• 제목/요약/키워드: steel moment frames

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비탄성변위비와 붕괴강도비를 이용한 MPA기반의 IDA 해석법 (MPA-based IDA Using the Inelastic Displacement ratio, CR and the Collapse Intensity, RC)

  • 한상환;석승욱;이태섭
    • 한국지진공학회논문집
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    • 제14권5호
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    • pp.33-39
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    • 2010
  • 본 연구는 Modal Pushover Analysis(MPA)를 기반으로 비탄성 변위비(inelastic displacement ratio, $C_R$)와 붕괴 강도비(collapse strength ratio, $R_C$)를 이용한 간략한 Incremental Dynamic Analysis (IDA) 해석법을 제안해 냈다. 이 해석법은 선형 또는 비선형 동적해석 수행 없이 다자유도 시스템의 응답을 계산하기 때문에 간단하게 IDA곡선을 얻을 수 있다. 제안한 방법의 정확성은 6층, 9층, 20층의 철골 모멘트 골조를 대상으로 44개의 지진데이터를 사용하였으며 본 연구에서 제안하는 MPA를 이용한 $C_R-R_C$ IDA 해석결과와 비선형 동적해석 (Nonlinear Response History Analysis)을 통한 IDA 응답값, 그리고 각 주요모드의 비선형 동적해석을 통한 MPA-IDA 응답 값을 비교하여 타당성을 확인하였다. MPA를 이용한 $C_R-R_C$ IDA 해석법은 반복된 비선형 동적해석 과정이 없기 때문에 계산시 소요시간이 가장 작았으며 비교적 정확한 결과를 나타냈다.

모듈러 구조물의 해석 모델이 지진응답에 미치는 영향 (Influence of Analytical Models on the Seismic Response of Modular Structures)

  • 최경석;이호찬;김형준
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권2호
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    • pp.74-85
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    • 2016
  • 모듈러 구조물은 관행적으로 철골 모멘트 저항골조와 유사한 횡력저항성능을 가진다는 가정하에 내진 설계된다. 하지만 모듈러 구조물은 중첩된 구조 부재와 단위 모듈의 체결을 위한 복잡한 접합 상세를 가지기 때문에 철골 모멘트 골조와 다른 하중 전달 메커니즘을 가진다. 본 연구에서는 중첩된 구조 부재 효과와 접합부의 거동 특성을 고려하여 총 4개의 구조해석 모델을 수립하였으며, 수립된 해석 모델을 이용하여 3층과 5층 표본 건물에 대한 비선형 정적 해석을 수행하였다. 표본 건물은 중첩된 구조 부재와 접합부의 이력 거동에 대한 모델링 방법에 따라 강성 및 강도의 차이가 발생하는 것으로 나타났다. 중첩된 구조 부재를 완전 합성, 모듈 간 접합부를 강접합으로 고려하여 설계된 모듈러 구조물은 횡 강성 및 강도가 과대 평가되는 것으로 나타났다. 뿐만 아니라 해석 결과를 통해 3층 이상의 모듈러 구조물은 철골 모멘트 저항골조와 비교하여 상대적으로 적은 초과 강도를 가지는 것을 확인할 수 있다.

A new method for infill equivalent strut width

  • Tabeshpour, Mohammad Reza;Arasteh, Arash Mahdipour
    • Structural Engineering and Mechanics
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    • 제69권3호
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    • pp.257-268
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    • 2019
  • Infills are as important members in structural design as beams, columns and braces. They have significant effect on structural behavior. Because of lots of variables in infills like material non-linear behavior, the interaction between frames and infill, etc., the infills performance during an earthquake is complicated, so have led designers do not consider the effect of infills in designing the structure. However, the experimental studies revealed that the infills have the remarkable effect on structure behavior. As if these effects ignored, it might occur soft-story phenomena, torsion or short-column effects on the structures. One simple and appropriate method for considering the infills effects in analyzing, is replacing the infills with diagonal compression strut with the same performance of real infill, instead of designing the whole infill. Because of too many uncertainties, codes and researchers gave many expressions that were not as the same as the others. The major intent of this paper is calculation the width of this diagonal strut, which has the most characteristics of infill. This paper by comprehensive on different parameters like the modulus of young or moment of inertia of columns presents a new formula for achieving the equivalent strut width. In fact, this new formula is extracted from about 60 FEM analyses models. It can be said that this formula is very efficient and accurate in estimating the equivalent strut width, considering the large number of effective parameters relative to similar relationships provided by other researchers. In most cases, the results are so close to the values obtained by the FEM. In this formula, the effect of out of plane buckling is neglected and this formula is used just in steel structures. Also, the thickness of infill panel, and the lateral force applied to frame are constant. In addition, this new formula is just for modeling the lateral stiffness. Obtaining the nearest response in analyzing is important to the designers, so this new formula can help them to reach more accurate response among a lot of experimental equations proposed by researchers.

Seismic vulnerability macrozonation map of SMRFs located in Tehran via reliability framework

  • Amini, Ali;Kia, Mehdi;Bayat, Mahmoud
    • Structural Engineering and Mechanics
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    • 제78권3호
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    • pp.351-368
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    • 2021
  • This paper, by applying a reliability-based framework, develops seismic vulnerability macrozonation maps for Tehran, the capital and one of the most earthquake-vulnerable city of Iran. Seismic performance assessment of 3-, 4- and 5-story steel moment resisting frames (SMRFs), designed according to ASCE/SEI 41-17 and Iranian Code of Practice for Seismic Resistant Design of Buildings (2800 Standard), is investigated in terms of overall maximum inter-story drift ratio (MIDR) and unit repair cost ratio which is hereafter known as "damage ratio". To this end, Tehran city is first meshed into a network of 66 points to numerically locate low- to mid-rise SMRFs. Active faults around Tehran are next modeled explicitly. Two different combination of faults, based on available seismological data, are then developed to explore the impact of choosing a proper seismic scenario. In addition, soil effect is exclusively addressed. After building analytical models, reliability methods in combination with structure-specific probabilistic models are applied to predict demand and damage ratio of structures in a cost-effective paradigm. Due to capability of proposed methodology incorporating both aleatory and epistemic uncertainties explicitly, this framework which is centered on the regional demand and damage ratio estimation via structure-specific characteristics can efficiently pave the way for decision makers to find the most vulnerable area in a regional scale. This technical basis can also be adapted to any other structures which the demand and/or damage ratio prediction models are developed.

Reinforced concrete structures with damped seismic buckling-restrained bracing optimization using multi-objective evolutionary niching ChOA

  • Shouhua Liu;Jianfeng Li;Hamidreza Aghajanirefah;Mohammad Khishe;Abbas Khishe;Arsalan Mahmoodzadeh;Banar Fareed Ibrahim
    • Steel and Composite Structures
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    • 제47권2호
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    • pp.147-165
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    • 2023
  • The paper contrasts conventional seismic design with a design that incorporates buckling-restrained bracing in three-dimensional reinforced concrete buildings (BRBs). The suboptimal structures may be found using the multi-objective chimp optimization algorithm (MEN-ChOA). Given the constraints and dimensions, ChOA suffers from a slow convergence rate and tends to become stuck in local minima. Therefore, the ChOA is improved by niching and evolutionary operators to overcome the aforementioned problems. In addition, a new technique is presented to compute seismic and dead loads that include all of a structure's parts in an algorithm for three-dimensional frame design rather than only using structural elements. The performance of the constructed multi-objective model is evaluated using 12 standard multi-objective benchmarks proposed in IEEE congress on evolutionary computation. Second, MEN-ChOA is employed in constructing several reinforced concrete structures by the Mexico City building code. The variety of Pareto optimum fronts of these criteria enables a thorough performance examination of the MEN-ChOA. The results also reveal that BRB frames with comparable structural performance to conventional moment-resistant reinforced concrete framed buildings are more cost-effective when reinforced concrete building height rises. Structural performance and building cost may improve by using a nature-inspired strategy based on MEN-ChOA in structural design work.

Difference analysis of the collapse behaviors of the single-story beam-column assembly and multi-story planar frame

  • Zheng Tan;Wei-Hui Zhong;Bao Meng;Xing-You Yao;Yu-Hui Zheng;Yao Gao;Shi-Chao Duan
    • Steel and Composite Structures
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    • 제50권3호
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    • pp.265-280
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    • 2024
  • The collapse behavior observed in single-story beam-column assembly (SSBCA) do not accurately represent the actual overall stress characteristic of multi-story frame structure (MSFS) under column loss scenario owing to ignoring the interaction action among different stories, leading to a disconnection between the anti-collapse behaviors of "components" and "overall structures", that is, the anti-collapse performance of frame structures with two different structural scales has not yet formed a combined force. This paper conducts a numerical and theoretical study to explore the difference of the collapse behaviors of the SSBCA and MSFS, and further to reveal the internal force relationships and boundary constraints at beam ends of models SSBCA and MSFS. Based on the previous experimental tests, the corresponding refined numerical simulation models were established and verified, and comparative analysis on the resistant-collapse performance was carried out, based on the validated modeling methods with considering the actual boundary constraints, and the results illustrates that the collapse behaviors of the SSBCA and MSFS is not a simple multiple relationship. Through numerical simulation and theoretical analysis, the development laws of internal force in each story beam under different boundary constraints was clarified, and the coupling relationship between the bending moment at the most unfavorable section and axial force in the composite beam of different stories of multi story frames with weld cover-plated flange connections was obtained. In addition, considering the effect of the yield performance of adjacent columns on the anti-collapse bearing capacities of the SSBCA and MSFS during the large deformation stages, the calculation formula for the equivalent axial stiffness at the beam ends of each story were provided.

한계상태설계법(限界狀態設計法)에 의한 철근(鐵筋)콘크리트 플래트 슬라브형(型) 구조체(構造體)의 최적화(最適化)에 관한 연구(研究) (A Study on the Optimal Limit State Design of Reinforced Concrete Flat Slab-Column Structures)

  • 박문호
    • 대한토목학회논문집
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    • 제4권1호
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    • pp.11-26
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    • 1984
  • 본(本) 연구(硏究)는 다제약(多制約) 다설계변수(多設計變數)를 갖는 철근(鐵筋)콘크리트 플래트 슬라브형(型) 구조체(構造體)의 구조해석(構造解析)과 설계과정(設計過程)을 한계상태설계이론(限界狀態設計理論)에 의하여 동시(同時)에 수행(遂行)할 수 있는 종합적(綜合的)인 최적화(最適化)를 시도(試圖)한 것이다. 수학적(數學的) 모델의 변수(變數)로는 플래트 슬라브와 기둥의 단면(斷面)치수 철근단면적(鐵筋斷面積) 등의 설계변수(設計變數)와 휨모우먼트 재분배율(再分配率)의 해석변수(解析變數)로 구성(構成)되어 있다. 최적화(最適化) 문제(問題)의 형성(形成)에서는 목적함수(目的凾數)로 공비함수(工費凾數)를 취(取)하고, 한계상태설계법(限界狀態設計法)을 도입(導入)하고 있는 영국(英國)의 CP 110시방규정(示方規定)에 따라 극한한계상태(極限限界狀態)와 사용한계상태(使用限界狀態)의 제약조건식(制約條件式)을 유도(誘導)하였다. 설계변수(設計變數)와 해석변수(解析變數)의 항(項)으로 유도(誘導)된 목적함수(目的凾數)와 제약조건식(制約條件式)은 일반적(一般的)으로 고차(高次)의 비선형계획문제(非線型計劃問題)가 된다. 본(本) 연구(硏究)에서는 형성(形成)된 비선형최적화(非線型最適化) 문제(問題)를 수차선형계획기법(遂次線型計劃技法)을 도입(導入)하여, 해석(解析)과 설계(設計)를 동시(同時)에 수행(遂行)하면서 전체구조(全體構造)를 종합적(綜合的)으로 최적화(最適化)할 수 있는 최적(最適)알고리즘을 개발(開發)하였다. 개발(開發)된 알고리즘의 타당성(妥當性)과 철근(鐵筋)콘크리트 플래트 슬라브형(型) 구조체(構造體)의 최적화(最適化) 가능성(可能性) 등을 확인(確認)하기 위하여 알고리즘을 수종(數種)의 구조체(構造體)에 직접적용(直接適用)하였다. 본(本) 연구(硏究)에서 개발(開發)된 알고리즘은 철근(鐵筋)콘크리트 플래트 슬라브형(型) 구조체(構造體)에 적용(適用) 가능(可能)하고, 변수(變數)들의 초기가정직(初期假定直)에 관계(關係)없이 수회(數回)(4~6회(回))의 반복시행(反復試行)으로 최적해(最適解)에 수감(收歛)하고, 이렇게 얻어진 결과(結果)는 재래(在來)의 설계(設計)에 비해 경제적(經濟的)인 설계(設計)라는 것을 알았다. 또한 시방서(示方書)에서는 설계자(設計者)가 임의(任意)로 결정(決定)하도록 되어 있는 휨모우먼트 재분배율(再分配率)이 최적단면(最適斷面)의 구성(構成)과 구조(構造)의 경제성(經濟性)에 미치는 영향(影響)이 크므로 설계변수(設計變數)로 택하는 것이 타당(妥當)함을 알았다.

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