• Title/Summary/Keyword: Structural fire protection

검색결과 123건 처리시간 0.026초

Thermo-mechanical analysis of reinforced concrete slab using different fire models

  • Suljevic, Samir;Medic, Senad;Hrasnica, Mustafa
    • Coupled systems mechanics
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    • 제9권2호
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    • pp.163-182
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    • 2020
  • Coupled thermo-mechanical analysis of reinforced concrete slab at elevated temperatures from a fire accounting for nonlinear thermal parameters is carried out. The main focus of the paper is put on a one-way continuous reinforced concrete slab exposed to fire from the single (bottom) side as the most typical working condition under fire loading. Although contemporary techniques alongside the fire protection measures are in constant development, in most cases it is not possible to avoid the material deterioration particularly nearby the exposed surface from a fire. Thereby the structural fire resistance of reinforced concrete slabs is mostly influenced by a relative distance between reinforcement and the exposed surface. A parametric study with variable concrete cover ranging from 15 mm to 35 mm is performed. As the first part of a one-way coupled thermo-mechanical analysis, transient nonlinear heat transfer analysis is performed by applying the net heat flux on the exposed surface. The solution of proposed heat analysis is obtained at certain time steps of interest by α-method using the explicit Euler time-integration scheme. Spatial discretization is done by the finite element method using a 1D 2-noded truss element with the temperature nodal values as unknowns. The obtained results in terms of temperature field inside the element are compared with available numerical and experimental results. A high level of agreement can be observed, implying the proposed model capable of describing the temperature field during a fire. Accompanying thermal analysis, mechanical analysis is performed in two ways. Firstly, using the guidelines given in Eurocode 2 - Part 1-2 resulting in the fire resistance rating for the aforementioned concrete cover values. The second way is a fully numerical coupled analysis carried out in general-purpose finite element software DIANA FEA. Both approaches indicate structural fire behavior similar to those observed in large-scale fire tests.

A model for evaluating the fire resistance of contour-protected steel columns

  • Kodur, V.K.R.;Ghani, B.A.;Sultan, M.A.;Lie, T.T.;El-Shayeb, M.
    • Structural Engineering and Mechanics
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    • 제12권5호
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    • pp.559-572
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    • 2001
  • A numerical model, in the form of a computer program, for evaluating the fire resistance of insulated wide-flange steel columns is presented. The three stages associated with the thermal and structural analysis in the calculation of fire resistance of columns is explained. The use of the computer program for tracing the response of an insulated steel column from the initial pre-loading stage to collapse, due to fire, is demonstrated. The validity of the numerical model used in the program is established by comparing the predictions from the computer program with results from full-scale fire tests. Details of fire tests carried out on wide-flange steel columns protected with ceramic fibre insulation, together with results, are presented. The computer program can be used to evaluate the fire resistance of protected wide-flange steel columns for any value of the significant parameters, such as load, section dimensions, column length, type of insulation, and thickness of insulation without the necessity of testing.

다중이용업소 실내마감재료 사용기준에 관한 연구 (A Study on Using the Interior Finishing Material using Regulation at Multiple-using Businesses)

  • 김용성;조성오
    • 한국실내디자인학회논문집
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    • 제22권5호
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    • pp.216-224
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    • 2013
  • There are the relevant provisions that apply to building regulations about the Building codes, Fire Protection laws, and more Multi-using interior finish materials businesses etc. The differences between these regulations are as follows: The Building codes is defined the main use of the building according to facilities to used to set the scale by the use of the floor space, On the other hand, Fire Protection laws are the basic purpose and the act of using the architectural space(or sales) by separating object by fire. And Multiple-using Businesses Facilities consist of two regulations engaged in the kind of law and the size of the floor area. One building can not be based on operating facilities and together in Multiple use businesses Law. As such, the Buildings are applied to the Building codes, Fire Protection laws, such as Multi-using Businesses Facilities interior construction industry due to the structural differences in the position of the designer feeling a lot of difficulties and confusion. The Multi-use businesses Facilities engage in the kind of law, the size of the floor area and seating capacity. These can not be based on operating facilities, and consists of two regulations together in one building. This study is purposed to help improving the finish of the interior architecture that is related to the Building code regulations, Fire Protection laws, Multi-using Facilities interior finishing material relevant with the provisions from the law through analyze the case of developed countries, and the current Multiple use Businesses Facilities research range from the law of multiple-using facilities, interior finishing, interior architecture for supervision reasonably and compensation for the interior design. So, Result is as follows: First, interior decorations can be separated the fixed material and the moveable things. second, It should be included multi-using Business though small size business space at the basement floor. third, It should be established statute law that design and construction responsibility. forth, re-testing fire resist performance after some period. and finally, it need to mitigate regulation where be installed sprinkler.

막재료의 설치높이와 발열량에 따른 화재연소특성 (Fire Combustion Characteristics of Membrane Materials According to the Height and Heat Generation Rate)

  • 조승호;최광호;노영숙
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권6호
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    • pp.84-90
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    • 2016
  • 최근 다양한 형태의 막구조물의 건설이 증가추세이지만 막구조물에 적합하지 않은 내화기준이 적용되어 활용성이 위축되고 있는 실정이다. 그렇기 때문에 막구조물의 건설 활성화에 맞추어서 이에 대한 내화기준의 제 개정이 필요한 상황이다. 따라서 본 연구에서는 일반적으로 많이 사용되는 막재료(ETFE, PVF, PTFE)를 선정하여 막구조물에 화재가 일어났을 때, 시간이 변화함에 따라 온도가 올라가는 막재료의 물리적인 특성 변화와 발열량과 막재료 설치높이와의 상관관계를 파악하여 막구조 내화기준에 기초 자료로 활용하고자 한다.

과학적 방법을 적용한 화재조사와 결함수 분석을 이용한 정온전선의 발화원인 추론 (Fire Cause Reasoning of Self-regulating Heating Cable by a Fire Investigation Applying the Scientific Method and Fault Tree Analysis)

  • 김두현;이흥수
    • 한국화재소방학회논문지
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    • 제30권4호
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    • pp.73-81
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    • 2016
  • 정온전선은 평형 도체 사이에 반도전성 폴리머를 연속 압출 방식으로 충전시킨 후 양 도체 사이에 전기를 흐르게 함으로써 고분자에 의한 전열을 이용한 전기 발열체이다. 정온전선은 가격이 저렴하고 시공이 편리하기 때문에 겨울철 수배관의 동파방지용 열선으로 주로 사용되고 있다. 하지만 이러한 유용함에도 불구하고 구조적인 문제로 인하여 두 평형 도체의 절연이 파괴되는 경우에는 화재로 이어질 수도 있는 위험성이 존재하고 있다. 본 논문은 정온전선에 의한 화재현장을 조사하여 원인을 도출하는 방식으로 직접적인 원인을 추론하고자 하였으며, 결함수 분석을 통해 근본적인 문제를 파악해 보고자 하였다. 실제 냉동창고 화재현장을 조사하여 정온전선에 의한 화재원인을 추론한 결과 전선 말단 절연처리 결함에 의한 절연파괴인 것으로 판단되었다. 향후 이 결과는 안전활동 및 유사 화재원인조사 시에도 활용될 수 있을 것이다

기둥 축력과 조적허리벽을 고려한 1980년대 학교교사 구조요소의 파괴모드 평가 (Failure Mode of Structural Components Considering Column Axial Forces and Partial Masonry Infills for School Buildings Constructed in the 1980s)

  • 정수현;최명호;이창환
    • 한국공간구조학회논문집
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    • 제22권3호
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    • pp.57-64
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    • 2022
  • As earthquakes have increased in Korea recently, people are paying attention to the seismic performance of buildings built in the past. Many school buildings in Korea were built based on standard drawings before the seismic design was applied. However, since school buildings are often designated as emergency evacuation facilities in case of disasters such as earthquakes, seismic evaluation and retrofit must be done quickly. This study investigated the failure modes among structural components (beams, columns, and joints), focusing on 1980s standard drawings for school buildings. The effects of column axial force, partial masonry infills, and different material strengths for concrete and rebar were considered for detailed evaluation. As a result, most of the joints were found to be the weakest among structural components. Column axial forces tended to make the joints more vulnerable, and partial masonry infills increased the possibility of joint failure and shear failure in columns.

노후 건축물의 안전성능 평가항목 (Safety Performance Assessment for a Aged Building)

  • 권동찬;이용재;이찬식
    • 한국건설관리학회:학술대회논문집
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    • 한국건설관리학회 2004년도 제5회 정기학술발표대회 논문집
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    • pp.296-300
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    • 2004
  • 건축물이 노후화되면 구조안전성능, 설비 및 마감의 안전성 등이 저하된다. 기간의 경과와 사용조건에 따라 성능 및 건축물의 가치는 변하기 때문에 건축물의 효율적인 유지관리 및 건축물의 매매 시 발생할지도 모르는 분쟁으로 인한 소비자 보호 차원에서 건축물의 안전성능에 대한 정확한 평가가 필요하다. 이 연구에서는 건축물의 안전성능에 관한 기존의 연구 결과와 성능평가 모델들을 비교 분석하여 건축물의 안전성능을 객관적으로 평가할 수 있는 항록을 선정 $\cdot$제시하였다. 이 연구 결과는 건축물의 적정 설계 $\cdot$시공 유지관리를 통하여 장수명화를 유도하기 위한 수단의 하나로 이용할 수 있을 것으로 판단되며, 앞으로 진행되는 건축물의 안전성능평가를 위한 기준 및 절차 연구의 기초 자료로 활용될 수 있을 것이다.

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신형상 U형 하이브리드 합성보의 내화성능에 관한 연구 (Fire Resistance of U-shape Hybrid Composite Beam)

  • 김성배;김상섭;유덕수;최승관
    • 한국강구조학회 논문집
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    • 제25권4호
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    • pp.379-388
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    • 2013
  • 본 연구에서는 신형상 U형 하이브리드 합성보의 내화성능평가를 실시하였다. 내화성능평가는 세라믹계의 뿜칠재와 내화페인트로 구분하여 내화시험을 수행하였다. 시험 변수는 피복재의 종류(뿜칠재와 페인트)와 내화시간(2시간, 3시간), 하중가력 유무(재하와 비재하), 뿜칠재 두께 등이다. 내화성능평가 합성보는 기존 철골보로 인정을 받은 제품에 비해 내화성능이 향상되는 것을 확인할 수 있다. 그러나 내화성능 향상에 대한 정량적인 평가는 합성보 형상과 관련한 다양한 변수가 조합되므로 지속적인 검토가 필요할 것으로 판단된다.

고강도 콘크리트 내화피복용 경량 모르터의 온도이력 성상 (Properties of Temperature History of Lightweight Mortar for Fire Protection Covering Material in High Strength Concrete)

  • 임서형
    • 한국화재소방학회논문지
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    • 제26권6호
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    • pp.45-50
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    • 2012
  • 폭렬은 철근노출과 함께 구조부재의 단면을 감소시키며, 이로 인하여 구조적 거동에 심각한 문제를 발생시킨다. 고강도 콘크리트에 내화 모르터를 피복함으로서 화재시 폭렬을 방지할 수 있으며, 콘크리트 내의 철근의 온도상승을 지연시킬 수 있다. 본 연구의 목적은 이러한 고강도 콘크리트의 내화피복재로 활용하기 위한 것으로 퍼라이트와 폴리프로필렌 섬유로 경량 모르터를 제조하여 온도이력 성상을 파악하는데 있다. 이에 따른 실험인자로는 폴리프로필렌 섬유의 첨가량과 길이이다. 연구결과 폴리프로필렌 섬유를 첨가함으로서 모르터의 공극구조를 변화시킬 수 있었으며, 이는 내부 온도상승을 지연시킨다. 또한 고강도 콘크리트의 내화피복재로서 경량 모르터를 사용할 수 있는 가능성을 확인하였다.

Collapse Initiation and Mechanisms for a Generic Multi-storey Steel Frame Subjected to Uniform and Travelling Fires

  • Rackauskaite, Egle;Kotsovinos, Panagiotis;Lange, David;Rein, Guillermo
    • 국제초고층학회논문집
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    • 제10권4호
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    • pp.265-283
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    • 2021
  • To ensure that fire induced collapse of a building is prevented it is important to understand the sequence of events that can lead to this event. In this paper, the initiation of collapse mechanisms of generic a multi-storey steel frame subjected to vertical and horizontal travelling fires are analysed computationally by tracking the formation of plastic hinges in the frame and generation of fire induced loads. Both uniform and travelling fires are considered. In total 58 different cases are analysed using finite element software LS-DYNA. For the frame examined with a simple and generic structural arrangement and higher applied fire protection to the columns, the results indicate that collapse mechanisms for singe floor and multiple floor fires can be each split into two main groups. For single floor fires (taking place in the upper floors of the frame (Group S1)), collapse is initiated by the pull-in of external columns when heated beams in end bays go into catenary action. For single floor fires occurring on the lower floors(Group S2), failure is initiated (i.e. ultimate strain of the material is exceeded) after the local beam collapse. Failure in both groups for single floor fires is governed by the generation of high loads due to restrained thermal expansion and the loss of material strength. For multiple floor fires with a low number of fire floors (1 to 3) - Group M1, failure is dominated by the loss of material strength and collapse is mainly initiated by the pull-in of external columns. For the cases with a larger number of fire floors (5 to 10) - Group M2, failure is dominated by thermal expansion and collapse is mainly initiated by swaying of the frame to the side of fire origin. The results show that for the investigated frame initiation of collapse mechanisms are affected by the fire type, the number of fire floors, and the location of the fire floor. The findings of this study could be of use to designers of buildings when developing fire protection strategies for steel framed buildings where the potential for a multifloor fire exists.