• 제목/요약/키워드: Energy Dissipation System

검색결과 478건 처리시간 0.032초

CBD 시스템으로 보강된 비내진 RC 골조의 내진성능 평가 (Seismic Capacity of Non-seismic Designed RC Framed Building Retrofitted by CBD System)

  • 허무원;이상현;천영수
    • 콘크리트학회논문집
    • /
    • 제27권6호
    • /
    • pp.625-632
    • /
    • 2015
  • 본 연구에서는 내진설계 이전에 지어진 학교 건물을 대상으로 내진보강효과를 알아보기 위하여 CBD 시스템을 설치하여 기존 비내진 설계된 보강 RC골조 실험결과와 비교 분석하였다. 실험결과, 비내진 설계된 실험체는 좌 우측 기둥의 상 하부에 피해가 집중되면서 급격한 강도저하와 함께 취성적인 전단파괴의 양상을 나타낸 반면, CBD 시스템을 보강한 실험체는 강도 및 강성의 증가와 함께 탄소성 거동을 보이면서 에너지 흡수 능력이 큰 타원형의 이력특성을 나타내었다. 또한, 두 실험체의 강성저하를 비교한 결과 CBD 시스템을 보강한 실험체가 강성저하를 방지하는데도 효과적임을 알 수 있었다. 에너지소산능력도 CBD 시스템을 보강한 실험체가 비보강 실험체에 비해 약 4.0배의 향상된 결과를 나타내었다. 이러한 에너지소산능력의 증진은 내력과 변형 능력의 증진에 따른 결과라고 사료된다. 본 연구에서 제안하는 CBD 시스템을 적용할 경우 비내진 상세를 갖는 철근콘크리트 골조의 내력 증진 및 안전성 확보를 위해 국내 내진기준에서 요구하는 허용층간변형각 기준을 만족하도록 보강하는데 용이하게 적용될 수 있을 것으로 판단된다.

강재 보강에 따른 기존 학교건축물의 내진성능에 관한 실험적 연구 (Experimental Study on Aseismic Performance Existing School Buildings due to the Steel Reinforcement)

  • 이호;박성무;권영욱;변상민
    • 한국공간구조학회논문집
    • /
    • 제13권3호
    • /
    • pp.45-55
    • /
    • 2013
  • The core aim of this paper is to empirically scrutinize a strength characteristic and ductility of the beam-column frame of reinforced with steel subjected to the cyclic lateral load. First and foremost, I the author embarks upon making four prototypes vis-$\grave{a}$-vis this research. Through this endeavour, the author has analysed cyclic behavior, fracture shape, ductility and energy dissipation of the normal beam-column frame and a beam-column frame of reinforced with steel. In addition, the survey has revealed the exact stress transfer path and the destructive mechanism in order to how much a beam-column frame of reinforced with steel has resistance to earthquake regarding all types of building, as well as school construction. To get the correct data, the author has compared the normal beam-column frame and three types of the beam-column frame of reinforced with steel following these works, the characteristic of cyclic behavior, destructive mechanism, ductility, and Energy dissipation of normal beam-column frame and a beam-column frame of reinforced with steel have been examined clearly.

TS 제진공법으로 내진보강된 철근콘크리트 골조의 내진성능(Part 2:해석적 연구) (Seismic Performance of RC Frame System Retrofitted with TS Seismic Strengthening Method(Part 2:Analytical Study))

  • 정명철;송정원;송진규
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제22권2호
    • /
    • pp.148-153
    • /
    • 2018
  • 본 연구에서는 TS 내진보강공법의 내진보강 효과 검증을 목적으로 7개의 지진파에 대한 TS 댐퍼(Tension Spring-Damper)로 내진보강된 구조물의 비선형 시간이력해석을 수행하였다. 비선형 시간이력 해석을 통해 얻어진 무보강 구조물의 층간변위비와 에너지소산 양과 비교한 결과 층간변위비가 약 30% 가량 감소하였고, 구조체를 통한 에너지 소산의 양은 반감되었다. 이를 통해 TS 내진보강공법의 제진성능이 우수함을 확인하였다.

Seismic behavior of RC frames with partially attached steel shear walls: A numerical study

  • Kambiz Cheraghi;Majid Darbandkohi;Mehrzad TahamouliRoudsari;Sasan Kiasat
    • Earthquakes and Structures
    • /
    • 제25권6호
    • /
    • pp.443-454
    • /
    • 2023
  • Steel shear walls are used to strengthen steel and concrete structures. One such system is Partial Attached Steel Shear Walls (PASSW), which are only connected to frame beams. This system offers both structural and architectural advantages. This study first calibrated the numerical model of RC frames with and without PASSW using an experimental sample. The seismic performance of the RC frame was evaluated by 30 non-linear static analyses, which considered stiffness, ductility, lateral strength, and energy dissipation, to investigate the effect of PASSW width and column axial load. Based on numerical results and a curve fitting technique, a lateral stiffness equation was developed for frames equipped with PASSW. The effect of the shear wall location on the concrete frame was evaluated through eight analyses. Nonlinear dynamic analysis was performed to investigate the effect of the shear wall on maximum frame displacement using three earthquake records. The results revealed that if PASSW is designed with appropriate stiffness, it can increase the energy dissipation and ductility of the frame by 2 and 1.2 times, respectively. The stiffness and strength of the frame are greatly influenced by PASSW, while axial force has the most significant negative impact on energy dissipation. Furthermore, the location of PASSW does not affect the frame's behavior, and it is possible to have large openings in the frame bay.

Seismic performance evaluation of a steel slit damper for retrofit of structures on soft soil

  • Mahammad Seddiq Eskandari Nasab;Jinkoo Kim;Tae-Sang Ahn
    • Steel and Composite Structures
    • /
    • 제51권1호
    • /
    • pp.93-101
    • /
    • 2024
  • This paper presents an experimental and analytical study on a steel slit damper designed as an energy dissipative device for earthquake protection of structures considering soil-structure interaction. The steel slit damper is made of a steel plate with a number of slits cut out of it. The slit damper has an advantage as a seismic energy dissipation device in that the stiffness and the yield force of the damper can be easily controlled by changing the number and size of the vertical strips. Cyclic loading tests of the slit damper are carried out to verify its energy dissipation capability, and an analytical model is developed validated based on the test results. The seismic performance of a case study building is then assessed using nonlinear dynamic analysis with and without soil-structure interaction. The soil-structure system turns out to show larger seismic responses and thus seismic retrofit is required to satisfy a predefined performance limit state. The developed slit dampers are employed as a seismic energy dissipation device for retrofitting the case study structure taking into account the soil-structure interaction. The seismic performance evaluation of the model structure shows that the device works stably and dissipates significant amount of seismic energy during earthquake excitations, and is effective in lowering the seismic response of structures standing on soft soil.

저 전력 시스템 온 칩 설계를 위한 버스 분할 기술 (Bus Splitting Techniques for Low Power SoC Design)

  • 임호영;윤미선;신현철;박성주
    • 한국정보과학회논문지:시스템및이론
    • /
    • 제32권6호
    • /
    • pp.324-332
    • /
    • 2005
  • 일반적으로 버스에서 소모되는 에너지는 전체 시스템에서 큰 비중을 차지한다. 버스 분할 방법은 시스템의 소모 에너지를 줄이고 각 버스 세그먼트들의 기생 부하(parasitic load)를 감소시킴으로서 지연시간을 줄이는데 사용될 수 있다. 버스를 분할함에 있어서 버스에 의해 상호 연결된 처리소자들 사이의 데이타 교환 확률 분포에 따라 가장 적은 에너지를 소모하는 버스 분할 방법은 달라질 수 있다. 본 연구에서는 수평적인 버스 분할 구조의 확장된 개념으로 트리구조 기반의 버스 분할 방법에 대해 연구하고, 이를 바탕으로 여러 가지 버스 분할 방법 중에서 주어진 시스템의 처리소자 간 데이타 교환 확률의 분포에 따라 가장 적합한 구조를 선택하는 문제에 대해 논하였다. 실험 결과는 제안된 방법들이 버스에서 소모되는 에너지를 최대 83$\%$까지 감소시킬 수 있음을 보여준다.

Numerical analysis of a new SMA-based seismic damper system and material characterization of two commercial NiTi-alloys

  • Olsen, J.S.;Van der Eijk, C.;Zhang, Z.L.
    • Smart Structures and Systems
    • /
    • 제4권2호
    • /
    • pp.137-152
    • /
    • 2008
  • The work presented in this paper includes material characterisation and an investigation of suitability in seismic dampers for two commercially available NiTi-alloys, along with a numerical analysis of a new damper system employing composite NiTi-wires. Numerical simulations of the new damper system are conducted, using Brinson's one-dimensional constitutive model for shape memory alloys, with emphasis on the system's energy dissipation capabilities. The two alloys tested showed some unwanted residual strain at temperatures higher than $A_f$, possibly due to stress concentrations near inclusions in the material. These findings show that the alloys are not ideal, but may be employed in a seismic damper if precautions are made. The numerical investigations indicate that using composite NiTi-wires in a seismic damper enhances the energy dissipation capabilities for a wider working temperature range.

Strength Demand of Hysteretic Energy Dissipating Devices Alternative to Coupling Beams in High-Rise Buildings

  • Choi, Kyung-Suk;Kim, Hyung-Joon
    • 국제초고층학회논문집
    • /
    • 제3권2호
    • /
    • pp.107-120
    • /
    • 2014
  • A Reinforced concrete (RC) shear wall system with coupling beams has been known as one of the most promising structural systems for high-rise buildings. However, significantly large flexural and/or shear stress demands induced in the coupling beams require special reinforcement details to avoid their undesirable brittle failure. In order to solve this problem, one of promising candidates is frictional hysteretic energy dissipating devices (HEDDs) as an alternative to the coupling beams. The introduction of frictional HEDDs into a RC shear wall system increases energy dissipation capacity and maintains the frame action after their yielding. This paper investigates the strength demands (specifically yield strength levels) with a maximum allowable ductility of frictional HEDDs based on comparative non-linear time-history analyses of a prototype RC shear wall system with traditional RC coupling beams and frictional HEDDs. Analysis results show that the RC shear wall systems coupled by frictional HEDDs with more than 50% yield strength of the RC coupling beams present better seismic performance compared to the RC shear wall systems with traditional RC coupling beams. This is due to the increased seismic energy dissipation capacity of the frictional HEDD. Also, it is found from the analysis results that the maximum allowable ductility demand of a frictional HEDD should increase as its yield strength decreases.

Experimental and numerical investigation of a surface-fixed horizontal porous wave barrier

  • Poguluri, Sunny Kumar;Kim, Jeongrok;George, Arun;Cho, I.H.
    • Ocean Systems Engineering
    • /
    • 제11권1호
    • /
    • pp.1-16
    • /
    • 2021
  • Experimental and numerical investigations were conducted to study the performance of a surface-fixed horizontal porous wave barrier in regular waves. The characteristics of the reflection and transmission coefficients, energy dissipation, and vertical wave force were examined versus different porosities of the barrier. Numerical simulations based on 3D Reynolds Averaged Navier-Stokes equations with standard low-Re k-ε turbulent closure and volume of fluid approach were accomplished and compared with the experimental results conducted in a 2D wave tank. Experimental measurements and numerical simulations were shown to be in satisfactory agreement. The qualitative wave behavior propagating over a horizontal porous barrier such as wave run-up, wave breaking, air entrapment, jet flow, and vortex generation was reproduced by CFD computation. Through the discrete harmonic decomposition of the vertical wave force on a wave barrier, the nonlinear characteristics were revealed quantitatively. It was concluded that the surface-fixed horizontal barrier is more effective in dissipating wave energy in the short wave period region and more energy conversion was observed from the first harmonic to higher harmonics with the increase of porosity. The present numerical approach will provide a predictive tool for an accurate and efficient design of the surface-fixed horizontal porous wave barrier.

전단벽 제진시스템의 반복가력실험 (Cyclic Test of Shear Wall Damping Systems)

  • 안태상;김영주;김형근;장동운;최경규;김종락
    • 한국강구조학회 논문집
    • /
    • 제25권1호
    • /
    • pp.81-92
    • /
    • 2013
  • 기존 내진설계의 목적은 구조물의 갑작스런 피해로 인한 인명손실을 방지하는 것이다. 지난 수십년간 구조물의 내진성능을 향상시키기 위해서 효과적인 지진저항시스템을 개발하는 수많은 연구들이 진행되었다. 본 연구의 목적은 내진성능을 향상시킴과 동시에 지진 이후 보수가 편리하도록 하는 새로운 제진시스템을 제안하는데 있다. 제안된 제진시스템은 벽의 하부에 슬릿을 두고 제진장치가 수평으로 작동하도록 하여 지진에너지를 소산하도록 계획되었다. 제안된 시스템의 이력거동과 에너지소산능력을 조사하기 위해서 반복가력실험을 실시하였다. 실험결과는 제안된 시스템이 안정된 이력응답을 나타내며, 에너지의 소산은 제진장치에 집중되는 것을 보여준다.