• 제목/요약/키워드: Torsional box

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강박스거더 교량의 프레임 형식 중간다이아프램의 설계 (Design of Longitudinal prestress of precast decks in twin-girder continuous composite bridges)

  • 윤동용;안성현;이성철
    • 한국강구조학회 논문집
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    • 제18권5호
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    • pp.515-524
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    • 2006
  • 강박스거더에 편심이 작용하면 단면은 뒤틀리고, 이로 인해서 종방향으로 뒤틀림 응력이 발생한다. 휨모멘트에 의한 휨응력 이외에뒤틀림으로 인한 추가되는 종방향 응력은 경우에 따라서는 무시할 수 없이 크기 때문에 설계단계에서 반드시 고려되어야 한다. 일반적으로 중간다이아프램을 설치하여 뒤틀림 변형 자체를 억제시켜 뒤틀림응력의 크기를 제안하는 방법을 이용하는데, 이때 휨응력에 비교하여 뒤틀림응력의 크기를 통상 5~10%정도로 제한한다. 현재 적용하는 중간다이아프램 설치간격에 대한 공식은 고전적인 BEF 이론을 바탕으로 유도되었는데, 이는지나치게 보수적인 설계를 유도하고있다. 이에 본 연구에서 강박스거더의 프레임형식 중간다이아프램에 대해 3차원 유한요소해석을 수행하여 분석한 결과, 현행 중간다이아프램 단면적 공식은 지나치게 큰 값을 요구하는 것으로 나타났다. 그래서 유한요소 해석결과를 회귀분석하여 설계 초기에 적용할 수 있는 개선된 프레임형식의 중간다이아프램 단면적 설계공식을 제안하였다.

유압식 동력 조향기어 박스에서 설계변수의 특성검토 (Characteristic Investigation of Design Parameters on the Hydraulic Power Steering Gear Box)

  • 장주섭;윤영환
    • 한국자동차공학회논문집
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    • 제16권4호
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    • pp.135-142
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    • 2008
  • Hydraulic power steering system has been adopted in seniority passenger and commercial vehicle system for an easy maneuverability and a smoother ride. In this study, hydraulic power steering system analysis model which includes hydraulics and mechanical sub-systems was developed using commercial software, AMESim in order to predict characteristics for various steering components. Each component which constructs system was modeled and verified by experimentally obtained characteristics curves of each components. The parameter sensitivity analysis such as valve opening area, torsional stiffness of torsion bar for system design are carried out by the analysis and experimental method. The predicted results by the development model were a good agreement with experimentally obtained results. The sensitivity investigation results rotary torque when changing an input shaft edge width, was most sensitive, to change in angle and slot width and supply flow of input shaft edge is not a lot sensitively.

Numerical investigations on the effect of mean incident wind on flutter onset of bridge deck sections

  • Keerthana, M.;Harikrishna, P.
    • Structural Engineering and Mechanics
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    • 제82권4호
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    • pp.517-542
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    • 2022
  • The effect of mean angle of wind attack on the flutter critical wind speed of two generic bridge deck cross-sections, viz, one closed box type streamlined section (deck-1) and closed box trapezoidal bluff type section with extended flanges/overhangs (deck-2) type of section have been studied using Computational Fluid Dynamics (CFD) based forced vibration simulation method. Owing to the importance of the effect of the amplitude of forcing oscillation on the flutter onset, its effect on the flutter derivatives and flutter onset have been studied, especially at non-zero mean angles of wind attack. The flutter derivatives obtained have been used to evaluate flutter critical wind speeds and flutter index of the deck sections at non-zero mean angles of wind attack studied and the same have been validated with those based on experimental results reported in literature. The value of amplitude of forcing oscillation in torsional degree of freedom for CFD based simulations is suggested to be in the range of 0.5° to 2°, especially for bluff bridge deck sections. Early onset of flutter from numerical simulations, thereby conservative estimate of occurrence of instability has been observed from numerical simulations in case of bluff bridge deck section. The study aids in gaining confidence and the extent of applicability of CFD during early stages of bridge design, especially towards carrying out studies on mean incident wind effects.

강박스 거더교의 내부 다이아프램에 관한 매개변수 연구 (A Parametric Study on Intermediate Diaphragms of Steel-Box-Girder Bridges)

  • 박남회;임다수;조선규;강영종
    • 한국강구조학회 논문집
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    • 제15권3호
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    • pp.231-239
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    • 2003
  • 과거 수 십년 동안 강박스 거더 교량은 휨과 비틀림에 대한 저항능력과 미적인 측면에서의 우수성으로 인해 많은 시공현장에서 건설되었다. 그러나 박스거더는 편재하된 하중 상태에서 단면의 뒤틀림과 뒴 현상을 경험하게 되는데 이는 박스거더의 단점으로 작용한다. 그러한 뒤틀림과 뒴 현상에 의해 발생하는 뒤틀림 응력들을 제어하기 위해서 일반적으로 박스거더 내부에 다이아프램을 설치하게 된다. 현재까지 건설된 강박스 거더 교량의 다이아프램의 형태는 충복 형태, 프레임 형태 그리고 트러스 형태 등이다. 본 연구의 목적은 매개변수 연구를 통해서 적절한 다이아프램 강성 비를 산정 하는 것과 산정된 강성 비에 근거하여 내부 다이아프램의 간격과 수를 제안하는 것이다. 대상교량은 단실 단면을 갖는 연속화된 직선 강박스 거더 교량이고, 주요한 매개변수는 단면의 형상, 경간 수, 등가 지간장, 내부 다이아프램 강성 그리고 내부 다이아프램 간격 등이다. 매개변수 연구를 통해서 적절한 내부 다이아프램 강성 비의 산정 그리고 내부 다이아프램의 간격과 수가 제안될 것이다.

Analysis and monitoring on jacking construction of continuous box girder bridge

  • Li, Fangyuan;Wu, Peifeng;Yan, Xinfei
    • Computers and Concrete
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    • 제16권1호
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    • pp.49-65
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    • 2015
  • It is hard to guarantee the strict synchronization of all the jacking-up points in the integral jacking of a large-span continuous box girder bridge. This paper took the Hengliaojing Bridge as background, which need jacking up as an object with 295m length and more than 10,000tons weight, adopted 3D software to calculate the unsynchronized jacking-up working conditions, and studied the relationships between the unsynchronized vertical difference and the girder's deformation behaviour. The aim is to verify the maximum value of the unsynchronized vertical difference, and guide the construction and ensure safety. The monitoring system with its contents is introduced corresponding to the analysis. The results of the deck relative elevations prove that it is difficult to avoid the deck torsional deformation for jacking different; especially the side span shows more deformations for its smaller stiffness. The maximum difference is smaller than the limited value with acceptable stresses in the sections. The jacking heights of the pier in each construction step are controlled regularly according to the design. The shifting of the whole bridge in longitudinal direction is smaller than in transverse direction. The several beginning steps are the key to adjust their support reactions. This study is one parts of the fundamental research for the code "Technical specification for bridge jacking-up and reposition of China". The whole synchronous jacking project of the main bridge set a world record by the World Record Association for the whole bridge jacking project with the longest span of the world.

Investigation on spanwise coherence of buffeting forces acting on bridges with bluff body decks

  • Zhou, Qi;Zhu, Ledong;Zhao, Chuangliang;Ren, Pengjie
    • Wind and Structures
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    • 제30권2호
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    • pp.181-198
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    • 2020
  • In the traditional buffeting response analysis method, the spanwise incomplete correlation of buffeting forces is always assumed to be same as that of the incident wind turbulence and the action of the signature turbulence is ignored. In this paper, three typical bridge decks usually adopted in the real bridge engineering, a single flat box deck, a central slotted box deck and a two-separated paralleled box deck, were employed as the investigated objects. The wind induced pressure on these bridge decks were measured via a series of wind tunnel pressure tests of the sectional models. The influences of the wind speed in the tests, the angle of attack, the turbulence intensity and the characteristic distance were taken into account and discussed. The spanwise root coherence of buffeting forces was also compared with that of the incidence turbulence. The signature turbulence effect on the spanwise root coherence function was decomposed and explained by a new empirical method with a double-variable model. Finally, the formula of a sum of rational fractions that accounted for the signature turbulence effect was proposed in order to fit the results of the spanwise root coherence function. The results show that, the spanwise root coherence of the drag force agrees with that of incidence turbulence in some range of the reduced frequency but disagree in the mostly reduced frequency. The spanwise root coherence of the lift force and the torsional moment is much larger than that of the incidence turbulence. The influences of the wind speed and the angle of attack are slight, and they can be ignored in the wind tunnel test. The spanwise coherence function often involves several narrow peaks due to the signature turbulence effect in the high reduced frequency zone. The spanwise coherence function is related to the spanwise separation distance and the spanwise integral length scales, and the signature turbulence effect is related to the deck-width-related reduced frequency.

Dynamic analysis of a coupled steel-concrete composite box girder bridge-train system considering shear lag, constrained torsion, distortion and biaxial slip

  • Li Zhu;Ray Kai-Leung Su;Wei Liu;Tian-Nan Han;Chao Chen
    • Steel and Composite Structures
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    • 제48권2호
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    • pp.207-233
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    • 2023
  • Steel-concrete composite box girder bridges are widely used in the construction of highway and railway bridges both domestically and abroad due to their advantages of being light weight and having a large spanning ability and very large torsional rigidity. Composite box girder bridges exhibit the effects of shear lag, restrained torsion, distortion and interface bidirectional slip under various loads during operation. As one of the most commonly used calculation tools in bridge engineering analysis, one-dimensional models offer the advantages of high calculation efficiency and strong stability. Currently, research on the one-dimensional model of composite beams mainly focuses on simulating interface longitudinal slip and the shear lag effect. There are relatively few studies on the one-dimensional model which can consider the effects of restrained torsion, distortion and interface transverse slip. Additionally, there are few studies on vehicle-bridge integrated systems where a one-dimensional model is used as a tool that only considers the calculations of natural frequency, mode and moving load conditions to study the dynamic response of composite beams. Some scholars have established a dynamic analysis model of a coupled composite beam bridge-train system, but where the composite beam is only simulated using a Euler beam or Timoshenko beam. As a result, it is impossible to comprehensively consider multiple complex force effects, such as shear lag, restrained torsion, distortion and interface bidirectional slip of composite beams. In this paper, a 27 DOF vehicle rigid body model is used to simulate train operation. A two-node 26 DOF finite beam element with composed box beams considering the effects of shear lag, restrained torsion, distortion and interface bidirectional slip is proposed. The dynamic analysis model of the coupled composite box girder bridge-train system is constructed based on the wheel-rail contact relationship of vertical close-fitting and lateral linear creeping slip. Furthermore, the accuracy of the dynamic analysis model is verified via the measured dynamic response data of a practical composite box girder bridge. Finally, the dynamic analysis model is applied in order to study the influence of various mechanical effects on the dynamic performance of the vehicle-bridge system.

고속 헤들 프레임용 복합재료 샌드위치 보의 진동 특성에 관한 연구 (A Study on the Vibration Characteristics of the Composite Sandwich Beams for High-Speed Heddle Frame)

  • 이창섭;오제훈;이대길
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2000년도 춘계학술발표대회 논문집
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    • pp.120-125
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    • 2000
  • A heddle frame is the major part of a loom that produces woven cloth by insertion of weft yarns between warp yams. Warp yarns are manipulated by many heddles fixed in a heddle frame. Recently, the up and down speed of heddle frames has been increased much for the increase of productivity, which induces higher inertial stresses and vibrations in the heddle frame. The heddle frame has the rectangular cross-section. For the design of box type beams of rectangular cross-section, extensional stiffness EA, flexural stiffness El, and torsional stiffness GJ as well as the vibration characteristics are important and should be simultaneously considered. Tn this paper, the vibration characteristics of the composite and the composite sandwich beams for high-speed heddle frame were tested by impulse frequency response.

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풍력터빈 드라이브트레인의 동특성 해석을 위한 모델링 기법 (Modeling Techniques for The Dynamic Characteristics Analysis of Drivetrain in Wind Turbine)

  • 임동수;이승규;조준행;안경민
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.286-289
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    • 2008
  • Wind turbine industry is booming and spending a lot on research for improving the performance of its present machines and increasing their capacity. Wind turbine requires service life of about 20 years and each components of wind turbine requires high durability, because installation and maintenance costs are more expensive than generated electricity by wind-turbine. So the design of wind turbine must be verified in various condition before production step. For this work, high reliability model for analysis is required. Drivetrain model is modeled by multibody dynamic modeling method. The model constituted with rotor blades, hub, main shaft, gear box, high speed shaft and generator. Natural frequency and torsional stiffness of drivetrain are calculated and analyzed.

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유압식 동력조향 장치 설계를 위한 해석 모델 개발 (Analysis Model Development for Designing of Hydraulic Power Steering System)

  • 장주섭;윤영환
    • 한국자동차공학회논문집
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    • 제16권1호
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    • pp.158-165
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    • 2008
  • Hydraulic power steering system has been adopted in seniority passenger and commercial vehicle system for an easy maneuverability and a smoother ride. In this study, hydraulic power steering system analysis model which includes hydraulics and mechanical sub-systems was developed using commercial software, AMESim in order to predict characteristics for various steering components. Each component which constructs system was modeled and verified by experimentally obtained characteristics curves of each components. The agreement between simulation and experimental results shows the validity of the simulation model. The parameter sensitivity analysis such as valve opening area, torsional stiffness for system design are carried out by the analysis and experimental method.