• 제목/요약/키워드: safe bearing capacities

검색결과 3건 처리시간 0.017초

Geotechnical field investigation on giresun hazelnut licenced warehause and spot exchange

  • Angin, Zekai
    • Geomechanics and Engineering
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    • 제10권4호
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    • pp.547-563
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    • 2016
  • This paper describes a geotechnical field investigation in Giresun hazelnut licenced warehause and spot exchange during twelve months to determine the soil profile and static project applicability. It is also aimed to determine the superstructure loads and evaluate the relevance of foundation filling materials of the main, laboratory, package and admin buildings. The main building has $88.50{\times}63.20(5593.2)m^2$ site area. It has a big raft foundation. Eleven geotechnical reports were prepared between 2 December 2014 and 25 May 2015. Maximum settlements and safe bearing capacities were calculated to decide to be able to proceed to the next step. Also, the detail observations and evaluations were presented from October 2014 to December 2014. It has been seen that the foundation is designed as a single foundation one. But, in the light of observations, it has been evaluated that the foundation project for package building is not adequate, and after these excavations it must be revised as a raft foundation. The thickness of foundation and structural details should be defined/drawn after analyzing the details by using a special software. Construction joints should be designed between different buildings interfaces to avoid damages and cracks with in different settlements. The environmental drainage must be projected and applied to avoid the probable damage of surface waters on foundations.

Coordinated supporting method of gob-side entry retaining in coal mines and a case study with hard roof

  • Liu, X.S.;Ning, J.G.;Tan, Y.L.;Xu, Q.;Fan, D.Y.
    • Geomechanics and Engineering
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    • 제15권6호
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    • pp.1173-1182
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    • 2018
  • The coal wall, gob-side backfill, and gangues in goaf, constitute the support system for Gob-side entry retaining (GER) in coal mines. Reasonably allocating and utilizing their bearing capacities are key scientific and technical issues for the safety and economic benefits of the GER technology. At first, a mechanical model of GER was established and a governing equation for coordinated bearing of the coal-backfill-gangue support system was derived to reveal the coordinated bearing mechanism. Then, considering the bearing characteristics of the coal wall, gob-side backfill and gangues in goaf, their quantitative design methods were proposed, respectively. Next, taking the No. 2201 haulage roadway serving the No. 7 coal seam in Jiangjiawan Mine, China, as an example, the design calculations showed that the strains of both the coal wall and gob-side backfill were larger than their allowable strains and the rotational angle of the lateral main roof was larger than its allowable rotational angle. Finally, flexible-rigid composite supporting technology and roof cutting technology were designed and used. In situ investigations showed that the deformation and failure of surrounding rocks were well controlled and both the coal wall and gob-side backfill remained stable. Taking the coal wall, gob-side backfill and gangues in goaf as a whole system, this research takes full consideration of their bearing properties and provides a quantitative basis for design of the support system.

관입말뚝에 대한 연직재하시험시 항복하중의 판정법 (Evaluation of Yield Load in Pile Load Tests on Driven Piles)

  • 홍원표;심기석
    • 한국지반공학회지:지반
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    • 제5권1호
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    • pp.7-18
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    • 1989
  • 암반에 지지된 선단지지맡뚝에 대한 연직재하시험시, 극한하중에 이르기까지 재하를 실시하는 것은 일반적으로 불가능하다. 이러한 경우 말뚝재하시험결과로부터 설계하중을 결정하기 위하여 봉복 윤중의 개념이 도입되어 오고 있다. 그러나, 이 강복초중을 결정하기가 용이하지 않은 경우가 많다. 본 논문에서는 우리나라 서해안과 남해안 지대 6개 현장에서 실시된 말뚝재하시험결과를 검토분 석하여 항복하중을 쉽게 결정할 수 있는 새로운 방법을 제안하였다. 이 방법에서 강복하대은 말뚝의 침하량을 대수눈금으로, 하중을 정규눈금으로 한 반대수응지상에 정리된 하중과 침하량 체선(P- log영상의 변곡점으로 정의되었다. 이 방법에 의한 강복연동보다 약간 많은 하중까지 재하시험을실 기하므로써, 말뚝재하시험의 비용과 시간을 절약할 수 있을 뿐만 아니라 안전한 작업조건도 마련할 수 있다. 이 강복하중은 하중과 침하량 거동의 탄성한계를 규정짓는 하중이 됨을 알 수 있었다. 25.4 mm침하시의 하중으로 결정되는 식한하동은 이 강복륜중의 1.i배에 해당하였으며 장기 및 단기 허 용하중은 각각 이 항복하중의 50%와 75%에 해당하였다. 또한 정역학적 지지력공식을 사용하여 허 용지지력을 구할 경우 안전율은 2.0~4.0으로 밝혀졌다.

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