• Title/Summary/Keyword: dissipation test

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Effect of geometrical configuration on seismic behavior of GFRP-RC beam-column joints

  • Ghomia, Shervin K.;El-Salakawy, Ehab
    • Advances in concrete construction
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    • v.9 no.3
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    • pp.313-326
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    • 2020
  • Glass fiber-reinforced polymer (GFRP) bars have been introduced as an effective alternative for the conventional steel reinforcement in concrete structures to mitigate the costly consequences of steel corrosion. However, despite the superior performance of these composite materials in terms of corrosion, the effect of replacing steel reinforcement with GFRP on the seismic performance of concrete structures is not fully covered yet. To address some of the key parameters in the seismic behavior of GFRP-reinforced concrete (RC) structures, two full-scale beam-column joints reinforced with GFRP bars and stirrups were constructed and tested under two phases of loading, each simulating a severe ground motion. The objective was to investigate the effect of damage due to earthquakes on the service and ultimate behavior of GFRP-RC moment-resisting frames. The main parameters under investigation were geometrical configuration (interior or exterior beam-column joint) and joint shear stress. The performance of the specimens was measured in terms of lateral load-drift response, energy dissipation, mode of failure and stress distribution. Moreover, the effect of concrete damage due to earthquake loading on the performance of beam-column joints under service loading was investigated and a modified damage index was proposed to quantify the magnitude of damage in GFRP-RC beam-column joints under dynamic loading. Test results indicated that the geometrical configuration significantly affects the level of concrete damage and energy dissipation. Moreover, the level of residual damage in GFRP-RC beam-column joints after undergoing lateral displacements was related to reinforcement ratio of the main beams.

Guidance on Estimating Soil Persistence and Degradation Kinetics from Environmental Fate Studies on Veterinary Pharmaceuticals for Environmental Risk Assessment (동물용의약품의 환경 중 위해성 평가를 위한 토양 잔류성 시험법 가이드라인)

  • Kwon, Jin-Wook
    • Korean Journal of Environmental Agriculture
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    • v.30 no.1
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    • pp.68-75
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    • 2011
  • BACKGROUND: To assess and prevent the environmental impacts and risks by veterinary pharmaceuticals, Guidance on Estimating Soil Persistence and Degradation Kinetics from Environmental Fate Studies on Veterinary Pharmaceuticals for Environmental Risk Assessment was proposed. METHODS AND RESULTS: Proposed guidance was coined by VICH, EU guideline, OECD guideline and soil dissipation studies for the purpose of international harmonizing. Guidance was also modified from pesticide soil persistence testing guidelines of US, EU, and Korea, with practical approaches adopting in-use test guideline for Korea. CONCLUSION(S): Proposed guidance are consisted of three parts; Laboratory Soil Experiment, Field Soil Dissipation Study, and Estimation of $DT_{50}/DT_{90}$. Proposed guidance is to be available for the requirement for registration of veterinary pharmaceuticals with fit for purpose in Korea.

A numerical study on the seismic behavior of a composite shear wall

  • Naseri, Reza;Behfarnia, Kiachehr
    • Computers and Concrete
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    • v.22 no.3
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    • pp.279-289
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    • 2018
  • Shear walls are one of the important structural elements for bearing loads imposed on buildings due to winds and earthquakes. Composite shear walls with high lateral resistance, and high energy dissipation capacity are considered as a lateral load system in such buildings. In this paper, a composite shear wall consisting of steel faceplates, infill concrete and tie bars which tied steel faceplates together, and concrete filled steel tubular (CFST) as boundary columns, was modeled numerically. Test results were compared with the existing experimental results in order to validate the proposed numerical model. Then, the effects of some parameters on the behavior of the composite shear wall were studied; so, the diameter and spacing of tie bars, thickness and compressive strength of infill concrete, thickness of steel faceplates, and the effect of strengthening the bottom region of the wall were considered. The seismic behavior of the modeled composite shear wall was evaluated in terms of stiffness, ductility, lateral strength, and energy dissipation capacity. The results of the study showed that the diameter of tie bars had a trivial effect on the performance of the composite shear wall, but increasing the tie bars spacing decreased ductility. Studying the effect of infill concrete thickness, concrete compressive strength, and thickness of steel faceplates also showed that the main role of infill concrete was to prevent buckling of steel faceplates. Also, by strengthening the bottom region of the wall, as long as the strengthened part did not provide a support performance for the upper part, the behavior of the composite shear wall was improved; otherwise, ductility of the wall could be reduced severely.

Experimental Study on the Cyclic Behavior of Modular Building with Strap Braced Load Bearing Steel Stud Walls (스트랩 브레이스를 갖는 내력벽식 모듈러건축 스틸스터드 벽체의 반복하중에 대한 거동 연구)

  • Lee, Doo Yong;Cho, Bong Ho;Kim, Tae Hyeong;Ha, Tae Hyu
    • Journal of Korean Society of Steel Construction
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    • v.28 no.6
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    • pp.415-425
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    • 2016
  • Load-bearing steel stud wall system is widely used for the middle-to-high rise modular buildings worldwide. Seismic performance is a key issue to apply load-bearing steel stud wall system to modular buildings in Korea. This study proposes a new strap braced steel stud wall system with enhanced seismic performance and design equations considering the flexural behaviour of the vertical outer studs. For the verification, two specimens with different strap braces and vertical outer stud were designed and tested. The test results showed that the total strengths were evaluated to be 1.11 to 1.18 times higher than the predicted values. Usually strap braced walls are considered to have low energy dissipation capacities. The proposed system showed enhanced seismic performance with equivalent damping of 9.42% due to the reduced pinching effects.

Comparison of Tn-situ Characteristics of Soft Deposits Using Piezocone and Dilatometer (피에조 콘과 딜라토메터 시험을 이용한 연약지반의 현장특성 비교)

  • 김영상;이승래;김동수
    • Geotechnical Engineering
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    • v.14 no.6
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    • pp.45-56
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    • 1998
  • In order to select a proper ground improvement technology and to assess the quality and rate of improvement in the soft deposits. it is essential to characterize in-situ properties of the soft marine clay layer that may have many thin silt or sand seams. In this paper, both piezocone and flat dilatometer tests were performed to characterize in situ properties of a marine clay. Both tests provided quite similar site classifications, and in both tests the penetration pore water pressure was the better indicator for the classification of marine clay layer, especially in which sand or silt seams are frequently interbedded. Undrained strengths determined by both the cone tip resistance and the excess pore water pressure measured from piezocone were very similar in clayey soil layers. And the untrained strength determined by dilatometer had an approximately average value of undiained strengths obtained from piezocone. In addition, the theoretical time factor that can consider pore pressure dissipation effect during cone penetration may provide a reliable estimation of the coefficient of consolidation, especially for a coastal site which includes many silt or sand fractions or seams.

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Seismic Performance Evaluation of R/C Different Floor Type Interior Beam-Column Joints in the Middle and High-rise Mixed-use Residential Building (중.고층 주상복합 R/C 건축물의 단차형 내부 보-기둥 접합부 내진성능평가)

  • Ha, Gee-Joo;Shin, Jong-Hak;Huh, Mean-Haeng;Hong, Kun-Ho;Ha, Jae-Hoon;Nam, Young-Sik
    • Proceedings of the Korea Concrete Institute Conference
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    • 2009.05a
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    • pp.453-454
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    • 2009
  • In this dissertation, experimental program was carried out to study the hysteretic behavior of the reinforced different floor type interior beam-column joint repeated cyclic loads under seismic actions. The test results was as follow. The reinforced interior beam-column joint, designed by the different floor type, was increased energy dissipation capacity and maximum load carrying capacity according to the increase of different floor in comparison to standard specimen. And it was also dissimilar to failure mode adjacent to joint region. energy dissipation capacity of each specimen, designed by the different floor type, was increased 1.1${\sim}$1.35 times in comparison to standard specimen.

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Spreading Beam Poastic Hinging Zone of the High-Strength R/C Beam-Column Joints Using the Vertically Anchored Intermediate Reinforcements (수직앵커형 중간철근으로 보강된 고강도 철근콘크리트 보_-기둥 접합부의 소성힌지 확산)

  • 유영찬;이원호;이리형
    • Magazine of the Korea Concrete Institute
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    • v.7 no.4
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    • pp.169-179
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    • 1995
  • The purpose of this study is to spread beam plastic hinging zone of the high-strength($f'_c=700kg/cm^2$) reinforced concrete beam-column joints away from the column face by vertically anchored intermediate reinforcements. The newly proposed intermediate reinforcements which are vertically anchored by interlinking each intermediate rebars are tested to insure the ductile behavior of R /C beam-column joins. Main variable is the shape of intermediate reinforcements. From the test results, the newly proposed intermediate rebar detail can move arid expand the beam plastic hinging zone about 1.Od from column face and can delay the strength decay of the high-strength R /C beam-column joint. Also energy dissipation capacity of specimen IV-1.OD10 which is reinforced by vertically anchored intermediate rebars about 1.0d is 1.6 times as high as the specimen CM-STAN which is designed by ACI318-89.

Experimental Test for Seismic Performance of PCS Structural System (PCS 구조 시스템의 내진 성능 분석)

  • Park, Soon-Kyu;Yeo, In-Seok
    • Journal of the Korea Concrete Institute
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    • v.19 no.3
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    • pp.313-322
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    • 2007
  • The PCS system, which consists of precast concrete column and steel beam, is a kind of composite structural systems. In this paper, experimental study has been conducted to analyze seismic performance of bolted beam-to-column connections for the PCS system. Based on experimental results from the seismic testing of eight interior PCS specimens, it shows that behavior of PCS system is satisfactory to seismic performance criteria of ACI such as strength deterioration, stiffness degradation and energy dissipation capacity except initial stiffness. All of the specimens maintain their strength at large levels of story drift without significant loss of stiffness and show high ductility level for inelastic behavior. The energy dissipation capacity is two times greater than requirement of ACI criterion. But the initial stiffness of all specimens does not satisfy ACI criterion, and this phenomenon is similar to the other composite structural systems such as RCS, CFT system.

Development of a double-sliding friction damper (DSFD)

  • Shen, Shaodong;Pan, Peng;Sun, Jiangbo;Gong, Runhua;Wang, Haishen;Li, Wei
    • Smart Structures and Systems
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    • v.20 no.2
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    • pp.151-162
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    • 2017
  • In practical engineering, the friction damper is a widely used energy dissipation device because of its large deformation capacity, stable energy dissipation capability, and cost effectiveness. While based on conventional friction dampers, the double-sliding friction damper (DSFD) being proposed is different in that it features two sliding friction forces, i.e., small and large sliding friction forces, rather than a single-sliding friction force of ordinary friction dampers. The DSFD starts to deform when the force sustained exceeds the small-sliding friction force, and stops deforming when the deformation reaches a certain value. If the force sustained exceeds the large sliding friction force, it continues to deform. Such a double-sliding behavior is expected to endow structures equipped with the DSFD better performance in both small and large earthquakes. The configuration and working mechanism of the DSFD is described and analyzed. Quasi-static loading tests and finite element analyses were conducted to investigate its hysteretic behavior. Finally, time history analysis of the single-degree-of-freedom (SDOF) and multi-degree-of-freedom (MDOF) systems were performed to investigate the seismic performance of DSFD-equipped structures. For the purpose of comparison, tests on systems equipped with conventional friction dampers were also performed. The proposed DSFD can be realized perfectly, and the DSFD-equipped structures provide better performances than those equipped with conventional friction dampers in terms of interstory drift and floor acceleration. In particular, for the MDOF system, the DSFD helps the structural system to have a uniform distributed interstory drift.

A New Method for Dilatometer Dissipation Analysis Using an Equivalent Radius and Optimization Technique (등가반경과 최적화기법을 이용한 딜라토메터 소산시험 해석법)

  • 김영상
    • Journal of the Korean Geotechnical Society
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    • v.17 no.5
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    • pp.43-50
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    • 2001
  • 딜라토메터는 실험의 간편성, 경제성, 신속성 및 반복성 등을 바탕으로 현장에서의 지반공학적 물성추정에 보편화되고 있다. 또한 간단한 장비구성과 손쉬운 사용법에도 불구하고 다양한 지반공학적 물성들 -예로서, $K_{o}$ , OCR, $c_{u}$ , $\psi$, $c_{h}$, $k_{h}$, ${\gamma}$, M, $u_{o}$ -을 추정할 수 있으며 다양한 지반공학적 설계문제에 성공적으로 적용되어 왔다. 그러나 제안된 관계식들이 대부분 기존실험 결과들과의 비교를 통하여 얻어진 경험적 상관관계이며, 특히 압밀계수 추정에 관한 부분은 관입시 평면변형 상태의 지반변형으로 인한 관입모사의 복잡성으로 인하여 피에조콘 소산시험 해석을 위해 제안된 이론 해들에 경험적인 가정사항들을 추가하여 사용하는 반경험적 방법들과 순수한 경험적인 방법이 사용되어 왔다. 본 연구에서는 elf라토메터 관입기의 실제 평면적을 등가의 원형반경으로 고려한 등가반경을 사용하고 최적화기법을 적용함으로써, 소산시험에서 실제 관측된 간극수압($p_2$)과 딜라토메터 소산시험을 모사하여 얻어진 예측 간극수압의 차이를 최소화하는 수평압밀계수 추정법을 제안하였다. 제안된 방법을 국내 양산지역에서 수행된 딜라토메터 소산실험에 적용하였으며 추정된 수평압밀계수 값을 기존의 딜라토메터 수평압밀계수 추정법들과 불교란 시료를 이용한 일차원 실내 압밀실험으로 얻어진 수평압밀계수 값들과 비교검증 하였다. 그 결과 제안된 방법으로 기존의 방법에 비해 실내 압밀실험 결과와 일치하는 수평압밀계수 추정결과를 얻었다. 또한, 제안된 방법으로 얻어진 수평압밀계수는 전 소산도 범위에서 고르게 관측값과 일치하는 소산곡선을 예측하여, 최적화기법을 이용한 딜라토메터 소산시험 해석으로 전 소산과정을 대표하는 압밀계수의 추정이 가능할 것으로 사료된다.

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