• 제목/요약/키워드: bearing wall

검색결과 348건 처리시간 0.025초

Strengthening techniques for masonry structures of cultural heritage according to recent Croatian provisions

  • Hadzima-Nyarko, Marijana;Ademovic, Naida;Pavic, Gordana;Sipos, Tanja Kalman
    • Earthquakes and Structures
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    • 제15권5호
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    • pp.473-485
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    • 2018
  • The buildings of architectural and cultural heritage are mostly built with stone or brick wall elements, which are connected using limestone or limestone cement mortar, without a full knowledge of the mechanical properties of masonry structures. The compatibility of heritage masonry buildings with valid technical specifications and the rules for earthquake resistance implies the need for construction work such as repairs, strengthening or reconstruction. By strengthening the masonry buildings, ductility and bearing capacity are increased to a level, which, in the case of the earthquake design, allows for some damage to happen, however the structure retains sufficient usability and bearing capacity without the possibility of collapse. Comparison between traditional and modern techniques for seismic strengthening of masonry buildings is given according to their effects, benefits and disadvantages. Recent Croatian provisions provided for heritage buildings enabling deviation of technical specifications are discussed.

광양금광상(光陽金鑛床), 고흥동광상(高興銅鑛床)의 광상생성(鑛床生成)과 암석학적(岩石學的) 연구(硏究) (Metallogenesis and Petrology of the Gwangyang Gold Deposits and Goheung Copper Deposits)

  • 박영석;신병우
    • 자원환경지질
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    • 제17권2호
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    • pp.91-100
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    • 1984
  • The Gwangyang gold deposits geologically consist of granitic gneiss, metatectic gneiss and porphyroblastic gneiss which correspond to Jirisan gneiss complex. The formations of Gyeongsang system lies unconformably on these gneisses and are intruded by diorite, porphyritic andesite and Bulgugsa granites. Goheung districts are composed of quartz schist, andesitic rock, tuff and granite. The Gwangyang gold deposits are gold bearing fissure filling veins. The vein thickness varies from 15cm to 40cm and they consist of 7-10 layers in parallel. The Goheung copper deposits are sulphide bearing quartz veln which filled the fracture in andesitic rock and biotite granite. The contact zone of these rocks is partially altered. The mineral paragenesis of the Gwangyang and Goheung districts is pyrite, arsenopyrite, pyrrhotite, chalcopyrite, sphalerite, galena, sericite, quartz and calcite. The variation trends of FMA and A'KF triangular diagrams and the differentiation index (norm, Q + Or + Ab) versus oxides diagrams is similar to the Gyeonsang basin igneous rocks. From the trace element analysis of 10 samples of country rocks, wall rocks and veins, the distribution of copper and lead contents display a correlative distribution pattern in relation to gold and silver. Homogenization temperature of fluid inclusions range from $200^{\circ}C$ to $270^{\circ}C$ in quartz from the Gwangyang gold vein and the size of fluid inclusion range from 0.01mm to 0.04mm. The fluid inclusions are mainly one or two phase and the filling degree of the inclusions varies from 85 to 95.

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현장시험을 통한 DEW 지압형 앵커의 적용성평가 (Application of DEW Anchor with Field Test)

  • 최경집;박우영;유성진;이성락
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.745-751
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    • 2009
  • The anchor is used extensively for a cutting slope, an earth retaining wall, an uplift resistance of sub-structures and so on at civil engineering projects and is classified by aim in use, tendon material, and ground/tension fixing type. It can be distinguished extensively into friction type, bearing type, and complex type by ground fixing type. Generally, bond length of friction type anchor has application to 3~10m depending on the friction-resistance characteristics. In this study, 'DEW(double enlargement wedge) bearing type anchor' of new concept is devised. The bond length is about 0.6~0.8m. It can be used on the ground to have the strength characteristics above it of weathered rock. There are merits which are 'period reduction' and 'cost saving' through the minimum of the boring length. In addition, it is so called environmentally friendly Methods because it can reduce the quantity of carbon dioxide through the reducing drilling machine operation time.

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Composite action in connection regions of concrete-filled steel tube columns

  • Johansson, Mathias
    • Steel and Composite Structures
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    • 제3권1호
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    • pp.47-64
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    • 2003
  • In a nonlinear finite element study on the mechanical behavior of simple beam connections to continuous concrete-filled steel tube columns, two principally different connection types were analyzed: one with plates attached to the outside of the tube wall, relying on shear transfer, and one with an extended plate inserted through the steel section to ensure bearing on the concrete core. The load was applied partly at the connection within the column length and partly at the top, representing the load from upper stories of a multistory building. The primary focus was on the increased demand for load transfer to ensure composite action when concrete with higher compressive strength is used. The results obtained from the analyses showed that the design bond strength derived from push tests is very conservative, mainly due to the high frictional shear resistance offered by pinching and contraction effects caused by connection rotation. However, with higher concrete strength the demand for load transfer increases, and is hard to fulfill for higher loads when connections are attached only to the steel section. Instead, the connection should penetrate into the concrete core to distribute load to the concrete by direct bearing.

The elastic deflection and ultimate bearing capacity of cracked eccentric thin-walled columns

  • Zhou, L.;Huang, Y.
    • Structural Engineering and Mechanics
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    • 제19권4호
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    • pp.401-411
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    • 2005
  • The influence of cracks on the elastic deflection and ultimate bearing capacity of eccentric thin-walled columns with both ends pinned was studied in this paper. First, a method was developed and applied to determine the elastic deflection of the eccentric thin-walled columns containing some model-I cracks. A trigonometric series solution of the elastic deflection equation was obtained by the Rayleigh-Ritz energy method. Compared with the solution presented in Okamura (1981), this solution meets the needs of compatibility of deformation and is useful for thin-walled columns. Second, a two-criteria approach to determine the stability factor ${\varphi}$ has been suggested and its analytical formula has been derived. Finally, as an example, box columns with a center through-wall crack were analyzed and calculated. The effects of cracks on both the maximum deflection and the stability coefficient ${\varphi}$ for various crack lengths or eccentricities were illustrated and discussed. The analytical and numerical results of tests on the columns show that the deflection increment caused by the cracks increases with increased crack length or eccentricity, and the critical transition crack length from yielding failure to fracture failure ${\xi}_c$ is found to decrease with an increase of the slenderness ratio or eccentricity.

An experimental and numerical analysis of concrete walls exposed to fire

  • Baghdadi, Mohamed;Dimia, Mohamed S.;Guenfoud, Mohamed;Bouchair, Abdelhamid
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.819-830
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    • 2021
  • To evaluate the performance of concrete load bearing walls in a structure under horizontal loads after being exposed to real fire, two steps were followed. In the first step, an experimental study was performed on the thermo-mechanical properties of concrete after heating to temperatures of 200-1000℃ with the purpose of determining the residual mechanical properties after cooling. The temperature was increased in line with natural fire curve in an electric furnace. The peak temperature was maintained for a period of 1.5 hour and then allowed to cool gradually in air at room temperature. All specimens were made from calcareous aggregate to be used for determining the residual properties: compressive strength, static and dynamic elasticity modulus by means of UPV test, including the mass loss. The concrete residual compressive strength and elastic modulus values were compared with those calculated from Eurocode and other analytical models from other studies, and were found to be satisfactory. In the second step, experimental analysis results were then implemented into structural numerical analysis to predict the post-fire load-bearing capacity response of the walls under vertical and horizontal loads. The parameters considered in this analysis were the effective height, the thickness of the wall, various support conditions and the residual strength of concrete. The results indicate that fire damage does not significantly affect the lateral capacity and stiffness of reinforced walls for temperature fires up to 400℃.

Comparison and prediction of seismic performance for shear walls composed with fiber reinforced concrete

  • Zhang, Hongmei;Chen, Zhiyuan
    • Advances in concrete construction
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    • 제11권2호
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    • pp.111-126
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    • 2021
  • Concrete cracking due to brittle tension strength significantly prevents fully utilization of the materials for "flexural-shear failure" type shear walls. Theoretical and experimental studies applying fiber reinforced concrete (FRC) have achieved fruitful results in improving the seismic performance of "flexural-shear failure" reinforced concrete shear walls. To come to an understanding of an optimal design strategy and find common performance prediction method for design methodology in terms to FRC shear walls, seismic performance on shear walls with PVA and steel FRC at edge columns and plastic region are compared in this study. The seismic behavior including damage mode, lateral bearing capacity, deformation capacity, and energy dissipation capacity are analyzed on different fiber reinforcing strategies. The experimental comparison realized that the lateral strength and deformation capacity are significantly improved for the shear walls with PVA and steel FRC in the plastic region and PVA FRC in the edge columns; PVA FRC improves both in tensile crack prevention and shear tolerance while steel FRC shows enhancement mainly in shear resistance. Moreover, the tensile strength of the FRC are suggested to be considered, and the steel bars in the tension edge reaches the ultimate strength for the confinement of the FRC in the yield and maximum lateral bearing capacity prediction comparing with the model specified in provisions.

수치해석을 통한 암반에 근입된 현장타설말뚝의 주면부 거동특성 분석 및 설계차트 제시 (Numerical Analyses on the Behavioral Characteristics of Side of Drilled Shafts in Rocks and Suggestion of Design Charts)

  • 이혁진;김홍택
    • 대한토목학회논문집
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    • 제26권6C호
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    • pp.407-419
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    • 2006
  • 현장타설말뚝이 주면저항력에 의해서만 지지되는 상황은 천공홀 바닥을 청소할 수 없어서 선단부 지지력의 반현 여부를 확신할 수 없을 때이다. 반대로, 신선한 기반암이 낮은 강도의 상부 재료 하부에 있는 경우는 암반에서의 선단지지력만으로 상부 하중을 지탱할 수 있으며, 상부 재료에서는 지지력 발현을 기대하지 않아도 된다. 그러나 신선암에서 일정 깊이 천공을 실시한 경우, 현장타설말뚝은 주면저항력과 선단지지력 모두를 기대할 수 있다. 암반에 근입된 현장타설말뚝의 거동에 관한 이론적 연구와 현장 시험을 통하여 작용 하중의 대부분이 통상 주면저항력에 의해서 지지되게 된다는 사실이 알려져 있다. 암-콘크리트 접촉면에서의 수직응력은 두 가지 기구에 의해 증가하게 된다. 먼저, 말뚝 상부에 작용하는 압축하중에 의해서 콘크리트는 탄성 다이레이션이 발생하고 두 번째로 거친 천공홀 표면에서 전단 변위를 통해서 접촉면의 역학적 다이레이션이 발생되게 된다. 수직 변위에 대한 근입부 주변 물질의 강성도가 일정하면, 작용하중이 증가함에 따라서 수직응력은 증가하게 되며 따라서, 전단강도의 증가 현상이 발생하게 된다. 본 연구에서는 수치해석을 통하여 암반에 근입된 현장타설말뚝의 주면부 거동특성을 조사하였다. 또한, 두부의 하중-침하량(선단부 침하량+말뚝의 탄성변형량) 관계가 비선형성을 띠는 원인 및 파괴기구를 충분히 조사함으로써 암반에 근입된 현장타설말뚝의 주면저항력에 영향을 미치는 요소들을 모두 고려하여 국내 풍화암 및 연암에 근입되는 현장타설말뚝의 설계차트를 제시하고 이를 검증하였다.

지반조건의 변화가 개단강관말뚝의 거동에 미치는 영향 (Effects of Soil Conditions on the Behavior of Open -Ended Steel Pipe Pile)

  • 백규호;이종섭;이승래
    • 한국지반공학회지:지반
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    • 제9권3호
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    • pp.23-34
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    • 1993
  • 지반조건이 개단강관말뚝의 거동에 미치는 영향을 규명하기 위하여 응력상태와 상대밀도의 조절이 가능한 토조내에 포설된 모래지반에서 모형말뚝실험이 수행되었다. 모형말뚝은 개단강관 말뚝의 각 부분에 작용하는 지지력을 분리측정하기 위하여 직경이 다른 두개의 파이프로 만들어졌다. 실험결과에 의하면 모래지반에 타입된 개단말뚝의 폐색정도와 관입저항력은 지반의 수직응력보다는 수평응력과 상대밀도에 의하여 좌우되었으며, 관내토지지력과 외주면마찰력, 그리고 전체 지지력도 수직응력보다는 수평응력과 상대밀도에 의하여 주로 영향받는 것으로 나타났다. 또 한 말뚝 외벽에 작용하는 수평응력은 원지반의 응력상태와는 관계없이 조밀한 지반의 경우에는 원지반의 수평응력보다 크게, 보통상태의 지반에서는 원지반과 비슷하게, 그리고 매우 느슨한 지반에서는 원지반보다 작게 측정되었다. 원지반의 수평응력에 대한 말뚝 설치후의 말뚝 외벽에 작용하는 수평응력의 비는 주어진 모래지반의 경우 원지반의 수평응력과 관계없이 상대밀도에 따라 일정한 값으로 나타났다.

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중·고층형 모듈러 벽체의 내화성능 평가 (Evaluation on the Fire Resistance Performance for High-Rise Modular Walls)

  • 양승조;이재승
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권4호
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    • pp.15-22
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    • 2019
  • 국내 건축법에는 표준 내화구조인 KS F 1611-5에서 1시간 내화성능을 갖는 각형강관에 대한 사양적 기준만을 제시하고 있어 각형 강관에 적용되는 모듈러 건축물을 중 고층에 적용하기 위해서는 한계가 있다. 따라서 내화성능 평가를 통해 2시간 인정을 받은 모듈러 구조에 한하여 중 고층 건축물에 적용이 가능하다. 본 연구에서는 KS F 2257-1 및 KS F 2257-4 기준에 의거하여 실대형 내화실험을 수행하였다. 평가결과 OW-01 및 OW-02 실험체의 경우 각형강관의 온도상승 및 강도 저하로 인해 면외좌굴이 발생하여 2시간 내화성능을 확보하지 못하였으나, 피복 및 각형강관 두께를 보완한 IW-01 및 OW-03 실험체의 경우 충분한 차열성능으로 인해 2시간 내화성능을 확보하여 중고층 모듈러 건축에 적용하는 것이 가능한 것으로 판단되었다.