• 제목/요약/키워드: long-span roof

검색결과 32건 처리시간 0.027초

이력에너지흡수 원리를 이용한 대경간 구조물의 내진설계(1) -이선형 탄소성 이력거동에 의안 에너지 소산원리를 이용하는 방법- (Seismic Design of Long Span Structures Based on Hysteric Energy Absorption Mechanism(1))

  • 정명채;원성대
    • 한국공간구조학회논문집
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    • 제10권1호
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    • pp.85-93
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    • 2010
  • 공간구조의 지붕을 지지하는 기둥상단부에 탄소성기구를 설치하여 설계 하중을 초과하는 지진동이 가해졌을 때 이 기구의 탄소성 이력거동을 통하여 지진에너지가 흡수되는 효과를 검토한다. 이 효과로 지붕트러스로 전달되는 지진에너지가 저감되는 것을 입증하고 이러한 원리를 공간구조물의 제진설계에 활용할 수 있음을 입증한다. 트러스 형식의 지붕구조에 설계하중 이상의 외력이 가해지는 경우에는 구성부재의 좌굴파괴로 인한 건물전체의 취성붕괴가 예상되기 때문에 이러한 상황에서 구조안전성을 확보하는 설계법이 요망되며, 이 논문은 트러스 지붕에 전달되는 지진에너지를 감소시키는 설계방법을 제안하고 있다.

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Comparison between wind load by wind tunnel test and in-site measurement of long-span spatial structure

  • Liu, Hui;Qu, Wei-Lian;Li, Qiu-Sheng
    • Wind and Structures
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    • 제14권4호
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    • pp.301-319
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    • 2011
  • The full-scale measurements are compared with the wind tunnel test results for the long-span roof latticed spatial structure of Shenzhen Citizen Center. A direct comparison of model testing results to full-scale measurements is always desirable, not only in validating the experimental data and methods but also in providing better understanding of the physics such as Reynolds numbers and scale effects. Since the quantity and location of full-scale measurements points are different from those of the wind tunnel tests taps, the weighted proper orthogonal decomposition technique is applied to the wind pressure data obtained from the wind tunnel tests to generate a time history of wind load vector, then loads acted on all the internal nodes are obtained by interpolation technique. The nodal mean wind pressure coefficients, root-mean-square of wind pressure coefficients and wind pressure power spectrum are also calculated. The time and frequency domain characteristics of full-scale measurements wind load are analyzed based on filtered data-acquisitions. In the analysis, special attention is paid to the distributions of the mean wind pressure coefficients of center part of Shenzhen Citizen Center long-span roof spatial latticed structure. Furthermore, a brief discussion about difference between the wind pressure power spectrum from the wind tunnel experiments and that from the full-scale in-site measurements is compared. The result is important fundament of wind-induced dynamic response of long-span spatial latticed structures.

Fatigue wind load spectrum construction based on integration of turbulent wind model and measured data for long-span metal roof

  • Liman Yang;Cong Ye;Xu Yang;Xueyao Yang;Jian-ge Kou
    • Wind and Structures
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    • 제36권2호
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    • pp.121-131
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    • 2023
  • Aiming at the problem that fatigue characteristics of metal roof rely on local physical tests and lacks the cyclic load sequence matching with regional climate, this paper proposed a method of constructing the fatigue load spectrum based on integration of wind load model, measured data of long-span metal roof and climate statistical data. According to the turbulence characteristics of wind, the wind load model is established from the aspects of turbulence intensity, power spectral density and wind pressure coefficient. Considering the influence of roof configuration on wind pressure distribution, the parameters are modified through fusing the measured data with least squares method to approximate the actual wind pressure load of the roof system. Furthermore, with regards to the wind climate characteristics of building location, Weibull model is adopted to analyze the regional meteorological data to obtain the probability density distribution of wind velocity used for calculating wind load, so as to establish the cyclic wind load sequence with the attributes of regional climate and building configuration. Finally, taking a workshop's metal roof as an example, the wind load spectrum is constructed according to this method, and the fatigue simulation and residual life prediction are implemented based on the experimental data. The forecasting result is lightly higher than the design standards, consistent with general principles of its conservative safety design scale, which shows that the presented method is validated for the fatigue characteristics study and health assessment of metal roof.

Dynamic analysis method for the progressive collapse of long-span spatial grid structures

  • Tian, Li-min;Wei, Jian-peng;Hao, Ji-ping;Wang, Xian-tie
    • Steel and Composite Structures
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    • 제23권4호
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    • pp.435-444
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    • 2017
  • In the past, the progressive collapse resulting from local failures during accidents has caused many tragedies and loss of life. Although long-span spatial grid structures are characterised by a high degree of static indeterminacy, the sudden failure of key members may lead to a catastrophic progressive collapse. For this reason, it is especially necessary to research the progressive collapse resistance capacity of long-span spatial grid structures. This paper presents an evaluation method of important members and a novel dynamic analysis method for simulating the progressive collapse of long-span spatial grid structures. Engineering cases were analysed to validate these proposed method. These proposed methods were eventually implemented in the progressive collapse analysis of the main stadium for the Universiade Sports Center. The roof of the structure was concluded to have good resistance against progressive collapse. The novel methods provide results close to practice and are especially suitable for the progressive collapse analysis of long-span spatial grid structures.

Experimental and Computational Investigation of Wind Flow Field on a Span Roof Structure

  • K B Rajasekarababu;G Vinayagamurthy;Ajay Kumar T M;Selvirajan S
    • 국제초고층학회논문집
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    • 제11권4호
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    • pp.287-300
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    • 2022
  • Unconventional structures are getting more popular in recent days. Large-span roofs are used for many structures, such as airports, stadiums, and conventional halls. Identifying the pressure distribution and wind load acting on those structures is essential. This paper offers a collaborative study of computational fluid dynamics (CFD) simulations and wind tunnel tests for assessing wind pressure distribution for a building with a combined slender curved roof. The hybrid turbulence model, Improved Delayed Detached Eddy Simulation (IDDES), simulates the open terrain turbulent flow field. The wind-induced local pressure coefficients on complex roof structures and the turbulent flow field around the structure were thus calculated based upon open terrain wind flow simulated with the FLUENT software. Local pressure measurements were investigated in a boundary layer wind tunnel simultaneous to the simulation to determine the pressure coefficient distributions. The results predicted by CFD were found to be consistent with the wind tunnel test results. The comparative study validated that the recommended IDDES model and the vortex method associated with CFD simulation are suitable tools for structural engineers to evaluate wind effects on long-span complex roofs and plan irregular buildings during the design stage.

광주월드컵 경기장 지붕면의 풍압특성에 관한 실험적 연구 (An Experimental Study on Characteristics of Wind Pressure on Long-Span Roof of the Kwangju World Cup Stadium)

  • 박연수;김윤석;박선준
    • 한국강구조학회 논문집
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    • 제12권5호통권48호
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    • pp.495-502
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    • 2000
  • 본 연구에서는 광주월드컵 경기장을 같은 형태의 지붕이 하나인 경우와 두 개인 경우로 구분하여 풍동실험을 수행하였으며 그 실험결과에 대해서 고찰하였다. 본 실험에서는 1/400의 축소모형을 이용하였다. 지붕이 1개가 설치되는 경우와 2개가 설치되는 경우에 대한 풍압측정결과 2개의 지붕면이 설치되면 단위면적당 풍하중이 1개의 지붕면의 경우에 비해 구조골조용 풍하중은 최대35%정도의 감소됨을 알 수 있었다. 이러한 결과는, 지붕면에 작용하는 풍하중은 높이에만 의존되어 결정되는 현행 풍하중 규준의 적용한계를 나타냄과 동시에 대형 구조물의 경우 풍동실험이 반드시 필요함을 나타내는 내는 일례라고 할 수 있다.

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Experimental and Numerical Assessment of the Service Behaviour of an Innovative Long-Span Precast Roof Element

  • Lago, Bruno Dal
    • International Journal of Concrete Structures and Materials
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    • 제11권2호
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    • pp.261-273
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    • 2017
  • The control of the deformative behaviour of pre-stressed concrete roof elements for a satisfactory service performance is a main issue of their structural design. Slender light-weight wing-shaped roof elements, typical of the European heritage, are particularly sensitive to this problem. The paper presents the results of deformation measurements during storage and of both torsional-flexural and purely flexural load tests carried out on a full-scale 40.5 m long innovative wing-shaped roof element. An element-based simplified integral procedure that de-couples the evolution of the deflection profile with the progressive shortening of the beam is adopted to catch the experimental visco-elastic behaviour of the element and the predictions are compared with normative close-form solutions. A linear 3D fem model is developed to investigate the torsional-flexural behaviour of the member. A mechanical non-linear beam model is used to predict the purely flexural behaviour of the roof member in the pre- and post-cracking phases and to validate the loss prediction of the adopted procedure. Both experimental and numerical results highlight that the adopted analysis method is viable and sound for an accurate simulation of the service behaviour of precast roof elements.

쌍곡선포물선 대공간 구조물의 측벽개구율에 따른 지붕의 풍압특성 (Characteristic of Wind Pressure Distribution on the Roof of Hyperbolic Paraboloid Spatial Structures)

  • 유장열;유기표
    • 한국공간구조학회논문집
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    • 제13권1호
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    • pp.51-57
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    • 2013
  • There can be diverse causes in the destruction of a large space structure by strong wind such as characteristics of construction materials and changes in internal and external wind pressure of the structure. To evaluate the wind pressure of roof against the large space structure, wind pressure experiment is performed. However, in this wind pressure experiment, peak internal pressure coefficient is set according to the opening of the roof in Korea wind code. In this article, it was tried to identify the change of internal pressure coefficient and the characteristics of wind pressure coefficient acting on the roof by two kinds of opening on the side of the structure with Hyperbolic Paraboloid Spatial Structures roof. When analyzing internal pressure coefficient according to roof shape, it was found that minimum (52%) and maximum (30%~80%) overestimation was made comparing to partial opening type proposed in the current wind load. It is judged that evaluation according to the opening rate of the structure should be made to evaluate the internal pressure coefficient according to load.

대공간구조물에 시공된 영구앵커의 장기거동 (Long Term Behavior of Permanent Rock Anchorages in Large Spatial Span Structures)

  • 유남재;김대학;박병수;김재일;이종용
    • 한국구조물진단유지관리공학회 논문집
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    • 제10권6호
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    • pp.123-135
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    • 2006
  • 대부분의 대공간 구조물은 도시의 상징물인 동시에 구조물의 용도를 만족하여야 하므로 기초가 구조물의 지지, 형태유지 또는 전도방지, 부력저항 등의 다양한 역할을 갖도록 설계되었다. 이에 따라 여러 형태의 기초가 도입되었는데 본 연구에서는 이중 구조물 형태유지 및 전도방지를 위해 앵커력을 도입한 두가지 월드컵 운동장의 경우를 비교 검토하여 건설공정에서 점검된 앵커력의 변화를 검토하였다. 본 연구에서는 반구형지붕의 바깥방향으로 작용되는 수평력 제어를 위해 시공된 앵커(Case1)와 캔틸레버 지붕의 전도방지를 위한 앵커(Case2) 2가지 사례에 대한 앵커력의 도입과정과 최초 앵커력 도입에 따른 대공간 구조물의 장기거동에 대하여 알아보았다.

Wind resistance performance of a continuous welding stainless steel roof under static ultimate wind loading with testing and simulation methods

  • Wang, Dayang;Zhao, Zhendong;Ou, Tong;Xin, Zhiyong;Wang, Mingming;Zhang, Yongshan
    • Wind and Structures
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    • 제32권1호
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    • pp.55-69
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    • 2021
  • Ultrapure ferritic stainless steel provides a new generation of long-span metal roof systems with continuous welding technology, which exhibits many unknown behaviors during wind excitation. This study focuses on the wind-resistant capacity of a new continuous welding stainless steel roof (CWSSR) system. Full-scale testing on the welding joints and the CWSSR system is performed under uniaxial tension and static ultimate wind uplift loadings, respectively. A finite element model is developed with mesh refinement optimization and is further validated with the testing results, which provides a reliable way of investigating the parameter effect on the wind-induced structural responses, namely, the width and thickness of the roof sheeting and welding height. Research results show that the CWSSR system has predominant wind-resistant performance and can bear an ultimate wind uplift loading of 10.4 kPa without observable failures. The welding joints achieve equivalent mechanical behaviors as those of base material is produced with the current of 65 A. Independent structural responses can be found for the roof sheeting of the CWSSR system, and the maximum displacement appears at the middle of the roof sheeting, while the maximum stress appears at the connection supports between the roof sheeting with a significant stress concentration effect. The responses of the CWSSR system are greatly influenced by the width and thickness of the roof sheeting but are less influenced by the welding height.