• 제목/요약/키워드: earthquake resistant design codes

검색결과 26건 처리시간 0.019초

Should accidental eccentricity be eliminated from Eurocode 8?

  • Anagnostopoulos, S.A.;Kyrkos, M.T.;Papalymperi, A.;Plevri, E.
    • Earthquakes and Structures
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    • 제8권2호
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    • pp.463-484
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    • 2015
  • Modern codes for earthquake resistant building design require consideration of the so-called accidental design eccentricity, to account for torsional response caused by several factors not explicitly considered in design. This provision requires that the mass centres in the building floor be moved a certain percentage of the building's dimension (usually 5%) along both the x and y axes and in both positive and negative directions. If one considers also the spatial combinations of the two component motion in a dynamic analysis of the building, the number of required analyses and combinations increases substantially, causing a corresponding work load increase for practicing structural engineers. Another shortcoming of this code provision is that its introduction has been based primarily on elastic results from investigations of oversimplified, hence questionable, one story building models. This problem is addressed in the present paper using four groups of eccentric braced steel buildings, designed in accordance with Eurocodes 3 (steel) and 8 (earthquake design), with and without accidental eccentricities considered. The results indicate that although accidental design eccentricities can lead to somewhat reduced inelastic response demands, the benefit is not significant from a practical point of view. This leads to suggestions that accidental design eccentricities should probably be abolished or perhaps replaced by a simpler and more effective design provision, at least for torsionally stiff buildings that constitute the vast majority of buildings encountered in practice.

이중 수정함수 적용을 통한 설계응답스펙트럼 포괄 인공지진파의 생성 (Generation of Artificial Time History Covering Design Response Spectrum by Two Modification Functions)

  • 박건;홍기남;한상훈;김재석
    • 대한토목학회논문집
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    • 제36권1호
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    • pp.1-11
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    • 2016
  • 현 국내 외의 설계기준들은 인공지진파에 의해 계산된 응답스펙트럼이 설계응답스펙트럼보다 작은 값의 수가 5개 이내일 경우 설계응답스펙트럼을 포괄 한다고 규정하고 있다. 현 설계의 문제점을 확인하기 위하여 설계기준을 만족하는 5개의 각기 다른 특성을 가진 인공지진파를 사용하여 교각에 대한 시간이력해석을 수행하고, 부재력을 정량적으로 평가하였다. 설계기준을 만족하는 인공지진파일지라도 구조물의 고유주기와 유사한 주기에서 계산된 응답스펙트럼이 설계응답스펙트럼보다 작을 경우 시간이력해석을 통한 내진의 안전성을 확보하지 못함을 확인하였다. 따라서 본 연구에서는 스펙트럼 가속도 값이 설계응답스펙트럼보다 모든 주기에서 큰 값을 갖는 인공지진파를 생성하는 기법을 이중 수정함수를 적용하여 제안하였다. 또한 제안된 기법에 의해 작성된 인공지진파가 국내 외의 기준들의 적합성을 만족하는지 검토하였다.

Evaluation of required seismic gap between adjacent buildings in relation to the Egyptian Code

  • Hussein, Manar M.;Mostafa, Ahmed A.;Attia, Walid A.
    • Structural Engineering and Mechanics
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    • 제78권2호
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    • pp.219-230
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    • 2021
  • International seismic codes stipulate that adjacent buildings should be separated by a specified minimum distance, otherwise the pounding effect should be considered in the design. Recent researches proposed an alternative method (Double Difference Combination Rule) to estimate seismic gap between structures, as this method considers the cross relation of adjacent buildings behavior during earthquakes. Four different criteria were used to calculate the minimum separation distance using this method and results are compared to the international codes for five separation cases. These cases used four case study buildings classified by different heights, lateral load resisting systems and fundamental periods of vibrations to assess the consistency in results for the alternative methods. Non-linear analysis was performed to calculate the inelastic displacements of the four buildings, and the results were used to evaluate the relation between elastic and inelastic displacements due to the ductility of structural elements resisting seismic loads. A verification analysis was conducted to guarantee that the separation distance calculated is sufficient to avoid pounding. Results shows that the use of two out of the four studied methods yields separation distances smaller than that calculated by the code specified equations without under-estimating the minimum separation distance required to avoid pounding.

Concurrent flexural strength and deformability design of high-performance concrete beams

  • Ho, J.C.M.;Zhou, K.J.H.
    • Structural Engineering and Mechanics
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    • 제40권4호
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    • pp.541-562
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    • 2011
  • In the design of earthquake resistant reinforced concrete (RC) structures, both flexural strength and deformability need to be considered. However, in almost all existing RC design codes, the design of flexural strength and deformability of RC beams are separated and independent on each other. Therefore, the pros and cons of using high-performance materials on the flexural performance of RC beams are not revealed. From the theoretical results obtained in a previous study on flexural deformability of RC beams, it is seen that the critical design factors such as degree of reinforcement, concrete/steel yield strength and confining pressure would simultaneously affect the flexural strength and deformability. To study the effects of these factors, the previous theoretical results are presented in various charts plotting flexural strength against deformability. Using these charts, a "concurrent flexural strength and deformability design" that would allow structural engineers to consider simultaneously both strength and deformability requirements is developed. For application in real construction practice where concrete strength is usually prescribed, a simpler method of determining the maximum and minimum limits of degree of reinforcement for a particular pair of strength and deformability demand is proposed. Numerical examples are presented to illustrate the application of both design methods.

Fundamental period of infilled RC frame structures with vertical irregularity

  • Asteris, Panagiotis G.;Repapis, Constantinos C.;Foskolos, Filippos;Fotos, Alkis;Tsaris, Athanasios K.
    • Structural Engineering and Mechanics
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    • 제61권5호
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    • pp.663-674
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    • 2017
  • The determination of the fundamental period of vibration of a structure is essential to earthquake design. Current codes provide formulas for the approximate estimation of the fundamental period of earthquake-resistant building systems. These formulas are dependent only on the height of the structure or number of storeys without taking into account the presence of infill walls into the structure, despite the fact that infill walls increase the stiffness and mass of the structure leading to significant changes in the fundamental period. Furthermore, such a formulation is overly conservative and unable to account for structures with geometric irregularities. In this study, which comprises the companion paper of previous published research by the authors, the effect of the vertical geometric irregularities on the fundamental periods of masonry infilled structures has been investigated, through a large set of infilled frame structure cases. Based on these results, an attempt to quantify the reduction of the fundamental period due to the vertical geometric irregularities has been made through a proposal of properly reduction factor.

PSC-I 거더교의 지진취약도 평가를 위한 HAZUS 방법의 국내 적용성 연구 (Modified HAZUS Method for Seismic Fragility Assessment of Domestic PSC-I Girder Bridges)

  • 서형열;이진학;김두기;송종걸
    • 한국구조물진단유지관리공학회 논문집
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    • 제14권2호
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    • pp.161-170
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    • 2010
  • 교량구조물의 지진재해평가기술을 개발하기 위해서는 전체 교량에 대한 분류체계별 표준교량을 선정한 후, 간편한 정식화 방법을 통해 지진취약도를 분석하고, 이로부터 교량의 근사적인 지진위험도를 평가하는 것이 현실적이라 할 수 있다. 본 연구에서는 HAZUS에서 사용 중인 간편하면서도 실용적인 방법을 미국과 국내의 내진설계수준 등을 고려하여 국내 PSC-I 거더교에 적용 가능하도록 '수정된 HAZUS 방법에 의한 한국형 지진취약도함수'를 개발하였다. 이를 위해 국내 표준교량 형식 중 하나인 PSC-I 거더교에 대해 수치해석적 방법을 적용하여 해석적 지진취약도함수를 구하고, 수정된 HAZUS 방법을 적용하여 지진취약도함수를 구한 후 그 결과를 비교 분석하였다. 수정된 HAZUS 방법에서의 주요 계수는 수치해석적 방법에 의한 지진취약도함수와 가장 유사한 경향을 보이도록 하는 계수를 선택하는 방법으로 결정하였으며, 강도감소계수의 경우 HAZUS에서 제시한 값의 70% 수준을 사용할 때 해석적 결과와 유사한 지진취약도 함수를 구할 수 있음을 알 수 있었다.