• 제목/요약/키워드: torsional resistance

검색결과 94건 처리시간 0.023초

편심하중을 가한 고층건물의 아웃리거 댐퍼 시스템 제어성능평가 (Control Performance Evaluation of Outrigger Damper System of Eccentrically Loaded High-Rise Building)

  • 김수진;김수근;강호근;김현수;강주원
    • 한국공간구조학회논문집
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    • 제17권2호
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    • pp.43-51
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    • 2017
  • The demand for skyscrapers is increasing worldwide. Until now, various lateral resistance structures have been used for lateral displacement control of high-rise buildings. An outrigger damper system has been introduced recently to improve lateral dynamic response control performance further. However, a study of outrigger damper system is yet to be sufficiently investigated. In this study, time history analysis was performed to investigate the control performance of an outrigger damper system of high-rise building under eccentric loading. To do this, an actual scale 3-dimensional tall building model with an outrigger damper system was prepared. The control performance of the outrigger damper system was evaluated by varying stiffness and damping values. On the top floor torsional angle response to the earthquake load, was greatly affected by damping value. And the displacement response was affected greatly by the stiffness value and damping value of damper system. In conclusion, it is necessary to select the proper damping and stiffness values of the outrigger damper system.

Experimental and numerical studies on VIV characteristics of π-shaped composite deck of a cable-stayed bridge with 650 m main span

  • Wei Lei;Qi Wang;Haili Liao;Chengkai Shao
    • Wind and Structures
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    • 제38권2호
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    • pp.93-107
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    • 2024
  • A π-shaped composite deck in the form of an open section is a type of blunt body that is highly susceptible to wind loads. To investigate its vortex-induced vibration (VIV) performance, a large-scale (1/20) section model of a cable-stayed bridge with a main span of 650 m was tested in a wind tunnel. The vibration suppression mechanism of the countermeasures was analyzed using computational fluid dynamic. Experimental results demonstrate that the vertical and torsional VIVs of the original section can be suppressed by combining guide plates with a tilt angle of 35° and bottom central stabilizing plates as aerodynamic countermeasures. Numerical results indicate that the large-scale vortex under the deck separates into smaller vortices, resulting in the disappearance of the von Kármán vortex street in the wake zone because the countermeasures effectively suppress the VIVs. Furthermore, a full-bridge aeroelastic model with a scale of 1/100 was constructed and tested to evaluate the wind resistance performance and validate the effectiveness of the proposed countermeasures.

설계변수에 따른 플랫플레이트-기둥 접합부의 강도산정모형 (Strength Prediction Model of Interior Flat-Plate Column Connections according to Design Parameters)

  • 이도범;박홍근;이리형
    • 콘크리트학회논문집
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    • 제18권3호
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    • pp.405-414
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    • 2006
  • 기둥단면형상, 중력하중, 슬래브 경간길이와 같은 설계변수에 따른 플랫플레이트-기둥 접합부의 거동특성을 분석하기 위하여 기존의 강도모형을 검토하고 비선형유한요소해석을 실시하였다. 기존 강도 모형은 위험단면에서의 전단응력분포를 가정함에 있어서 다양한 설계변수의 영향을 고려하지 못하여 플랫플레이트-기둥 접합부의 강도를 정확하게 예측하지 못하였다. 비선형유한요소해석 결과, 하중가력방향과 평행한 기둥폭이 길어질수록 위험단면 측면에서 비틀림 전단을 받는 유효영역과 측면최대전단강도가 줄어들어 접합부의 강도가 큰 폭으로 감소한다. 중력하중은 접합부 위험단면에 부모멘트를 재하시키므로 측면의 최대전단응력을 감소시키며 접합부의 강도와 연성도를 줄어들게 한다. 중력하중이 재하되지 않은 경우, 경간길이가 길어질수록, 위험단면의 강성이 줄어들어 접합부의 강도와 연성도가 증가한다. 반면, 중력하중이 상대적으로 크게 재하된 경우, 경간길이가 짧을수록 접합부 강도가 증가하는데, 이는 동일한 크기의 전단력이 위험단면에 재하된다 하더라도 경간의 길이가 길어질수록 접합부 주변의 부모멘트로 인한 영향을 더 크게 받기 때문이다. 이와 같은 설계변수의 영향을 고려하여 접합부 강도를 산정하기 위하여 유효최대전단응력값을 제안하였으며 이 값을 사용하여 플랫플레이트-기둥 접합부의 강도를 산정할 경우, 기존 강도평가방법보다 정확한 예측이 가능함을 수치해석과의 비교를 통하여 검증하였다.

지반의 동적특성에 기초한 액상화 평가법(I) : 이론제안 (A New Methodology for the Assessment of Liquefaction Potential Based on the Dynamic Characteristics of Soils (I) : A Proposal of Methodology)

  • 최재순;홍우석;박인준;김수일
    • 한국지반공학회논문집
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    • 제18권1호
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    • pp.91-99
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    • 2002
  • 본 연구에서는 변형률 수준별 실내진동시험 및 지진응답해석의 수행을 기초로 하는 새로운 액상화 평가법을 제안하였다. 제안된 평 가법에서는 비 배수조건 하에서 진동전단하중으로 야기된 과잉간극수압의 누적으로 액상화가 발생하는 점을 고려하여 진동하중을 받는 포화지반의 액상화 거동을 실내진동시험결과의 전단응력-전단변형률 이력곡선을 토대로 산정한 교란도와 소성 전단변형률 상각궤도의 변화로 정의하였으며, 이를 실지진 시간이력의 지반 내 거동변화와 연계시킴으로써 지진이 보유한 연속성 및 불규칙성을 합리적으로 고려하도록 하였다. 또한, 제안된 평가법에서는 진동하중의 변화에 관계없이 액상화 발생시 포화사절토의 동적특성은 일정하다는 일련의 연구사례를 토대로 내친 해석시 이용되는 전변형률 수준의 동적물성 획득시험만으로도 액상화 평가가 가능하도록 하였으며 정현하중의 크기를 달리한 진동삼축시험에서 산정된 액상화 발생시의 소성 전단변형률 상각궤도를 비교함으로써 이에 대한 검증연구를 수행하였다. 연구결과, 진동정현하중의 크기에 관계없이 액상화 발생시 지반의 동적특성 치가 유일한 값을 나타내었다 그러므로, 제안된 평가법은 변형률 수준별 실내진동시험을 통해 지반의 동적물성 획득과 액낭화 평가 수행이 가능할 뿐만 아니라, 지진응답해석을 통해 불규칙한 실지진 시간이력 전부를 고려하는 특징으로 육상화 평가결과의 신뢰성을 향상시킬 수 있을 것으로 판단된다.

휨과 비틀림을 동시에 받는 강/콘크리트 합성 제형 박스거더의 극한강도 상호작용 (Ultimate Strength Interaction of Steel/Concrete Composite Trapezoidal Box Girders Subjected to Concurrent Action of Bending and Torsion)

  • 김경식
    • 한국강구조학회 논문집
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    • 제22권5호
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    • pp.465-475
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    • 2010
  • 곡선교량시스템에서 거더는 편심하중이 없어도 교량이 가지는 곡률 자체로 인하여 휨 및 비틀림 거동을 하게 된다. 휨과 비틀림을 동시에 받는 강/콘크리트 합성 박스거더는 St. Venant 비틀림에 의해 콘크리트 바닥판에 발생하는 사인장 응력에 의해 그 극한강도가 제한된다. 합성 박스거더의 극한강도를 얻기 위하여 유한요소해석 패키지 프로그램 ABAQUS을 이용하여 재료 및 기하 비선형성뿐 아니라 콘크리트 균열후 거동 등이 고려된 비선형해석을 수행하였다. 또한 구조해석 이론에 근거한 해석적 방법론으로 합성 박스거더의 휨과 비틀림에 대한 극한강도 상호 작용이 고려된 수식을 유도하여 수치해석 결과와 비교하였다. 휨 거동에 의해 정모멘트 구간 박스거더 상부에 발생하는 종방향 압축응력은 바닥판 콘크리트의 전단강도를 일정부분 향상시켜 결과적으로 전체 박스거더의 비틀림강도가 향상되는 효과가 확인되었다. 유한요소해석 및 구조해석 이론 전개의 결과에 근거하여 강합성 박스거더의 극한강도 상호작용을 예측하는 간편한 형태의 수식이 제안되었다.

Seismic response estimation of steel buildings with deep columns and PMRF

  • Reyes-Salazar, Alfredo;Soto-Lopez, Manuel E.;Gaxiola-Camacho, Jose R.;Bojorquez, Eden;Lopez-Barraza, Arturo
    • Steel and Composite Structures
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    • 제17권4호
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    • pp.471-495
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    • 2014
  • The responses of steel buildings with perimeter moment resisting frames (PMRF) with medium size columns (W14) are estimated and compared with those of buildings with deep columns (W27), which are selected according to two criteria: equivalent resistance and equivalent weight. It is shown that buildings with W27 columns have no problems of lateral torsional, local or shear buckling in panel zone. Whether the response is larger for W14 or W27 columns, depends on the level of deformation, the response parameter and the structural modeling under consideration. Modeling buildings as two-dimensional structures result in an overestimation of the response. For multiple response parameters, the W14 columns produce larger responses for elastic behavior. The axial load on columns may be significantly larger for the buildings with W14 columns. The interstory displacements are always larger for W14 columns, particularly for equivalent weight and plane models, implying that using deep columns helps to reduce interstory displacements. This is particularly important for tall buildings where the design is usually controlled by the drift limit state. The interstory shears in interior gravity frames (GF) are significantly reduced when deep columns are used. This helps to counteract the no conservative effect that results in design practice, when lateral seismic loads are not considered in GF of steel buildings with PMRF. Thus, the behavior of steel buildings with deep columns, in general, may be superior to that of buildings with medium columns, using less weight and representing, therefore, a lower cost.

Wake effects of an upstream bridge on aerodynamic characteristics of a downstream bridge

  • Chen, Zhenhua;Lin, Zhenyun;Tang, Haojun;Li, Yongle;Wang, Bin
    • Wind and Structures
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    • 제29권6호
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    • pp.417-430
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    • 2019
  • To study the wake influence of an upstream bridge on the wind-resistance performance of a downstream bridge, two adjacent long-span cable-stayed bridges are taken as examples. Based on wind tunnel tests, the static aerodynamic coefficients and the dynamic response of the downstream bridge are measured in the wake of the upstream one. Considering different horizontal and vertical distances, the flutter derivatives of the downstream bridge at different angles of attack are extracted by Computational Fluid Dynamics (CFD) simulations and discussed, and the change in critical flutter state is further studied. The results show that a train passing through the downstream bridge could significantly increase the lift coefficient of the bridge which has the same direction with the gravity of the train, leading to possible vertical deformation and vibration. In the wake of the upstream bridge, the change in lift coefficient of the downstream bridge is reduced, but the dynamic response seems to be strong. The effect of aerodynamic interference on flutter stability is related to the horizontal and vertical distances between the two adjacent bridges as well as the attack angle of incoming flow. At large angles of attack, the aerodynamic condition around the downstream girder which may drive the bridge to torsional flutter instability is weakened by the wake of the upstream bridge, and the critical flutter wind speed increases at this situation.

춤이 큰 웨브 변단면 H형 보의 휨내력에 대한 해석적 평가 (An Analytical Evaluation on Buckling Resistance of Tapered H-Section Deep Beam)

  • 이성희;심현주;이은택;홍순조;최성모
    • 한국강구조학회 논문집
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    • 제19권5호
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    • pp.493-501
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    • 2007
  • 최근, 국내에서는 물량절감과 경제성 확보를 목적으로 변단면 부재의 적용이 활발히 이루어지고 있으나 재료비선형을 이용한 설계방법으로는 취성파괴의 문제점에 대한 명확한 해결책을 제시하지 못하고 있으며, 변단면 부재의 초기변형, 폭두께비, 웨브 스티프너, 횡지지 거리등에 관한 연구가 부족한 실정이다. 따라서 본 연구에서는 기존에 연구된 이론식과 재료 및 기하 비선형 해석으로 신뢰성이 입증된 범용 유한요소 해석 프로그램인 ANSYS 9.0을 이용하여 춤이 큰 변단면 H형 보의 해석 모델을 완성하고 실험결과를 바탕으로 판-폭두께비와 비지지거리를 주요변수로 좌굴 및 극한내력을 평가하여, 웨브의 판폭두께비가 클 경우 좌굴내력이 감소하며, 횡 비지지 거리를 짧게 할 경우 연성능력을 향상시킬수 있음을 확인 하였다.

K3에 축적된 내부 응력이 피로 파절에 미치는 영향 (Effect of internal stress on cyclic fatigue failure in K3)

  • 김준영;김진우;조경모;박세희
    • Restorative Dentistry and Endodontics
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    • 제37권2호
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    • pp.74-78
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    • 2012
  • Objectives: This study aimed to evaluate the relationship between the cyclic fatigue of a K3 file and internal stress intentionally induced until the activation of the autostop function of the torque-controlled motor. Materials and Methods: K3 (Sybron Endo) .04 and .06 taper, size 25, 30, 35, 40 and 45 were used in this study. To give the internal stress, the K3 files were put into the .02 taper Endo-Training-Bloc (Dentsply Maillefer) until the activation of the auto-stop function of the torque-controlled motor. The rotation speed was 300 rpm and torque value was 1.0 $N{\cdot}cm$. K3 were grouped by the number of induced internal stress and randomly distributed to 4 experimental groups (n = 10, Stress 0 [control], Stress 1, Stress 2 and Stress 3). For measuring the cyclic fatigue failure, the K3 files were worked against a sloped glass block and time for file separation was recorded. Data was statistically analyzed Statistical analyses were performed using two-way ANOVA and Duncan post-hoc test at p < 0.05 level. Results: Except .04 taper size 30 in Stress 1 group, there were statistically significant differences in time for file separation between control and all experimental groups. K3 with .04 taper showed higher cyclic fatigue resistance than those of .06 taper. Conclusion: In the limitation of this study, the cyclic fatigue of the K3 file was influenced by the accumulated internal stress from use until the auto-stop function was activated by the torque-controlled motor. Therefore, clinicians should avoid the reuse of the K3 file that has undergone auto-stops.

Development of a Screw-Crane System for Pre-Lifting the Sternal Depression in Pectus Excavatum Repair: A Test of Mechanical Properties for the Feasibility of a New Concept

  • Park, Hyung Joo;Rim, Gongmin
    • Journal of Chest Surgery
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    • 제54권3호
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    • pp.186-190
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    • 2021
  • Background: Pre-lifting of the sternum marked a major turning point in pectus excavatum repair. The author developed the crane technique in 2002 and successfully applied it to more than 2,000 cases using sternal wire stitching. However, blind sternal suturing limited the use of the wire-stitch crane. We propose a novel screw for sternal lifting as a new tool for the crane technique. Methods: We developed a screw system strong enough to withstand the pressure needed for sternum lifting. The screw was designed to have a broader thread to hold the bony tissue securely. The screw's sustaining power was tested using the torsion, driving torque, and axial pull-out tests in a polyurethane block and ex-vivo porcine sternum. Results: The screws were easily driven into the sternum, and the head of the screw was connectable to the table-mounted retractor. In the torsion test, the 2° offset torsional yield was 4.53 N·m (reference value, 1 N·m). In the polyurethane block driving torque test, the maximum torque was 0.98 N·m (reference value, 0.70 N·m). The axial pull-out test was 446 N (reference value, 100 N). The maximum pull-out resistance in the ex-vivo porcine sternum model was 1,516 N. Conclusion: The screw crane was strong enough to sustain the chest wall weight to be lifted. Thus, the screws could effectively replace the sternal wire stitching in crane pre-lifting of the sternum. We expect that application of the screw-crane will be easy and that it will improve the safety and success rate of pectus repair surgery.