In the case of a school building, even though it is a regular structure in terms of plan shape, if the masonry infill wall acts as a lateral load resisting element, it can be determined as a torsionally irregular building. As a result, the strength and ductility of the structure are reduced, which may cause additional earthquake damage to the structure. Therefore, in this study, a structure similar to a school building with torsional irregularity was selected as an example structure and the damping performance of the PC-BRB was analyzed by adjusting the eccentricity according to the amount of masonry infilled wall. As a result of nonlinear dynamic analysis after seismic reinforcement, the torsional irregularity of each floor was reduced compared to before reinforcement, and the beams and column members of the collapse level satisfied the performance level due to the reduction of shear force and the reinforcement of stiffness. The energy dissipation of PC-BRB was similar in the REC-10 ~ REC-20 analytical models with an eccentricity of 20% or less. REC-25 with an eccentricity of 25% was the largest, and it is judged that it is effective to combine and apply PC-BRB when it has an eccentricity of 25% or more to control the torsional behavior.
It is effective to apply hybrid damping device that combine separate damping device to cope with various seismic load. In this study, HRS hybrid damper(hybrid rubber slit damper) in which high damping rubber and steel slit plate are combined in parallel was proposed and structural performance tests were performed to review the suitability for seismic performance. Cyclic Loading tests were performed in accordance with criteria presented in KDS 41 17 00 and MOE 2019. As a result of the test, the criteria of KDS 41 17 00 and MOE2019 was satisfied, and the amount of energy dissipation increased due to the shear deformation of the high-damping rubber at low displacement. Result of performing the RC frame test, the allowable story drift ratio was satisfied, and the amount of energy dissipation increased in the reinforced specimen compared to the non-reinforced specimen.
부공력감쇠는 풍직각방향의 와류공진을 예측하는데 있어서 매우 중요한 요소이다. 부공력감쇠는 진동유발하중 또는 피드백 하중을 구성하는 주요인자로 와류진동이 급격히 발현되는 현상을 설명하는 도구이기도 하다. 본 연구에서는 공력감쇠의 수학적 모델 을 제시하고 와류유발하중모델과 함께 와류진동을 예측하는 프러세스를 제안한다. 직사각형단면에 대한 공기력진동실험을 수행하여, 계측된 가속도로부터 공력감쇠와 와류유발하중을 추정하고 이에 기반하여 공력감쇠모델과 와류유발하중모델을 구축하는 과정을 다룬 다. 최종적으로 공력감쇠모델과 와류유발하중 모델에 대한 재해석을 통하여 가속도응답을 구하고 계측된 가속도와 비교하여 모델의 진동예측성능을 평가한다. 본 연구에서 제안된 와류하중모델의 진동예측성능을 평가한 결과 안정적이며, 신뢰도가 높은 와류진동예측 이 가능함을 알 수 있었다.
The vibration control device such as the damper can be used to reinforce the seismic performance of structures. The damper is activated by the deformation of structures during earthquake; however, the deformation of structures is extremely small, causing difficulty in using the damper. Therefore, there is a need for a method capable of amplifying small deformities and transmitting them to the damper. The purpose of this paper is to develop and evaluate a displacement amplification seismic system using cable-pulley. The appropriate cable was selected through a cable tensile performance test and the results of the frame experiment were compared with theoretical displacement amplification ratio values. As a result, it may be said that the proposed system using cable-pulley is useful for displacement amplification.
Recently, the concept of an outrigger damper system with a damper added to the existing outrigger system has been developed and applied for dynamic response control of high-rise buildings. However, the study on the structural characteristics and design method of Outrigger damper system is in the early stages. In this study, a 50 story high - rise building was designed and an outrigger damper system with viscoelastic damper was applied for wind response control. The time history analysis was performed by using the kaimal spectrum to create an artificial wind load for a total of 1,000 seconds at 0.1 second intervals. Analysis of the top horizontal maximum displacement response and acceleration response shows that outrigger damper systems are up to 28.33% and 49.26% more effective than conventional outrigger systems, respectively. Also, it is confirmed that the increase of damping ratio of dampers is effective for dynamic response control. However, since increasing the damping capacity increases the economic burden, it is necessary to select the appropriate stiffness and damping value of the outrigger damper system.
대부분의 기존 송전철탑은 산악지형에 위치하여 강풍에 노출되어 있으며 이러한 강풍은 송전철탑에 동적하중의 증폭을 유도한다. 그러나 송전철탑은 일반적으로 이러한 동적하중을 직접 고려하지 않고, 단순히 등가정적하중을 사용하여 설계된다. 따 라서 기존의 송전철탑 보강방법으로는 정적응답을 줄이는 관점에서 단면 증대나 좌굴길이 감소 등의 방법이 사용되었다. 실제 동 적하중조건의 경우, 감쇠성능을 증가시킬 수 있는 보강기구가 보강방안의 대안으로 고려될 수 있다. 본 연구에서는 송전철탑의 동적모델을 구축하였고, 비선형 시간이력해석을 수행하였다. 풍하중은 풍동실험을 통해 구하였으며, 마찰감쇠기가 강성과 감쇠 를 동시에 증가시키기 위해 적용되었다. 수치해석 결과는 마찰감쇠기의 최적 항복강도가 최하단 주주재가 부담했던 축하중의 5- 10% 임을 보여준다. 토글형 마찰감쇠기와 강성보강을 동시에 수행함으로써 주주재의 부재력과 기초에 전달되는 하중을 크게 저 감시킬 수 있었다.
In recent years, an outrigger damper system has been proposed to reduce dynamic responses of tall buildings. However, a study on outrigger damper system is still in its early stages. In this study, time history analysis was performed to investigate the dynamic response control performance of outrigger damper. To do this, a actual scale 3-dimensional tall building model with outrigger damper system has been developed. El Centro earthquake was applied as an earthquake excitation. The control performance of the outrigger damper system was evaluated by varying stiffness and damping values. Analysis results, on the top floor displacement response to the earthquake load, was greatly effected by damping value. And acceleration response greatly was effected by stiffness value of damper system. Therefore, it is necessary to select that proper stiffness and damping values of the outrigger damper system.
The proposed hybrid damper installs at a coupling beam and consists of a high-damping rubber (HDR) and steel pin. The proposed hybrid damper adopted a pin-lock system acts as a viscoelastic damper under wind load (small displacement) while it behaves as a hysteretic damper under earthquake load (large displacement).
In this paper, the pin-lock mechanism and structural performance of the proposed hybrid damper is evaluated through experiment. Experiments were carried out with the variables which displacement, loading frequency and steel pin quantities were used. Test results showed that the pin-lock mechanism and the performance of the hybrid damper under a large displacement were verified. Also equivalent damping ratios of HDR were increasing at a small displacement as displacement amplitudes were increasing. However HDR did not depend on frequency,
Compared with a strong axial rigidity due to large intial tension, cable has a weak laterally flexural rigidity. A variety of dynamic loads such as traffic loads and wind loads etc. cause the cables to vibrate significantly and affect the mechanical properties and the performance of cables. Therefore, vibration reduction design is an urgent task to control the vibration of cable-supported bridges. Because a various kind of dampers have shown to reduce the amplitude and duration time of vibration of cable from measured date in field test, damper can be considered that it is effective device significantly to reduce the amplitude and duration time in vibration of cable. Vibration characteristics of cable can change according to manufacturing method and type of established form, and damper has been designed according to distribution of natural frequencies and vibration modes. In this study, numerical analysis is used to show the reduction effects of vibrations and present the design of damper for vibration reduction of cable.
한국산 자기컴퍼스 카아드의 안정성을 조사하기 위하여 인공자장발생장치에 의한 수평자장의 세기와 카아드의 크기 및 컴퍼스액의 점성계수별 제진특성을 측정한 결과는 다음과 같다. 1. 실험에 사용한 컴퍼스 종류별 수평자장의 세기에 따른 제진특성은 A, B, C, D컴퍼스 모두 수평자장의 세기가 강할수록 주기와 감도는 짧고, 과행각은 크게 나타났으며, 극지와 같이 수평자장이 약한 0.03gauss에서는 진요회수와 마찰각등이 ISO의 허용범위 보다 미달되거나 크게 나타나, 컴퍼스 카아드의 지북단이 자북으로 복귀하지 않았다. 2. 한국근해의 표준자장인 0.30gauss에서 측정한 컴퍼스 종류별 성능제요소를 IMO NAV/ANNEX II 의 성능표준과 비교해 본 결과, 주기를 제외한 전 요소가 IMO NAV/ANNEX II의 성능표준의 허용범위 이내로 한국근해의 사용이 적합하나 지자기의 수평자장이 0.18gauss보다 약한 위도 60˚이상의 고위도 해역에서의 사용은 부적합하다고 생각된다. 3. 한국산 자기컴퍼스 카아드의 크기별 clearance에 대한 제진특성은 clearance가 클수록 감도는 예민하고 주기는 짧아져 방위지시부의 지북단이 자북으로 복귀하는 시간이 짧아진 반면 마찰각은 각각 1.5˚, 0˚, 0.5˚, 2.0˚가 되어 카아드의 크기가 170mm와 175mm로써 clearance가 10.0mm와 12.5mm일때가 마찰오차는 IMO NAV/ANNEX II의 성능표준의 허용범위 이내로 가장 적게 나타났다. 4. 카아드의 크기가 175mm, 자침의 자기능률이 1,925 C. G. S. E. M. U인 자침을 사용할 경우 한국근해의 수평자장 0.30gauss에서는 컴퍼스 액의 점성계수가 0.021poise로서 에칠알콜과 증류수의 혼합비율이 4 : 6일 때가 가장 적합하다고 생각된다.
Voided Slab is a very efficient system that can reduce weight and its use has increased. In this paper, Shear performance of voided slab 3 type(rc slab, ball slab, ball slab with water) with improved damping performance was evaluated. As a result of the test, the shear performance was not much different from the existing RC slab.
최근 도심지에 건설되는 철도역사, 선로구조물 등 철도시설물의 경우 소음 및 진동 저감 설계의 중요성이 더욱 커지고 있다. 이 논문에서는 최근 개발된 수직형 면진장치의 동적성능 검증을 위한 시험 결과를 제시하였다. 수직형 면진장치는 열차 운행으로 인한 진동이 직접적으로 전달되는 선하역사 등 철도시설물의 진동 저감에 효과적으로 적용될 수 있으나, 수평형에 비하여 개발이 미진한 상황이다. 동적성능 검증은 개발된 수직형 면진장치의 시제품을 적용한 콘크리트구조물에 대한 진동대시험을 통하여 수행되었다. 시험에 적용된 지진파는 사인파, 인공지진파 및 실측지진파이며, 시험 결과 개발된 면진장치는 상당한 진동저감 효과가 있음이 나타났다.
In this paper, the seismic performance of FCW apartment building with porous hysteretic damping system(PHDS) is examined by comparing with the building designed by KBC2009. The results show that even though the seismic force-resisting system is designed to reduce the design seismic base shear by 75 percent, the building with PHDS is enough to satisfy the performances required by the national seismic code