• 제목/요약/키워드: Environmental capacity

검색결과 3,944건 처리시간 0.062초

현장 축소모형 말뚝 시험을 이용한 선단지지력 예측 (Evaluation of Point Bearing Capacity using Field Model Pile Test)

  • 이창호;이우진;정훈준;한신인
    • 한국지반환경공학회 논문집
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    • 제6권3호
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    • pp.47-54
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    • 2005
  • 현재까지 많은 경우 아직도 실무에서의 말뚝 설계는 주로 경험적 지지력공식만을 이용하고 있다. 시공 후 말뚝의 지지력 확인은 품질관리 차원에서 실시하는 동적시험 및 정적시험 등을 통하여 가능하나 이는 시공 중 또는 시공 후에만 가능하다. 지반 조사단계에서 간단한 시험을 통하여 각 지층별로 말뚝의 선단지지력을 예측할 수 있다면 경험식이나 정적공식에 의한 예측보다 신뢰성 있는 말뚝의 설계가 가능할 것이다. 본 연구에서는 지반조사 단계에서 실시 가능한 간단한 막대형 축소모형말뚝에 대한 동적시험으로부터 실제 말뚝 지지층의 선단지지력 예측 시험법을 제시하고 정재하시험과의 비교를 통하여 예측된 선단지지력을 검증하였다. 시험 결과 축소모형말뚝시험과 정재하시험을 통해 예측된 단위극한선단지지력은 유사한 값을 보였으며, N값에 의해 예측된 단위극한선단지지력은 현장시험에 의해 측정된 단위선단극한지지력의 약 50%정도로 N값에 의한 지지력의 예측은 매우 보수적인 설계로 비합리적이며 비경제적인 말뚝설계가 됨을 알 수 있었다.

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방치기간에 따른 PBD의 통수능 효과 분석 (An Analysis of the Effect of PBD Discharge Capacity to Leave Period)

  • 이기용;박민철;정상국;이송
    • 한국지반환경공학회 논문집
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    • 제12권10호
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    • pp.39-49
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    • 2011
  • 최근 연약지반에서는 공사기간 중에 압밀에 의한 침하량이 빠르게 일어날 수 있도록 압밀시간을 단축시키는 압밀촉진공법 중 하나인 PBD공법이 적용되고 있다. 이는 시공의 용이성과 경제성을 지닌 압밀촉진 공법 중 하나이다. PBD는 통수능력이 연약층의 두께에 비례하여 영향을 크게 받는 성질이 있으며, 배수재 타설 방법과 관련하여 배수재 타입 시 사용되는 맨드럴, 타입기기 및 방식에 의한 주변지반의 교란영향으로 배수성능이 저하되는 등 문제점이 있다. 또한 지반조건, 시공조건, 토질특성에 따라 통수능의 편차가 크게 나타나며 PBD타설 후 강우나 성토재료 수급의 불안정 등 기타 현장여건에 따라 성토 재하중을 바로 실시하지 못해 수개월 동안 방치에 따른 배수재 통수능의 문제점 및 분석이 미흡한 실정이다. 따라서 본 연구에서는 방치기간에 따른 PBD 통수능의 영향인자를 분석하기 위한 복합 통수능 시험을 실시하여 지반개량 및 통수능 평가를 하였다. 원통형 실린더에 배수재를 고정한 후에 교반한 시료를 투기한 후 0day, 30day, 60day, 90day 방치시킨 후에 가압장치를 사용하여 30, 70, 120kPa의 하중을 가해 실험을 수행하였다. 실험결과, PBD 타설 후 방치기간이 길어질수록 통수능이 감소하는 것을 확인할 수 있었다. 이는 장기간 방치에 따른 PBD필터의 흡습에 기인된 크리프 변형으로 통수단면의 감소가 원인이라고 판단할 수 있다.

Yield penetration in seismically loaded anchorages: effects on member deformation capacity

  • Tastani, S.P.;Pantazopoulou, S.J.
    • Earthquakes and Structures
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    • 제5권5호
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    • pp.527-552
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    • 2013
  • Development of flexural yielding and large rotation ductilities in the plastic hinge zones of frame members is synonymous with the spread of bar reinforcement yielding into the supporting anchorage. Yield penetration where it occurs, destroys interfacial bond between bar and concrete and reduces the strain development capacity of the reinforcement. This affects the plastic rotation capacity of the member by increasing the contribution of bar pullout. A side effect is increased strains in the compression zone within the plastic hinge region, which may be critical in displacement-based detailing procedures that are linked to concrete strains (e.g. in structural walls). To quantify the effects of yield penetration from first principles, closed form solutions of the field equations of bond over the anchorage are derived, considering bond plastification, cover debonding after bar yielding and spread of inelasticity in the anchorage. Strain development capacity is shown to be a totally different entity from stress development capacity and, in the framework of performance based design, bar slip and the length of debonding are calculated as functions of the bar strain at the loaded-end, to be used in calculations of pullout rotation at monolithic member connections. Analytical results are explored parametrically to lead to design charts for practical use of the paper's findings but also to identify the implications of the phenomena studied on the detailing requirements in the plastic hinge regions of flexural members including post-earthquake retrofits.

연약지반상 팽이기초 적용에 따른 지지특성 (The Bearing Capacity of Top Base Foundations in Soft Ground)

  • 김찬국;김학문
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.401-414
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    • 2010
  • Top Base Foundation(TBF) is a stabilization method for light weight structures particularly in the soft ground. It is widely used for the increment of bearing capacity and restraining settlement of foundations when the bearing capacity of ground is not enough. However, when the design values from exiting Japanese standard are compared with the observation values from the field measurement, the bearing capacity of exiting standard estimated smaller For this reason, it is necessary to establish more reasonable prediction technique considering to understand the behavior of TBF in soft ground. In this study, 1/5 scale model tests were performed in the laboratory. Also, full scale tests were carried out in order to investigate the behavior of TBF with various shapes. In addition, about 100 sites measurement data were evaluated to investigate the behavior of TBF in various ground conditions. Based on the results of the model tests and field measurement data, it was possible to establish more reasonable the bearing capacity equation of TBF considering various N-value of soil, the effect of underground water and failure shapes.

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군쇄석다짐말뚝의 지지력 특성에 관한 연구 (A Study on Bearing Capacity Characteristics of Group Crushed-Stone Compaction Piles)

  • 황근배;이민희;신현철;최용규
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.705-712
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    • 2005
  • Among soft ground treatment methods with granular soil used in domestic, the sand compaction pile method has been utilized greatly, but, as a result of exhaustion of sand and increase of unit cost, a necessity of an alternative method is suggested. In this study, the static load tests for group crushed-stone compaction piles which were constructed at in-situ site were performed. Pile diameter was 700mm and area of loading plates were changed. The static load tests of single and group piles were performed for area replacement ratio of 20, 30 and 40%. Based on test results, bearing capacity of group crushed-stone compaction pile were estimated. The more both single pile and group pile increase, the more yield bearing capacity tended to increase. Also, the yield bearing capacity of a group pile is about 50% less than the yield bearing capacity of a single pile. If the ground reinforced with the crushed-stone compaction pile is replacement ratio of $20{\sim}40%$, RIYB of both single pile and group pile increases qualitative tendency of linear more than original ground

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Reserve capacity of fatigue damaged internally ring stiffened tubular joints

  • Thandavamoorthy, T.S.
    • Steel and Composite Structures
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    • 제4권2호
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    • pp.149-167
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    • 2004
  • Offshore platforms have to serve in harsh environments and hence are likely to be damaged due to wave induced fatigue and environmental corrosion. Welded tubular joints in offshore platforms are most vulnerable to fatigue damage. Such damages endanger the integrity of the structure. Therefore it is all the more essential to assess the capacity of damaged structure from the point of view of its safety. Eight internally ring stiffened fatigue damaged tubular joints with nominal chord and brace diameter of 324 mm and 219 mm respectively and thickness 12 mm and 8 mm respectively were tested under axial brace compression loading to evaluate the reserve capacity of the joints. These joints had earlier been tested under fatigue loading under corrosive environments of synthetic sea water and hence they have been cracked. The extent of the damage varied from 35 to 50 per cent. One stiffened joint was also tested under axial brace tension loading. The residual strength of fatigue damaged stiffened joint tested under tension loading was observed to be less than one fourth of that tested under compression loading. It was observed in this experimental investigation that in the damaged condition, the joints possessed an in-built load-transfer mechanism. A bi-linear stress-strain model was developed in this investigation to predict the reserve capacity of the joint. This model considered the strain hardening effect. Close agreement was observed between the experimental and predicted results. The paper presents in detail the experimental investigation and the development of the analytical model to predict the reserve capacity of internally ring stiffened joints.

비점착성 지반상 팽이기초 적용에 따른 지지특성 (The Bearing Capacity Characteristics of Top Base Foundations in Cohesionless Soils)

  • 김찬국;김학문
    • 한국지반공학회논문집
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    • 제26권7호
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    • pp.135-145
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    • 2010
  • 최근까지 국내에서는 팽이기초에 관한 연구가 미흡하였고, 지반조건에 맞는 설계기준이 마련되어 있지 못하여 일본의 설계기준을 그대로 사용하고 있는 실정이다. 이로 인해 기존 팽이기초의 지지력식은 과소하게 예측되는 문제점이 있다. 따라서 본 연구에서는 실제크기의 1/5 스케일로 축소한 모형실험을 수행하였으며, 국내에서 이루어 진 100여개 현장의 재하실험 결과를 근거로 강도특성(N값), 지하수영향, 팽이기초의 파괴형상을 고려하여 보다 합리적으로 팽이기초의 지지력을 예측할 수 있는 식을 제안하였다.

Pile bearing capacity prediction in cold regions using a combination of ANN with metaheuristic algorithms

  • Zhou Jingting;Hossein Moayedi;Marieh Fatahizadeh;Narges Varamini
    • Steel and Composite Structures
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    • 제51권4호
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    • pp.417-440
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    • 2024
  • Artificial neural networks (ANN) have been the focus of several studies when it comes to evaluating the pile's bearing capacity. Nonetheless, the principal drawbacks of employing this method are the sluggish rate of convergence and the constraints of ANN in locating global minima. The current work aimed to build four ANN-based prediction models enhanced with methods from the black hole algorithm (BHA), league championship algorithm (LCA), shuffled complex evolution (SCE), and symbiotic organisms search (SOS) to estimate the carrying capacity of piles in cold climates. To provide the crucial dataset required to build the model, fifty-eight concrete pile experiments were conducted. The pile geometrical properties, internal friction angle 𝛗 shaft, internal friction angle 𝛗 tip, pile length, pile area, and vertical effective stress were established as the network inputs, and the BHA, LCA, SCE, and SOS-based ANN models were set up to provide the pile bearing capacity as the output. Following a sensitivity analysis to determine the optimal BHA, LCA, SCE, and SOS parameters and a train and test procedure to determine the optimal network architecture or the number of hidden nodes, the best prediction approach was selected. The outcomes show a good agreement between the measured bearing capabilities and the pile bearing capacities forecasted by SCE-MLP. The testing dataset's respective mean square error and coefficient of determination, which are 0.91846 and 391.1539, indicate that using the SCE-MLP approach as a practical, efficient, and highly reliable technique to forecast the pile's bearing capacity is advantageous.

말뚝형태 및 지반조건에 따른 현장타설말뚝의 수평지지력 평가 (Evaluation of Lateral Load Capacity of Drilled Shafts with Pile Shape and Soil Conditions)

  • 이준환;백규호;김대홍;황성욱;김민기
    • 한국지반공학회논문집
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    • 제23권2호
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    • pp.61-69
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    • 2007
  • 본 연구에서는 현장타설말뚝을 대상으로 지반조건 및 말뚝형태에 따른 수평지지력과 수평거동에 대하여 실험적 분석을 실시하였다. 이를 위해 가압토조실험을 수행하였으며 상대밀도와 지반응력의 변화를 고려하여 원통형과 테이퍼형 말뚝에 대해 재하시험을 수행하였다. 토조실험결과, 수직응력과 수평응력은 모두 말뚝의 수평거동 및 극한수평 지지력에 영향을 나타내는 것으로 관찰되고 있으나, 수평응력의 영향이 보다 더 크게 작용하고 있음을 알 수 있다. 상대밀도 또한 수평거동 및 지지력에 상당한 영향을 미치고 있는 것으로 나타나고 있었다. 수평거동에 대한 말뚝형태의 영향은 지반상태에 따라 다소간의 차이가 보이고 있으나, 전반적으로 지반응렬이나 상대밀도와 같은 지반특성치에 의한 영향에 비해서는 작게 나타나고 있었다. 기존 예측식을 이용한 비교분석 결과, 기존의 예측식에 의해 산정된 결과는 실측된 결과와 상당한 차이를 보이고 있었으며, 이는 지지력 산정시 수평응력의 변화량이 고려되어 있지 않았기 때문임을 알 수 있었다.

동북아시아 환경협력 촉진에 관한 정책연구 (A Policy-study on the Promotion of Environmental Cooperation in Northeastern Asia)

  • 김성수
    • 한국환경과학회지
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    • 제15권2호
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    • pp.107-119
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    • 2006
  • This research reviews the current state of the environmental problems in Northeastern Asia and emphasizes the necessity of building a sustainable regime of multilateral environmental cooperation. The Process and problems of multilateral environmental cooperation system are briefly discussed. This research stresses the importance of contractual environment that enhances the level of enforcement of international environmental agreement. Within the contractual environment, international regimes can support the parties of conference to build up administrative capacity and scientific technology to cope with transborder pollution problems. Some policy proposals such as cooperation among central governments and local governments, and the participation of NGOs are suggested.