• 제목/요약/키워드: stiffness irregularity

검색결과 76건 처리시간 0.02초

팽창형 강관 록볼트의 암반 강성에 따른 정착 거동 특성 (Anchorage mechanism of inflatable steel pipe rockbolt depending on rock stiffness)

  • 김경철;김호종;정영훈;신종호
    • 한국터널지하공간학회 논문집
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    • 제19권2호
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    • pp.249-263
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    • 2017
  • 팽창형 강관 록볼트의 설치 전 단면 형상은 ${\Omega}$형이어서, 팽창 중 거동은 기하학적 비선형 특성을 보인다. 기존 팽창형 강관 록볼트의 정착 거동에 관한 연구는 주로 이론적 방법이었다. 하지만 이론적 방법은 팽창형 강관 록볼트의 등방 팽창을 가정하므로, 실제 거동을 지나치게 단순화하였다. 본 연구에서는 강관 팽창 거동의 비선형성과 다양한 영향 특성을 고려한 수치해석을 이용하여, 팽창형 강관 록볼트의 정착 거동을 모사하였다. 본 해석을 통해 강관의 팽창 과정, 접촉응력 분포, 평균 접촉 응력 및 접촉 면적의 변화를 분석하였다. 암반의 탄소성 조건에 따라 강관의 접촉응력이 다르게 나타났는데, 탄성 조건의 암반에 설치된 강관에 비해 탄소성 조건의 암반에 설치된 강관에서 작은 접촉응력이 발생했다. 또한 암반의 강성에 따라 팽창형 강관 록볼트의 정착 거동이 달라졌다. 주어진 해석 조건에서 암반 강성이 0.5 GPa 이하 일 때 강관은 완전히 펴지지만, 암반 강성이 0.5 GPa보다 클 때 완전히 펴지지 않았다. 강관이 완전히 펴진 경우 암반 강성이 증가함에 따라 접촉응력의 크기가 증가했지만, 강관이 완전히 펴지지 않은 경우 암반 강성이 증가함에 따라 접촉응력의 크기가 감소했다.

1:12축소 비정형 고층 RC 건물의 비선형거동에 대한 실험과 해석의 상관성 (Correlation of Experimental ana Analytical Inelastic Responses of 1:12 Scale Irregular High-Rise RC Buildings)

  • 고동우;이한선
    • 한국지진공학회논문집
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    • 제11권2호
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    • pp.95-104
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    • 2007
  • 세가지 형태의 고층 비정형 철근콘크리트 건물에 대해 OpenSees를 이용하여 비선형정적해석을 수행한 후, 해석결과와 진동대 실험결과를 비교하여 해석방법에 대한 검증을 수행하고, 해석결과 나타난 비정형 건물의 성능과 하부 필로티부분의 파괴양상을 분석하였다. 선정된 모델은 필로티층이 골조로만 이루어진 모델 (모델 1), 필로티층 내부중앙골조에 벽체가 있는 모델 (모델 2), 그리고, 필로티층의 한쪽 골조에 벽체가 있는 모델 (모델 3)이다. 철근과 콘크리트의 응력-변형률 관계를 섬유모델에 이식하여 비선형부분의 거동을 묘사하고, 벽체도 비선형모델을 이식한 트러스로 이루어진 MVLEM을 적용하였다. 그 결과 축력이 작용함에 따른 기둥의 전단강성변화, 벽체의 들뜸현상 등과 같이 진동대 실험에서 나타난 거동특성을 비교적 정확하게 묘사하였다. 초과강도 측면에서 하부골조에 벽체를 포함하고 있는 모델 2와 모델 3은 모델 1보다 2배 가까이 크다. 이와 같이 모델 2와 모델 3의 초과강도와 연성이 큰 이유는 모델 2와 모델 3의 경우 모델 1로 설계된 골조에 벽체가 낀 벽의 형태로 설계되었기 때문으로 보인다. 그리고, 연성의 측면에서 모델 1과 모델 3은 모델 2의 보다 1.17배 큰 것으로 나타났다. 모델 1과 모델 3의 경우 골조부분에 과도한 모멘트가 작용하여 파괴에 이른 반면, 모델 2는 하부전단벽의 전단파괴에 의해 파괴되었으며, 모델 1과 모델 3에 비하여 크게 작용한 전도모멘트로 인해 기둥에 작용하는 축력의 변화가 크게 발생하였다.

입체 복합구조물의 하부골조 층수 변화에 따른 비선형 거동특성 (The Nonlinear Behavior Characteristics of the 3D Mixed Building Structures with Variations in the Lower Stories)

  • 강병두;전대한;김재웅
    • 한국지진공학회논문집
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    • 제6권1호
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    • pp.55-62
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    • 2002
  • 상부벽식-하부골조 구조(복합구조)는 일반적으로 전이층을 중심으로 상부는 주거공간의 전단벽식의 고층아파트이고 하부는 상업공간의 보-기등의 골조구조이다. 이러한 구조물은 구조형식의 특성상 강성비정형, 질량비정형, 기하학적 비정형 등 비정형 형태의 특징을 갖고 있다. 본 연구에서는 하부골조 구조물의 층수가 변화할 경우에 대해 복합 구조물의 비선형 거동특성과 내진성능을 파악하였다. 비선형 해석결과로부터 얻은 결론은 다음과 같다. 1) 비선형 정적해석의 최상층변위각과 밑면전 단력계수로부터 하부구조의 층수가 증가할 경우 구조물의 밑면전단력계수는 감소하였으나 최상층변위각은 증가하였다. 2) 하부구조의 층수가 증가할 경우 상부벽식구조의 층간변위각과 소성율은 감소하였으며, 상부벽식은 탄성상태에 가까운 거동을 하였다. 3) 하부구조의 층수가 증가할 경우 하부구조에서 층간변위각이 집중적으로 증가하였다.

Seismic response of current RC buildings in Kathmandu Valley

  • Chaulagain, Hemchandra;Rodrigues, Hugo;Spacone, Enrico;Varum, Humberto
    • Structural Engineering and Mechanics
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    • 제53권4호
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    • pp.791-818
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    • 2015
  • RC buildings constitute the prevailing type of construction in earthquake-prone region like Kathmandu Valley. Most of these building constructions were based on conventional methods. In this context, the present paper studied the seismic behaviour of existing RC buildings in Kathmandu Valley. For this, four representative building structures with different design and construction, namely a building: (a) representing the non-engineered construction (RC1 and RC2) and (b) engineered construction (RC3 and RC4) has been selected for analysis. The dynamic properties of the case study building models are analyzed and the corresponding interaction with seismic action is studied by means of non-linear analyses. The structural response measures such as capacity curve, inter-storey drift and the effect of geometric non-linearities are evaluated for the two orthogonal directions. The effect of plan and vertical irregularity on the performance of the structures was studied by comparing the results of two engineered buildings. This was achieved through non-linear dynamic analysis with a synthetic earthquake subjected to X, Y and $45^{\circ}$ loading directions. The nature of the capacity curve represents the strong impact of the P-delta effect, leading to a reduction of the global lateral stiffness and reducing the strength of the structure. The non-engineered structures experience inter-storey drift demands higher than the engineered building models. Moreover, these buildings have very low lateral resistant, lesser the stiffness and limited ductility. Finally, a seismic safety assessment is performed based on the proposed drift limits. Result indicates that most of the existing buildings in Nepal exhibit inadequate seismic performance.

Fundamental periods of reinforced concrete building frames resting on sloping ground

  • De, Mithu;Sengupta, Piyali;Chakraborty, Subrata
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.305-312
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    • 2018
  • Significant research efforts were undertaken to evaluate seismic performance of vertically irregular buildings on flat ground. However, there is scarcity of study on seismic performance of buildings on hill slopes. The present study attempts to investigate seismic behaviour of reinforced concrete irregular stepback building frames with different configurations on sloping ground. Based on extensive regression study of free vibration results of four hundred seventeen frames with varying ground slope, number of story and span number, a modification is proposed to the code based empirical fundamental time period estimation formula. The modification to the fundamental time period estimation formula is a simplified function of ground slope and a newly introduced equivalent height parameter to reflect the effect of stiffness and mass irregularity. The derived empirical formula is successfully validated with various combinations of slope and framing configurations of buildings. The correlation between the predicted and the actual time period obtained from the free vibration analysis results are in good agreement. The various statistical parameters e.g., the root mean square error, coefficient of determination, standard average error generally used for validation of such regression equations also ensure the prediction capability of the proposed empirical relation with reasonable accuracy.

Dynamic characteristics of hybrid tower of cable-stayed bridges

  • Abdel Raheem, Shehata E.
    • Steel and Composite Structures
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    • 제17권6호
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    • pp.803-824
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    • 2014
  • The dynamic characterization is important in making accurate predictions of the seismic response of the hybrid structures dominated by different damping mechanisms. Different damping characteristics arise from the construction of the tower with different materials: steel for the upper part; reinforced concrete for the lower main part and interaction with supporting soil. The process of modeling damping matrices and experimental verification is challenging because damping cannot be determined via static tests as can mass and stiffness. The assumption of classical damping is not appropriate if the system to be analyzed consists of two or more parts with significantly different levels of damping, such as steel/concrete mixed structure - supporting soil coupled system. The dynamic response of structures is critically determined by the damping mechanisms, and its value is very important for the design and analysis of vibrating structures. An analytical approach capable of evaluating the equivalent modal damping ratio from structural components is desirable for improving seismic design. Two approaches are considered to define and investigate dynamic characteristics of hybrid tower of cable-stayed bridges: The first approach makes use of a simplified approximation of two lumped masses to investigate the structure irregularity effects including damping of different material, mass ratio, frequency ratio on dynamic characteristics and modal damping; the second approach employs a detailed numerical step-by step integration procedure in which the damping matrices of the upper and the lower substructures are modeled with the Rayleigh damping formulation.

On effects of rail fastener failure on vehicle/track interactions

  • Xu, Lei;Gao, Jianmin;Zhai, Wanming
    • Structural Engineering and Mechanics
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    • 제63권5호
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    • pp.659-667
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    • 2017
  • Rail support failure is inevitably subjected to track geometric deformations. Due to the randomness and evolvements of track irregularities, it is naturally a hard work to grasp the trajectories of dynamic responses of railway systems. This work studies the influence of rail fastener failure on dynamic behaviours of wheel/rail interactions and the railway tracks by jointly considering the effects of track random irregularities. The failure of rail fastener is simulated by setting the stiffness and damping of rail fasteners to be zeroes in the compiled vehicle-track coupled model. While track random irregularities will be transformed from the PSD functions using a developed probabilistic method. The novelty of this work lays on providing a method to completely reveal the possible responses of railway systems under jointly excitation of track random irregularities and rail support failure. The numerical results show that rail fastener failure has a great influence on both the wheel/rail interactions and the track vibrations if the number of rail fastener failure is over three. Besides, the full views of time-dependent amplitudes and probabilities of dynamic indices can be clearly presented against different failing status.

경부고속선 자갈궤도의 진동에 영향을 미치는 인자에 대한 분석 (Analysis on Factors Affecting the Vibration of the Ballast Track in Kyeong-Bu High Speed Line)

  • 김만철
    • 한국철도학회논문집
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    • 제10권5호
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    • pp.463-472
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    • 2007
  • 본 논문에서는 궤도 각 부의 가속도 특성과 가속도에 영향을 미치는 인자들과의 상관관계를 분석하였다. 이를 위해서 경부고속철도 자갈궤도에 대해서 레일, 침묵, 자갈도상의 진동가속도를 측정하였다. 측정된 가속도에 대해서 실효치(RMS)를 분석하였으며 궤도의 진동에 영향을 미치는 매개요소로 패드강성, 고저틀림, 주행속도 및 요철을 고려하였다. 진동가속도와 매개요소들과의 상관관계 분석을 위해서 선형회귀식을 적용하였으며, 이를 통해서 상관계수를 도출하였다. 또한 가속도의 주파수 특성을 분석하기 위하여 1/3 옥타브 해석을 실시하였다.

An analytical solution to the mapping relationship between bridge structures vertical deformation and rail deformation of high-speed railway

  • Feng, Yulin;Jiang, Lizhong;Zhou, Wangbao;Lai, Zhipeng;Chai, Xilin
    • Steel and Composite Structures
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    • 제33권2호
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    • pp.209-224
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    • 2019
  • This paper describes a study of the mapping relationship between the vertical deformation of bridge structures and rail deformation of high-speed railway, taking the interlayer interactions of the bridge subgrade CRTS II ballastless slab track system (HSRBST) into account. The differential equations and natural boundary conditions of the mapping relationship between the vertical deformation of bridge structures and rail deformation were deduced according to the principle of stationary potential energy. Then an analytical model for such relationship was proposed. Both the analytical method proposed in this paper and the finite element numerical method were used to calculate the rail deformations under three typical deformations of bridge structures and the evolution of rail geometry under these circumstances was analyzed. It was shown that numerical and analytical calculation results are well agreed with each other, demonstrating the effectiveness of the analytical model proposed in this paper. The mapping coefficient between bridge structure deformation and rail deformation showed a nonlinear increase with increasing amplitude of the bridge structure deformation. The rail deformation showed an obvious "following feature"; with the increase of bridge span and fastener stiffness, the curve of rail deformation became gentler, the track irregularity wavelength became longer, and the performance of the rail at following the bridge structure deformation was stronger.

Effectiveness of seismic isolation in a reinforced concrete structure with soft story

  • Hakan Ozturk;Esengul Cavdar;Gokhan Ozdemir
    • Structural Engineering and Mechanics
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    • 제87권5호
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    • pp.405-418
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    • 2023
  • This study focused on the effectiveness of seismic isolation technique in case of a reinforced concrete structure with soft story defined as the stiffness irregularity between adjacent stories. In this context, a seismically isolated 3-story reinforced concrete structure was analyzed by gradually increasing the first story height (3.0, 4.5, and 6.0 m). The seismic isolation system of the structure is assumed to be composed of lead rubber bearings (LRB). In the analyses, isolators were modeled by both deteriorating (temperature-dependent analyses) and non-deteriorating (bounding analyses) hysteretic representations. The deterioration in strength of isolator is due to temperature rise in the lead core during cyclic motion. The ground motion pairs used in bi-directional nonlinear dynamic analyses were selected and scaled according to codified procedures. In the analyses, different isolation periods (Tiso) and characteristic strength to weight ratios (Q/W) were considered in order to determine the sensitivity of structural response to the isolator properties. Response quantities under consideration are floor accelerations, and interstory drift ratios. Analyses results are compared for both hysteretic representations of LRBs. Results are also used to assess the significance of the ratio between the horizontal stiffnesses of soft story and isolation system. It is revealed that seismic isolation is a viable method to reduce structural damage in structures with soft story.