• Title/Summary/Keyword: 아치형 구조물

Search Result 31, Processing Time 0.028 seconds

Structural Analysis of Cheju-style Plastic Greenhouse Model for Crop Growing Based on the Wind Load (풍하중을 고려한 제주형 작물재배용 비닐하우스모델의 구조해석)

  • 민창식;김용호;권기린
    • Journal of Bio-Environment Control
    • /
    • v.7 no.3
    • /
    • pp.181-190
    • /
    • 1998
  • An elastic analysis under wind load was performed for the double layered plastic greenhouse model developed particularly for minimizing damages under typhoons at Cheju Citrus Research institute in Seagipo city. General EVA film was used for the inner covering and the developed special film which would break the wind pressure down was used for the outer covering. The wind tunnel test showed this special film reduced the wind speed up to 86 to 98% under well controlled situation. Based on the elastic analysis performed in the study, the behavior of the greenhouse was changed significantly due to the boundary conditions. Not like other researchers before we applied dead load of the concrete support to the ground pipe and fixed support boundary conditions at the 4 corner pipes. The analysis shows that the greenhouse was lifted and pulled the pipe out of the ground due to the sucking wind pressure. The behavior of the greenhouse was quite similar to that one real greenhouse failure. Therefore, not only we need to find the realistic boundary conditions for the supports, but also need to find how to rest the pipe supports on the ground without economic loss.

  • PDF

Numerical Simulation of Arch-type Submarine Cable Protector under Anchor Collision (아치형 해저 케이블 보호 구조물의 앵커 충돌 수치 시뮬레이션)

  • Woo, Jin-Ho;Na, Won-Bae;Kim, Heon-Tae
    • Journal of Ocean Engineering and Technology
    • /
    • v.23 no.1
    • /
    • pp.96-103
    • /
    • 2009
  • In 2006, Jeju Island in South Korea experienced a crisis, no electricity for three hours anywhere in the entire island. This incident was caused by a domino effect that occurred after one of the submarine power cables connecting the island to Haenam, a coastal city on the mainland, was damaged by an external load, probably from a ship anchor or a steel pile being used in marine farming. This study presents a collision analysis of a new submarine power cable protector called arch type reinforced concrete. For the analysis, a dynamic finite element program, ANSYS AUTODYN, was used to examine the displacement and stress of the submarine power cable protector using different material models (RHT concrete model, Mohr.Coulomb concrete model). In addition, two reinforcing bar spacings, 75 mm and 150 mm, were considered. From the analyses, the effects of the parameters (concrete model and spacing) on the results (displacement and stress) were analyzed, and the relations between the damage and parameters were found.

Performance Evaluation of Encased-Concrete Bridge Plate(Deep Corrugated Steel Plate) Member (콘크리트 충전 브릿지 플레이트(대골형 파형강판) 부재의 성능평가)

  • Sim, Jong-Sung;Park, Cheol-Woo;Kim, Tae-Soo;Lee, Hyoung-Ho;Kang, Tae-Sung
    • Journal of the Korea Concrete Institute
    • /
    • v.22 no.3
    • /
    • pp.297-303
    • /
    • 2010
  • The current encased-concrete deep corrugated steel plate has an arch type plate structure, which is a compressive strength-dominant structure that has a small moment due to its arch shape. Therefore, it increases the strength against compression by adding reinforcements to make concrete-filling spaces for increasing the compressive strength and forming cross sections that contain reinforced concrete. In this study, the safety factor of the new-concept encased-concrete bridge plate member was evaluated by comparing the compressive strength obtained from the compressive tests, flexural tests and the design compressive strength determined by using the Canadian Highway Bridge Design Code (CHBDC, 2003), which is a design standard for the encased-concrete bridge plate structures. The results of the safety factor evaluation using the design compressive strength and the test results showed that the safety factor was well above the appropriate value 2.0, which could be adjudged very conservative. If the safety factor based on this study results is considered and applied to the design, economical construction will be possible due to the reduced cross section and construction cost.

Effect of the Member Joint on Structural Performance of an Arch-type Multi-span Greenhouse: A Full-scale Experimental and Numerical Study (부재 접합부가 아치형 연동온실의 구조 성능에 미치는 영향: 실대형 실험적 및 해석적 연구)

  • Choi, Man-kwon;Ryu, Hee-ryong;Cho, Myeong-whan;Yu, In-ho
    • Journal of Bio-Environment Control
    • /
    • v.26 no.4
    • /
    • pp.402-410
    • /
    • 2017
  • The effect of the steel pipe member joint on the design performance of a plastic multi-span greenhouse was analysed through the comparing full-scale experiment and numerical analysis. The design performance of the greenhouse is generally evaluated through numerical analysis, but it is rare to consider the characteristics of the connections or joints of the members. In this study, the effect of the column-gutter beam-rafter-wind break wall joint on the design performance of the whole structure of a plastic multi-span greenhouse was analysed. The numerical results with assuming that the member joint are rigid condition were compared with the full-scale load test results using member joints used in the field. The stiffness of the entire structure was compared using the load-displacement relationship and the change of the load sharing ratio that the main members such as column, rafters, and wind break wall was analysed. The results of the load test were about 40% larger than the numerical result and the member stress was more than twice as large as those of the loaded columns. In order to increase the reliability of the design performance of the greenhouse, it is necessary to develop a numerical analysis model which can consider the characteristics of various joints.

An Experimental Study on the Behavior of Curved Panel Parts Using Composite Materials (복합소재를 활용한 곡면 패널의 부재단위 성능 평가)

  • Park, Hee Beom;Park, Jong-Sup;Kang, Jae-Yoon;Jung, Woo-Tai
    • Journal of the Korea Academia-Industrial cooperation Society
    • /
    • v.19 no.7
    • /
    • pp.474-480
    • /
    • 2018
  • FRP is a new material that is lightweight, has high strength and high durability, and is emerging as a third construction material in many countries. The composite material panel targeted in this study was a curved member and is the most frequently used arch-shaped member of a structures, such as tunnels. Composite curved panels can be produced in high quality and large quantities through automation operations. On the other hand, the frequency of application is low, and the design criteria and experimental data are lacking. Therefore, this study examined the mechanical performance of the member unit first to verify its performance as structural members of the FRP curved panel. For this purpose, tensile, compression, and connection performance tests were carried out. The tensile tests showed greater tensile strength of specimens with larger curvature, and the compression tests showed that the composite section of a composite material has greater compressive strength than the concrete section. Finally, the test of the performance of the connection showed that the attachment performance of the connection was more than equal to that of the FRP composite material panel.

Static Behavior of Concrete-Filled and Tied Steel Tubular Arch(CFTA) Girder (CFTA거더의 정적 거동연구)

  • Kim, Jong-In;Kim, Doo-kie;Lee, Jang-hyeong;Kim, Jeong-Ho
    • Journal of the Korea institute for structural maintenance and inspection
    • /
    • v.13 no.3 s.55
    • /
    • pp.225-231
    • /
    • 2009
  • This study introduces the CFTA girder(Concrete-Filled and Tied Steel Tubular Arch Girder) which is a combined structural system of traditional CFT, arch, and prestress structures. Static load tests and structural behavior analyses were carried out for a 25m long CFTA girder. In the analysis, each load of 58kN, 88kN, 148kN, 207kN,and 298kN was applied incrementally at the positions of 1.0 m distances in both directions from the center of the girder. On each test, strain and displacement were measured. Linear static FEM analyses using Strand7 code were also performed to check the structural stability and to investigate the effects of prestressing(${\pm}$20%) and material property(Young's modulus) on the displacement and strain. The results of this study are summarized as follows: the initial strain & displacement under selfweight and prestressing were influenced with the variation of prestressing, but they were mainly effected only by Young's modulus when additional loads were applied.

Problems and Improvement Plans of River-Crossing Structures (하천횡단구조물의 문제점과 개선방안)

  • Kim, Ki Heung;Jung, Hye Ryeon
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2015.05a
    • /
    • pp.568-572
    • /
    • 2015
  • 하천횡단구조물은 하천을 횡단하는 시설물로, 크게 농업용수 취수용 보, 하도개수시 유속제어를 위한 낙차공 등을 들 수 있으며, 각각의 설치목적에 따라 그 형태와 설계제원(높이, 마루폭, 바닥보호공의 길이 등)이 다르나, 하천을 횡단하여 인공적인 구조물을 설치하는 형태는 동일하다. 따라서, 하천횡단구조물은 홍수시 배수위 영향으로 상류에 수위상승을 초래하여 하천의 치수 안전도를 저하시킬 뿐 아니라 직하류에서는 하상의 세굴에 의하여 호안 및 제방이 파괴되는 경우도 빈번하게 발생하고 있다. 또한, 하천횡단구조물은 생태계의 이동통로로서의 종적 연속성을 차단하는 것이다. 즉 하천을 따라 거슬러 올라가는 소하성 어종(anadromous species)이나 하천에서 바다로 내려가는 강하성 어종(catadromous species)과 같은 회유성 어종의 이동을 차단하기도 하며, 회유성 어종 이외에도 치어와 성어의 성장환경이 다른 어종의 경우는 상 중 하류를 옮겨가며 성장하는 어종의 이동도 차단하고 있다. 하천횡단구조물은 치 이수적 측면에서 반드시 필요한 하천구조물로서 치수, 생태 및 경관의 측면에서 여러 가지 문제점을 가지고 있으나 지금까지는 어도설치나 기능을 상실한 보의 철거 등 소극적인 수준에 머무르고 있기에 적극적인 개선대책이 필요한 실정이다. 따라서, 하천횡단구조물로 인한 문제점을 파악하기 위하여 경남의 20개 시 군 684개의 지방 하천에 설치된 7,725개의 하천횡단구조물에 대한 전수조사를 실시하고, 구조형식, 높이, 재료, 어도 설치 여부, 세굴현황 등을 분석하였다. 하천횡단구조물의 용도별 구성비는 보가 49%, 낙차공이 51%로 나타났으며, 구조형식은 콘크리트 구조가 72%, 콘크리트 석재 구조가 25%, 석재 구조가 3%인 것으로 분석되었다. 또한, 하천횡단구조물의 본체 높이별 구성비는 0.5m 이하가 14%, 0.5~1.0m가 35%, 1.0~1.5m가 34%, 1.5~2.0m가 10%, 2.0m 이상이 7%인 것으로 조사되었다. 어도 설치는 약 9%인 669개소에 설치되어 있었으나 대부분이 어류 등의 이용하는 생태통로 기능을 발휘할 수 없는 것으로 분석되었다. 따라서, 이러한 문제점을 해결하기 위해서 하폭, 하상고, 하상경사, 굴입정도, 유사량 등의 하도특성 및 용수이용 여건 등을 고려하여 유공관을 이용한 지하보, 석재 아치의 원리를 이용한 계단식 자연형 보/낙차공, 부분 램프 설치, 거석 놓기 등의 개선방안을 제안하였다. 제안된 개선방안은 하천복원 및 하천개수 사업 시행시에 반영하여 합리적인 하천복원 및 관리에 활용될 수 있을 것이다.

  • PDF

Inelastic Nonlinear Analysis of Arch Truss and Space Truss Structures (아치 트러스 및 공간 트러스 구조의 비탄성 비선형 거동해석)

  • Kim, Kwang-Joong;Jung, Mi-Roo;Kim, Yeon-Tae;Baek, Ki-Youl;Lee, Jae-Hong
    • Journal of Korean Association for Spatial Structures
    • /
    • v.8 no.5
    • /
    • pp.47-58
    • /
    • 2008
  • Spatial structure is an appropriate shape that resists external force only with in-plane force by reducing the influence of bending moment, and it maximizes the effectiveness of structural system. With this character of the spatial structure, generally long span is used. As a result, large deflection is accompanied from the general frame. the structure is apt to result in a large deflection even though this structure experiences a small displacement in absence. Usually, nonlinear analysis in numerical analysis means geometric nonlinearity and material nonlinearity and complex nonlinearity analysis considers both of them. In this study, nonlinear equation of equilibrium considering geometric nonlinearity as per finite element method was applied and also considered the material nonlinearity using the relation of stress-strain in element. It is applied to find unstable result for tracing load-deflection curve in the numerical analysis tech. especially Arc-length method, and result of the analysis was studied by ABAQUS a general purpose of the finite element program. It is found that the present analysis predicts accurate nonlinear behavior of plane and space truss.

  • PDF

Design of an Automatic Height Adjustable Pillow using 3D Printing and CAE (전산해석과 3D 프린팅을 이용한 자동높이조절 베개의 설계)

  • Park, Geun Young;Lee, Hyoungwook
    • The Journal of the Convergence on Culture Technology
    • /
    • v.4 no.1
    • /
    • pp.331-335
    • /
    • 2018
  • A pillow was fabricated through CAE(Computer Aided Engineering) and 3D printing, which can adjust automatically the height of the pillow when lying sideways and backwards according to the sleeping posture. The target height difference of the pillow was about 1.0 cm ~ 1.5 cm when the head weight difference was about 1.2 kg. Instead of using a complex mechanical device, it was based on an arch structure made of TPU. From the simulation, the optimum model was designed through series combination and the results were compared with the experimental ones. The final product had a height difference of about 2 cm according to the lying posture.

Analysis of Nonlinear Behaviors of Shotcrete-Steel Support Lining Considering the Axial Force Effects (축력의 영향을 고려한 숏크리트-강지보 합성 라이닝의 비선형 거동 분석)

  • Yu, Jeehwan;Kim, Jeongsoo;Kim, Moon Kyum
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.37 no.2
    • /
    • pp.357-367
    • /
    • 2017
  • Bending and axial forces simultaneously occur at the cross-section of a shotcrete lining reinforced with steel supports due to the tunnel geometry. The shotcrete has changing flexural stiffness depending on the axial forces and, as a result, severely nonlinear behavior. The mechanical properties of a shotcrete-steel composite also depend on the type of steel support. This study presents a fiber section element model considering the effect of axial force to evaluate the nonlinear behavior of a shotcrete-steel composite. Additionally, the model was used to analyze the effects of different types of steel supports on the load capacity. Furthermore, a modified hyperbolic model for ground reaction, including strain-softening, is proposed to account for the ground-lining interaction. The model was validated by comparing the numerical results with results from previous load test performed on arched shotcrete specimens. The changes in mechanical responses of the lining were also investigated. Results show a lining with doubly reinforcement rebar has similar load capacity as a lining with H-shaped supports. The use of more materials for the steel support enhances the residual resistance. For all types of steel reinforcement, the contribution of steel supports during peak load decreases as the ground becomes stiffer.