하였고, 기존의 보수적인 해석 방법을 좀 더 발전시키기 위해서 지상에 존재하는 건물 벽체 각각에 대해서 분석할 수 있도록 이러한 인자들을 3차원적으로 표현할 수 있는 프로그램을 개발하였다. 또한, 건물의 기하학적, 위치적 특성 등의 변화에 대한 손상평가 인자들의 변화를 관찰하고, 실무에서 이러한 평가 결과를 활용할 수 있도록 가이드를 제시하고자 하였다. 한편, 국외의 몇몇 인접 건물에 대한 손상평가 사례와 본 연구에서 제안하고 있는 방법에 대한 비교 연구를 수행하여 현장에서 이를 활용할 수 있는 방법을 모색하였다.

  • PDF

Deformation characteristics and stability analysis of semi-covered deep excavations with existing buildings

  • Linfeng Wang;Xiaohan Zhou;Tao Chen;Xinrong Liu;Peng Liu;Shaoming Wu;Feng Chen;Bin Xu
    • Geomechanics and Engineering
    • /
    • 제34권1호
    • /
    • pp.87-102
    • /
    • 2023
  • The cover plate and the building loads often make the semi-covered deep excavations with existing buildings bearing asymmetric load, presenting different deformation characteristics with normal excavations, which is not absolutely clear in current studies. Based on a typical engineering, the building storeys, the basement storeys, the pile length, the existence of the cover plate (CP) and the depth of the diaphragm walls (DW) were selected as variables, and 44 groups of simulation were designed to study the influence of existing buildings and the semi-covered supporting system on the deformation of the excavations. The results showed that the maximum lateral displacement of DW, δhm, and the depth of δhm, Hm, are affected seriously by the building storeys and the basement storeys. Asymmetric structures and loading lead to certain lateral displacement of DW at the beginning of excavation, resulting in different relationships between δhm and excavation depth, H. The maximum surface settlement outside the pit, δvm, increases significantly and the location, dm, moves away from the pit with the building storeys increases. δvm has a quadratic correlation with H due to the existing buildings. CP and building load will affect the style of the lateral displacement curve of DW seriously in different aspects.

Time dependent behavior of piled raft foundation in clayey soil

  • Fattah, Mohammed Y.;Al-Mosawi, Mosa J.;Al-Zayadi, Abbas A.O.
    • Geomechanics and Engineering
    • /
    • 제5권1호
    • /
    • pp.17-36
    • /
    • 2013
  • Settlement of the piled raft can be estimated even after years of completing the construction of any structure over the foundation. This study is devoted to carry out numerical analysis by the finite element method of the consolidation settlement of piled rafts over clayey soils and detecting the dissipation of excess pore water pressure and its effect on bearing capacity of piled raft foundations. The ABAQUS computer program is used as a finite element tool and the soil is represented by the modified Drucker-Prager/cap model. Five different configurations of pile groups are simulated in the finite element analysis. It was found that the settlement beneath the piled raft foundation resulted from the dissipation of excess pore water pressure considerably affects the final settlement of the foundation, and enough attention should be paid to settlement variation with time. The settlement behavior of unpiled raft shows bowl shaped settlement profile with maximum at the center. The degree of curvature of the raft under vertical load increases with the decrease of the raft thickness. For the same vertical load, the differential settlement of raft of ($10{\times}10m$) size decreases by more than 90% when the raft thickness increased from 0.75 m to 1.5 m. The average load carried by piles depends on the number of piles in the group. The groups of ($2{\times}1$, $3{\times}1$, $2{\times}2$, $3{\times}2$, and $3{\times}3$) piles were found to carry about 24%, 32%, 42%, 58%, and 79% of the total vertical load. The distribution of load between piles becomes more uniform with the increase of raft thickness.

Piled Raft 기초 적용사례 분석 (A Case Study of the Piled Raft Foundation)

  • 김홍택;강인규;최효범;박시삼
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2002년도 봄 학술발표회 논문집
    • /
    • pp.597-604
    • /
    • 2002
  • The piled raft foundation Is an innovative design concept to reduce both the maximum settlement and differential settlements caused by concentrated building loads and load eccentricities, and also to reduce the bending moments of the raft. The main concern given in the design of piled raft foundations is proper judgments both of relative proportions of loads carried by the raft and piles, and of the effect of the pile support on the maximum and differential settlements In the present study, the piled raft foundation used in the foundation system of Richensia Building at Youido, Seoul is introduced and is carried out analyzing the results of field tests such as plate load tests, large plate load test, pile load test, and piled raft load test.

  • PDF