• 제목/요약/키워드: damage tolerance capacity

검색결과 23건 처리시간 0.025초

경주 동궁과 월지의 생태적 수용력에 관한 연구 - 탐방로의 이용행태 및 손상도를 중심으로 - (A Study on the Ecological Carrying Capacity of Donggung and Wolji, Gyeongju - Centering around the Used Pattern and Damage Degree of Trail Routes -)

  • 이홍;강태호
    • 한국조경학회지
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    • 제40권6호
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    • pp.70-78
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    • 2012
  • 경주 동궁과 월지의 생태적 수용력 연구를 위해 유적지내에서 관찰되어지는 7가지 이용행태에 따른 이용구간별 녹지 평균손상도를 산정하였다. 이를 위해 탐방객 이용행태의 이용인수 및 이용시간을 조사하고 손상도를 산정하였다. 각 이용행태별 손상도를 통하여 4가지 조사구의 적정수용력, 표준수용력과 한계수용력을 명확하게 파악할 수 있다. 각 조사구의 이용행태별 이용인수 및 이용시간에 따른 손상도를 산정한 결과, '걷다'의 경우 평균 2.15로 가장 높았고, '눕다'의 경우 0.05로 가장 낮은 것으로 나타났다. 그리고 각 조사구의 손상도는 조사구 4가 1.31로 가장 높았고, 조사구 3이 0.97, 조사구 1이 0.91, 조사구 2가 0.70의 순으로 나타났다. 각 조사구의 손상면적을 산정 후에 생태적 수용력을 추정한 결과, 조사구1, 2, 3, 4의 적정수용력은 각각 40인, 249인, 107인, 37인, 한계수용력은 각각 116인, 713인, 306인, 107인, 표준수용력은 각각 75인, 463인, 198인, 69인으로 추정된다. 경주 동궁과 월지의 바람직한 관리를 위한 최대의 생태적 수용력은 한계수용력 이하로 하는 것이 적합하다.

공원잔디공간의 『레크레이션』 수용능력에 관한 연구(I) -잔디에 미치는 답압의 영향 및 수용능력의 답압회수 기준설정- (A Study on the Recreation Carrying Capacity of Lawn Areas in Parks(I) -Estimation of treading times criteria based on the tolerence of the turf to treading pressure-)

  • 엄붕훈
    • 한국조경학회지
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    • 제20권1호
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    • pp.53-68
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    • 1992
  • This study was carried out to estimate the recreation carrying capacity of lawn areas in parks. Recreation carrying capacity in this study is composed of two parts, ecological carrying capacity and psychological carrying capacity. As the first part, this paper deals with the treading times criteria based on the tolerence of the turf to treading pressure. The plant material used for this study was Zoysia japonica, and the treading experiment was done in the experimental fields in Kyungju and Suwon, Korea. The major results of the first part of the study are summarized as follow: 1. As shown in annual change of the growth of the turf, The growth of turt grass was represented by the number of leaf. 2. The tolerance to treading was not significantly different by the time of treading treatment. And the tolerance varies depending on growth rate of grasses, which showed significant relationship with precipitations. 3. From the result of different numbers of simulated treading treatment, the damage of the turf was increased by the increase of the frequency of treading. And the damage was very serious within short period(about 20 days) in high frequency(over 20 times/day) of treading treatment. But low frequency(1∼3times/day) of treading shows good effects on the growth of the turf. 4. The criteria of treading number per day for each carrying capacity level are estimated as 7 times/day for optimum carrying capacity, 13 times/day for standard carrying capacity, and 20 times/day for critical carrying capacity.

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Analysis of behavior of bare and in-filled RC frames subjected to quasi static loading

  • Sandhu, Balvir;Sharma, Shruti;Kwatra, Naveen
    • Structural Engineering and Mechanics
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    • 제73권4호
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    • pp.381-395
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    • 2020
  • Study on the inelastic response of bare and masonry infilled Reinforced Concrete (RC) frames repaired using Carbon Fibre Reinforced Polymers (CFRP) and Glass Fiber Reinforced Polymers (GFRP) subjected to quasi- static loading is presented in the work. The hysteresis behaviour, stiffness retention, energy dissipation and damage index are the parameters employed to analyze the efficacy of FRP strengthening of bare and brick in-filled RC frames. It is observed that there is a significant improvement in load carrying capacity of brick infilled frame over bare RC frame. Also FRP strengthened brick infilled frame performs much better than FRP repaired bare frame under quasi static loading. Repair and retrofitting of brick infilled RC frame shows an improved load carrying and damage tolerance capacity than control frame.

Effects of Matrix Ductility on the Shear Performance of Precast Reinforced HPFRCC Coupling Beams

  • Yun Hyun-Do;Kim Sun-Woo;Jeon Esther;Park Wan Shin
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 추계 학술발표회 제17권2호
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    • pp.53-56
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    • 2005
  • This paper investigates the effect of ductile deformation behavior of high performance hybrid fiber-reinforced cement composites (HPHFRCCs) on the shear behavior of coupling beams to lateral load reversals. The matrix ductility and the reinforcement layout were the main variables of the tests. Three short coupling beams with two different reinforcement arrangements and matrixes were tested. They were subjected to cyclic loading by a suitable experimental setup. All specimens were characterized by a shear span-depth ratio of 1.0. The reinforcement layouts consisted of a classical scheme and diagonal scheme without confining ties. The effects of matrix ductility on deflections, strains, crack widths, crack patterns, failure modes, and ultimate shear load of coupling beams have been examined. The combination of a ductile cementitious matrix and steel reinforcement is found to result in improved energy dissipation capacity, simplification of reinforcement details, and damage-tolerant inelastic deformation behavior. Test results showed that the HPFRCC coupling beams behaved better than normal reinforced concrete control beams. These results were produced by HPHFRCC's tensile deformation capacity, damage tolerance and tensile strength.

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예 하중이 유리섬유 복합재료 곡선 보의 충격특성에 미치는 영향 (Impact Characteristics of Glass Fiber Reinforced Composite Curved Beams w.r.t. Pre-load)

  • 이승민;임태성;이대길
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.162-167
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    • 2004
  • The low velocity impact characteristics of composite laminate curved beams are investigated to increase damage tolerance and reduce the deflection. Drop weight impact tests of the composite curved beam were performed with respect to pre-load, then the damage after impact was measured by macrography. Also, finite element analyses were performed using ABAQUS to investigate the stress state of composite curved beam with respect to pre-load and impact. From the investigation, it was found that pre-load of the composite curved beams had much influence on impact damage of the curved beam, which showed good agreement with the experiment results.

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Behavior of FRP strengthened RC brick in-filled frames subjected to cyclic loading

  • Singh, Balvir;Chidambaram, R. Siva;Sharma, Shruti;Kwatra, Naveen
    • Structural Engineering and Mechanics
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    • 제64권5호
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    • pp.557-566
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    • 2017
  • Fiber reinforced polymer (FRP) sheets are the most efficient structural materials in terms of strength to weight ratio and its application in strengthening and retrofitting of a structure or structural elements are inevitable. The performance enhancement of structural elements without increasing the cross sectional area and flexible nature are the major advantages of FRP in retrofitting/strengthening work. This research article presents a detailed study on the inelastic response of conventional and retrofitted Reinforced Concrete (RC) frames using Carbon Fibre Reinforced Polymers (CFRP) and Glass Fiber Reinforced Polymers (GFRP) subjected to quasi-static loading. The hysteretic behaviour, stiffness degradation, energy dissipation and damage index are the parameters employed to analyse the efficacy of FRP strengthening of brick in-filled RC frames. Repair and retrofitting of brick infilled RC frame shows an improved load carrying and damage tolerance capacity than control frame.

PE 섬유와 강섬유를 사용한 하이브리드 HPFRCCs의 파괴특성 및 음향방출특성 (Acoustic Emission and Fracture Process of Hybrid HPFRCCs with Polyethylene Fiber and Steel Cord)

  • 김선우;전수만;김용철;윤현도
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.253-256
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    • 2006
  • The HPFRCCs show the multiple crack and damage tolerance capacity due to the interfacial bonding of the fibers to the cement matrix. For practical application, it is needed to investigate the fractural behavior and of HPFRCCs and understand the micro-mechanism of cement matrix with reinforcing fiber. The objectives of this paper are to examine the compressive behavior, fracture and damage process of HPFRCC by acoustic emission technique. Total four series were tested, and the main variables were the hybrid type, polyethylene (PE) and steel cord (SC), and fiber volume fraction. The damage progress by compressive behavior of the HPFRCCs is characteristic for the hybrid fiber type and volume fraction. And from acoustic emission (AE) parameter value, it is found that the second and third compressive load cycles resulted in successive decrease of the ring-down count rate as compared with the first compressive load cycle.

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Comparison and prediction of seismic performance for shear walls composed with fiber reinforced concrete

  • Zhang, Hongmei;Chen, Zhiyuan
    • Advances in concrete construction
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    • 제11권2호
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    • pp.111-126
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    • 2021
  • Concrete cracking due to brittle tension strength significantly prevents fully utilization of the materials for "flexural-shear failure" type shear walls. Theoretical and experimental studies applying fiber reinforced concrete (FRC) have achieved fruitful results in improving the seismic performance of "flexural-shear failure" reinforced concrete shear walls. To come to an understanding of an optimal design strategy and find common performance prediction method for design methodology in terms to FRC shear walls, seismic performance on shear walls with PVA and steel FRC at edge columns and plastic region are compared in this study. The seismic behavior including damage mode, lateral bearing capacity, deformation capacity, and energy dissipation capacity are analyzed on different fiber reinforcing strategies. The experimental comparison realized that the lateral strength and deformation capacity are significantly improved for the shear walls with PVA and steel FRC in the plastic region and PVA FRC in the edge columns; PVA FRC improves both in tensile crack prevention and shear tolerance while steel FRC shows enhancement mainly in shear resistance. Moreover, the tensile strength of the FRC are suggested to be considered, and the steel bars in the tension edge reaches the ultimate strength for the confinement of the FRC in the yield and maximum lateral bearing capacity prediction comparing with the model specified in provisions.

변형경화형 시멘트 복합체의 인장성능에 따른 끼움벽의 내진성능 (Influence of Strain-Hardening Cement Composite's Tensile Properties on the Seismic Performance of Infill Walls)

  • 차준호;윤현도
    • 콘크리트학회논문집
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    • 제24권1호
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    • pp.3-14
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    • 2012
  • 이 논문에서는 비내진상세 골조의 손상완화능력 향상을 위한 연구의 일환으로 변형경화형 시멘트 복합체 끼움벽의 내진성능을 실험적으로 평가하였다. SHCC의 인장변형능력 및 균열거동 특성이 끼움벽의 전단 거동에 미치는 영향을 구명하기위해 총 3개의 끼움벽 실험체를 제작하여 반복하중 하에서 실험을 실시하였다. 이 연구에서 사용된 시멘트 복합체의 종류는 콘크리트와 SHCC로 하였다. SHCC는 인장 특성에 따른 영향을 검토하기위해 PVA1.3%+PE0.2% 및 PVA0.75%+PE0.75%로 두 종류의 배합조건을 갖도록 계획하였다. 끼움벽의 균열손상 발생 부위를 중앙부로 유도하기위해 모든 끼움벽 실험체의 좌 우측면에 100 mm 깊이의 노치를 설치하였다. 실험 결과, SHCC 끼움벽의 경우 철근 콘크리트 끼움벽에 비해 우수한 균열제어성능을 나타냈으며, 최대하중 도달 시점에서의 층간변위 또한 높게 나타났다. 특히, 초기 경사균열 발생 이후에도 SHCC 내의 보강 섬유간 섬유가교작용에 기인하여 완만한 강성 저하 양상을 나타냈다. 게다가 끼움벽의 균열폭을 기준으로 손상 식별 단계를 분석한 결과, PIW-SHD 실험체가 PIW-SLD 실험체에 비해 약 3배에 해당하는 우수한 내진성능을 나타냈다. 또한 대각 보강근의 변형률 진전 양상을 비교한 결과, 우수한 균열분산 특성에 기인하여 철근에 집중되는 인장응력을 SHCC 매트릭스가 일정 부분 부담하는 것으로 나타났다.

AE기법에 의한 압축력을 받는 고인성 섬유보강 시멘트 복합체의 손상 평가 (Assessment of the Damage in High Performance Fiber-Reinforced Cement Composite under Compressive Loading Using Acoustic Emission)

  • 김선우;윤현도
    • 콘크리트학회논문집
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    • 제21권5호
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    • pp.589-597
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    • 2009
  • 고인성 섬유보강 시멘트 복합체는 시멘트 매트릭스 내 보강된 섬유의 계면부착응력에 의해 다수의 미세균 열분산 및 손상저항성능을 갖게 되나, 이를 구조물에 적용하기 위해서는, 고인성 섬유보강 시멘트 복합체의 파괴거동을 규명함과 동시에 보강섬유에 따른 시멘트 매트릭스의 마이크로 파괴메커니즘에 대한 이해가 요구된다. 이 연구에서는 단조 및 반복가력시 고인성 섬유보강 시멘트 복합체의 파괴특성 및 음향방출신호특성을 규명하기 위하여 총 4 시리즈의 시험체가 사용되었으며, 주요 실험변수는 섬유의 종류(PE, PVA, SC), 혼입률, 하이브리드 타입, 가력방법(단조, 반복)이다. 실험결과, 고인성 섬유보강 시멘트 복합체의 압축거동에 따른 손상진전은 섬유의 혼입률 및 하이브리드에 따라 상이하게 나타났다. 또한 음향방출신호로부터, 각 하중단계의 2, 3번째 사이클에서의 진폭 감소 특성이 나타났으며, 이는 각 사이클별 변형률 증가와의 관련성을 보여 이를 이용한 강도 예측이 가능할 것으로 판단된다. 또한 최대강도의 80%까지 펠리시티 효과 및 카이저 효과가 나타났으며, 하이브리드 섬유 혼입시 매크로 균열 제어로 인해 손상의 복원 및 분산능력이 뛰어난 것으로 나타났다.