• 제목/요약/키워드: Bending moment distribution

검색결과 140건 처리시간 0.023초

Spatial mechanical behaviors of long-span V-shape rigid frame composite arch bridges

  • Gou, Hongye;Pu, Qianhui;Wang, Junming;Chen, Zeyu;Qin, Shiqiang
    • Structural Engineering and Mechanics
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    • 제47권1호
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    • pp.59-73
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    • 2013
  • The Xiaolan channel super large bridge is unique in style and with greatest span in the world with a total length of 7686.57 m. The main bridge with spans arranged as 100m+220m+100m is a combined structure composed of prestressed concrete V-shape rigid frame and concrete-filled steel tubular flexible arch. First of all, the author compiles APDL command flow program by using the unit birth-death technique and establishes simulation calculation model in the whole construction process. The creep characteristics of concrete are also taken into account. The force ratio of the suspender, arch and beam is discussed. The authors conduct studies on the three-plate webs's rule of shear stress distribution, the box girder's longitudinal bending normal stress on every construction stage, meanwhile the distribution law of longitudinal bending normal stress and transverse bending normal stress of completed bridge's box girder. Results show that, as a new combined bridge, it is featured by: Girder and arch resist forces together; Moment effects of the structure are mainly presented as compressed arch and tensioned girder; The bridge type brings the girder and arch on resisting forces into full play; Great in vertical stiffness and slender in appearance.

파랑중 전진하는 선박의 유탄성 응답 (Hydroelastic Responses for a Ship Advancing in Waves)

  • 이호영;임춘규;정형배
    • 대한조선학회논문집
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    • 제40권4호
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    • pp.16-21
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    • 2003
  • The very large container ships have been built recently and those ships have very small structural rigidity compared with the other conventional ships. As a result, the destruction of ship hull is occurred by the springing including to warping phenomena due to encounter waves. In this study, the solutions of hydrodynamic coefficients are obtained by solving the three dimensional source distribution method and the forward speed Green function representing a translating and pulsating source potential for infinite water depth is used to calculating the integral equation. The vessel is longitudinally divided into various sections and the added mass, wave damping and wave exciting forces of each section is calculated by integrating the dynamic pressures over the mean wetted section surface. The equations for six degree freedom of motions is obtained for each section in the frequency domain and stiffness matrix is calculated by Euler beam theory. The computations are carried out for very large ship and effects of bending and torsional ridigity on the wave frequency and angle are investigated.

대형 컨테이너선의 직접해석법에 관한 비교 연구 (Comparative Study on the Application of Direct Analysis Method to Large Container Carriers)

  • 류홍렬;이주성
    • 대한조선학회논문집
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    • 제43권4호
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    • pp.484-493
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    • 2006
  • Recently, direct load analysis using ship motion program is required to confirm structural safety for the Post-Panamax class large container carrier. However, there is no exact comparative study data for structural response between 20 and 30 wave load. So, in this paper, to compare the hull girder stress response between 20 versus 3D wave load calculation method, direct load analysis and global F.E analysis have been performed for three kinds of large container vessels using each 20 and 30 wave load calculation program. The results of 2D wave load RAO(Response Amplitude Operator) of each dominant load parameter(vertical, torsional and horizontal moment) are generally bigger than that of 30 results, especially in vertical wave bending moment. And the results of structural analysis based on the equivalent design wave method shows that there is a big difference in view of stress, but the stress distribution is very similar for each wave load case.

PFA 라이닝 플러그 밸브 설계를 위한 밸브 본체의 응력 시뮬레이션 (A Study on the Stress Simulation for the Body Design of a PFA-lined Plug Valve)

  • 강신한
    • 한국산학기술학회논문지
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    • 제10권3호
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    • pp.500-506
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    • 2009
  • 본 논문은 주요 부위에 대한 정적음력 시뮬레이션을 통해 PFA 라이닝 플러그밸브 본체의 설계자를 지원하는 것을 주된 목표로 한다. CAD 작업을 통해 생성된 형상 모델을 스텝(step)파일로 변환하여 해석작업에 사용한다. 전문적인 해석경험이 없는 밸브 생산업체의 설계자가 형상 모델에 대한 인장, 굽힘, 비틀림 모멘트 등을 계산하는 과정을 이해함으로써 구조적 취약점을 사전에 파악하고, 제품에 반영하여 제품 신뢰도 및 설계효율 증대에 기여할 수 있는 기본적인 방안을 제시하고자 하였다.

토압분리형 교량과 라멘교의 거동분석 (Behavior Analysis of IPM Bridge and Rahmen Bridge)

  • 신근식;한희수
    • 한국산학기술학회논문지
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    • 제20권4호
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    • pp.597-605
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    • 2019
  • IPM Birdge는 경간장 30.0m에서부터 최대 120.0m까지 적용이 가능한 일체식 교량으로, 이러한 교량의 형상 조건은 라멘교에서도 적용가능하다. 교량의 형상조건은 유사하나 거동이 다른 IPM Bridge와 라멘교를 현장에 적용하기 위해, 두 교량의 공학적 우수성을 비교분석하는 과정이 필요하다. 본 연구에서는 라멘교와 IPM Bridge의 구조해석을 수행하여, IPM Bridge와 라멘교의 하중, 모멘트, 및 변위 등의 분포 형태를 비교분석하였다. 입력조건의 차이가 두 교량 형식의 거동에 영향을 미치지 않도록 동일한 조건에서 구조해석을 수행하였다. 구조해석은 경간 30.0m를 기준으로 단경간 교량부터 4경간 120.0m까지로 각 4개의 모델로 구조해석을 수행하였다. 본 연구로부터 도출된 결론은 다음과 같다. 1) 휨모멘트는 라멘교가 크게 산정되었고, 수평변위는 IPM Bridge가 크게 산정되었다. 2) 라멘교는 교량의 연장보다는 경간장에 의해 휨모멘트가 크게 도출되므로, 설계에서 경간장에 대한 허용 휨모멘트가 고려되어야 한다. 3) IPM Bridge의 파일벤트는 120.0m 경간에서도 강관말뚝의 소성모멘트를 초과하지 않았지만, 수축방향의 수평변위가 조인트 교량의 허용기준인 25mm에 근접하므로 설계 시 고려가 필요하다. 4) 실제 설계에서는 부재력에 대한 안정성을 확보하는 것이 중요하므로, 부 모멘트에 대한 검토가 가장 중요한 것으로 나타났다.

풍하중이 작용하는 고용량 송전철탑의 해석을 통한 응력 분포 고찰 (A Study for Stress Distribution of the High-voltage Transmission Tower Under Wind Forces)

  • 장진원;김승준;박종섭;강영종
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2007년도 정기총회 및 학술발표대회
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    • pp.75-78
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    • 2007
  • The structural methodology in designing a transmission tower have been performed to assume a simple truss behavior. But there're quite differences between a simple truss behavior and a real one. A suitable explanation for a structural stability can be expressed as a semi-rigid connection instead of the assumed hinged connection. This study proposes an alternative structural analysis modelling strategy for the transmission tower design. Proposed element models are truss element model, beam element model, and combined beam-truss element model. The static finite element analysis shows that there's a moment distribution between a mainpost member and the other bracing member.

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연삭가공시 온도해석을 통한 열변형 예측 (A Study on the Prediction of Thermal Deformation Using Temperature Analysis in Surface Grinding Process)

  • 김강석;곽재섭;송지복
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.19-23
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    • 1995
  • The thermal deformation of a workpiece during grinding is one of the most important factors that affect a flatness of a grinding surface. The heat generated in one-pass surface grinding causes the convex deformation of a workpiece. Therefore, the ground durfae represents a concave profile. In the analysis a simple model of the temperature distribution, based on the results of a finite element method, is applied. Theanalyzed results are compared with experimental results in surface grinding. The main results obtained are as follows: (1) The temperature distribution of a workpiece by FEM has a good agreement with the experimental results. (2) The bending moment by generated heat causes a convex deformation of the workpiece and it leads to a concave profile of the grinding surface.

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평면연삭에서 다변수 입력에 의한 형상오차 해석 (The Geometric Error Analysis by Various Various Inputs In Surface Grinding)

  • 김강석;홍순익;송지복
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.868-872
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    • 1997
  • The thermal deformation of a workpiece during grinding is one of the most important factors that affect a flatness of a grinding surface. The heat generated in one-pass surface grinding causes the convex deformation of a workpiece. Therefore, the ground surface represents a conacve profile. In the analysis a simple model of the temperature distribution,based on the result of a finite element method, is applied. The analyzed results are compared with experimental results in surface grinding. The main results obtained are as follows; (1) The temperature distibution of a workpiece by FEM is comparatively in good agreement with the experimental results. (2) The bending moment by generated heat cause a convex deformation of the workpiece and it reads to a concave profile of the grinding surface.

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Behaviour insights on damage-control composite beam-to-beam connections with replaceable elements

  • Xiuzhang He;Michael C.H. Yam;Ke Ke;Xuhong Zhou;Huanyang Zhang;Zi Gu
    • Steel and Composite Structures
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    • 제46권6호
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    • pp.773-791
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    • 2023
  • Connections with damage concentrated to pre-selected components can enhance seismic resilience for moment resisting frames. These pre-selected components always yield early to dissipate energy, and their energy dissipation mechanisms vary from one to another, depending on their position in the connection, geometry configuration details, and mechanical characteristics. This paper presents behaviour insights on two types of beam-to-beam connections that the angles were designed as energy dissipation components, through the results of experimental study and finite element analysis. Firstly, an experimental programme was reviewed, and key responses concerning the working mechanism of the connections were presented, including strain distribution at the critical section, section force responses of essential components, and initial stiffness of test specimens. Subsequently, finite element models of three specimens were established to further interpret their behaviour and response that were not observable in the tests. The moment and shear force transfer paths of the composite connections were clarified through the test results and finite element analysis. It was observed that the bending moment is mainly resisted by axial forces from the components, and the dominant axial force is from the bottom angles; the shear force at the critical section is primarily taken by the slab and the components near the top flange. Lastly, based on the insights on the load transfer path of the composite connections, preliminary design recommendations are proposed. In particular, a resistance requirement, quantified by a moment capacity ratio, was placed on the connections. Design models and equations were also developed for predicting the yield moment resistance and the shear resistance of the connections. A flexible beam model was proposed to quantify the shear resistance of essential components.

Girder distribution factors for steel bridges subjected to permit truck or super load

  • Tabsh, Sami W.;Mitchell, Muna M.
    • Structural Engineering and Mechanics
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    • 제60권2호
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    • pp.237-249
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    • 2016
  • There are constraints on truck weight, axle configurations and size imposed by departments of transportation around the globe due to structural capacity limitations of highway pavements and bridges. In spite of that, freight movers demand some vehicles that surpass the maximum size and legal weight limits to use the transportation network. Oversized trucks serve the purpose of spreading the load on the bridge; thus, reducing the load effect on the superstructure. For such vehicles, often a quick structural analysis of the existing bridges along the traveled route is needed to ensure that the structural capacity is not exceeded. For a wide vehicle having wheel gage larger than the standard 1830 mm, the girder distribution factors in the design specifications cannot be directly used to estimate the live load in the supporting girders. In this study, a simple approach that is based on finite element analysis is developed by modifying the AASHTO LRFD's girder distribution factors for slab-on-steel-girder bridges to overcome this problem. The proposed factors allow for determining the oversized vehicle bending moment and shear force effect in the individual girders as a function of the gage width characteristics. Findings of the study showed that the relationship between the girder distribution factor and gage width is more nonlinear in shear than in flexure. The proposed factors yield reasonable results compared with the finite element analysis with adequate level of conservatism.