• 제목/요약/키워드: fire load

검색결과 515건 처리시간 0.03초

내화성능 개선을 위한 강섬유 보강 내부 앵커형 각형강관 합성기둥의 실험연구 (An Experimental Study of Improving Fire Performance with Steel-fibers for Internally Anchored Square Composite Columns)

  • 김선희;염경수;김용환;최성모
    • 한국강구조학회 논문집
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    • 제26권6호
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    • pp.499-509
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    • 2014
  • 본 연구에서는 해결방안으로 내부 콘크리트를 강섬유와 혼입하여 기둥자체의 연성과 인성을 증대시키는 것에 중점을 맞추고 있다. 즉, 강섬유 혼입량과 하중조건에 따른 내력 및 변형능력을 종합적으로 파악하여 강섬유 콘크리트와 용접조립각형 강관기둥의 상호작용을 구조, 내화측면에서 분석해 보고자 한다. 동일한 형상과 경계조건(하중비)에서 강섬유 혼입(0.375%)으로 내화성능은 약 1.1~1.3배 향상된 실험결과를 얻을 수 있었다. 강섬유 콘크리트의 균열 억제 특성은 열 하중에 의한 콘크리트의 변형저항 성능을 증가 시키면서 내화성능의 향상을 가져온 것으로 판단된다. 또한, 내부 리브의 열 변형에도 내부 콘크리트 단면은 건전한 상태로 남아있어 하중 분담능력이 증폭된 결과로 분석됐다.

철골 철근콘크리트 보 및 철골철망 모르타르조 보의 전열특성 및 화재거동에 관한 실험적 연구 (An Experimental Study on The Fire Resistance Performance of Steel Encased Reinforcement Concrete and Steel Framed Mortar Beam with Loading Condition)

  • 김형준;김흥열;여인환;권기혁;권인규
    • 한국화재소방학회논문지
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    • 제26권1호
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    • pp.80-88
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    • 2012
  • 본 연구에서는 건축물의 피난 및 방화에 관한 규칙 제3조에 명시된 법정내화구조 중 보의 내화성능을 평가하고, 국내외 규정과 비교 및 분석을 하였다. 현행 규칙에 따르면 국내의 법정내화구조는 피난 및 방화구조에 관한 규칙의 시방기준을 만족하면 최대 3시간의 내화성능을 갖는 것으로 본다. 법정내화구조로서 보는 총 5개의 구조가 있으나, 본 연구에서는 우선 철근콘크리조를 대상으로 피복두께에 따른 내화성능을 평가하였다. 실험결과 하중비 0.5와 피복두께 40 mm를 확보할 경우, 최대 법정요구내화시간인 3시간을 만족하는 것으로 나타났다. 철골철망 모르타르조 보의 경우, 피복두께 60 mm 하중비 0.4에서 3시간 내화성능을 확보할 수 있다.

산불로 인한 지표층 연소량 및 온실가스 배출량 추정 (Estimation of Biomass Loss and Greenhouse Gases Emissions from Surface Layer Burned by Forest Fire)

  • 이병두;윤호중;구교상;김경하
    • 한국산림과학회지
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    • 제101권2호
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    • pp.286-290
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    • 2012
  • 산불은 전 세계적으로 다량의 온실가스를 배출하여 지구온난화에 기여한다. 본 연구에서는 산불로 인한 지표층 연료의 연소량과 이로 인한 온실가스 배출량을 분석하고자 하였다. 이를 위해 51개 산불을 대상으로 소나무림과 활엽수림으로 구분하고, 다시 지표화와 수관화 피해 지역으로 나누어 잔존 연료량을 채취하여, 미연소 지역의 연료량과 일원분산분석을 수행하였다. 그 결과 활엽수 지표화 지역은 8,361 kg/ha, 소나무 지표화 지역은 8,055 kg/ha, 소나무 수관화 지역은 12,333 kg/ha이 연소되어, 수종별 산불행태별로 차이가 있었다. 이때의 연소율은 각각 78, 59, 90%이었다. 이산화탄소, 메탄, 아산화질소 등의 온실가스 배출량은 활엽수 지표화 연소지역 15,856 kg/ha, 소나무 지표화 연소지역 14,834 kg/ha, 소나무 수관화 연소지역은 약 22,709 kg/ha이었다.

구획화재실험을 통한 온도 변화 예측 기법 연구 (The Study on the Prediction of Temperature Curve by Compartment Fire Experiment)

  • 권오상
    • 한국화재소방학회논문지
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    • 제28권5호
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    • pp.44-51
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    • 2014
  • 본 연구에서는 건축물에서의 성능기반 화재안전 설계 시에 사용되는 구획공간에서의 화재 성상 분석을 위해서 사무실 공간을 대상으로 하여 $2.4(L){\times}3.6(W){\times}2.4(H)m$의 크기의 구획 Mock-up을 제작하고 구획 내부에는 화재하중 $18.74kg/m^2$을 적용하여 책상, 의자, 컴퓨터 등과 같은 실제 가연물을 배치하여 화재실험을 실시하였다. 화재실험 결과, 구획 공간의 내부 중앙에서는 394~408 s 사이에 $600^{\circ}C$에 도달하였고 구획 입구 모서리에서는 404~420 s 사이에 $600^{\circ}C$에 도달하였다. 본 연구에서는 화재실험을 통해 측정된 온도변화 데이터를 BFD 곡선에 적용하여 화재시 구획 공간내의 온도변화 예측 기법을 분석하고자 하였으며, 화재실험을 통해 BFD 곡선 인자는 최대온도 $900^{\circ}C$, 최대온도 도달시간 7분과 형태계수 1.5로 결정하였다. BFD 곡선에 적용된 사무실 공간의 시간에 따른 온도 곡선은 화재초기에 빠르게 상승한 이후에 약 9분경 이후에 감소하는 형태를 나타내고 있다.

The bearing capacity of monolithic composite beams with laminated slab throughout fire process

  • Lyu, Junli;Zhou, Shengnan;Chen, Qichao;Wang, Yong
    • Steel and Composite Structures
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    • 제38권1호
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    • pp.87-102
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    • 2021
  • To investigate the failure form, bending stiffness, and residual bearing capacity of monolithic composite beams with laminated slab throughout the fire process, fire tests of four monolithic composite beams with laminated slab were performed under constant load and temperature increase. Different factors such as post-pouring layer thickness, lap length of the prefabricated bottom slab, and stud spacing were considered in the fire test. The test results demonstrate that, under the same fire time and external load, the post-pouring layer thickness and stud spacing are important parameters that affect the fire resistance of monolithic composite beams with laminated slab. Similarly, the post-pouring layer thickness and stud spacing are the predominant factors affecting the bending stiffness of monolithic composite beams with laminated slab after fire exposure. The failure forms of monolithic composite beams with laminated slab after the fire are approximately the same as those at room temperature. In both cases, the beams underwent bending failure. However, after exposure to the high-temperature fire, cracks appeared earlier in the monolithic composite beams with laminated slab, and both the residual bearing capacity and bending stiffness were reduced by varying degrees. In this test, the bending bearing capacity and ductility of monolithic composite beams with laminated slab after fire exposure were reduced by 23.3% and 55.4%, respectively, compared with those tested at room temperature. Calculation methods for the residual bearing capacity and bending stiffness of monolithic composite beams with laminated slab in and after the fire are proposed, which demonstrated good accuracy.

신경회로망을 이용한 옥내배선의 트랙킹 검지 기법 (Detection Technique of Tracking at Indoor Wiring using Neural Net work)

  • 최태원;이오걸;김석순;이수흠;정원용
    • 한국화재소방학회논문지
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    • 제9권1호
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    • pp.3-9
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    • 1995
  • This paper is a study to dectect the tracking owing to deterioration of indoor wiring, and to prevent the electrical fire. After analysing the harmonics of waveshapes in load current and tracking current by FFT, a method of identifying the tracking was developed by using neural network. Fluoscent lamp, witch was mostly used in indoor, was chosen as the load used in this study. When the learning number in neural network was more then 30,000 times, an excellent neural net-work which could correctly identify the tracking was established. Therefore, the result of this study can be utilized as a basic material in various measuring instruments, such as an hotline inslation tester, earth tester in vehicles, and tracking fire alarm device, witch can detect the tracking under the condition of hotline.

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업무시설의 화재성상예측을 위한 가연물 조사 및 화재하중 제안 (A Suggestion on the Fire load and Combustible survey for Prediction of Fire in office Facilities)

  • 이병흔;권영진
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 추계 학술논문 발표대회
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    • pp.98-99
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    • 2019
  • In Korea, buildings are becoming skyscrapers due to restrictions on land. The performance-oriented design was introduced in 2009 for fire safety of such buildings, but the application of the combustible data through engineering design and experiment is a poor reality. Large buildings are used for complex purposes, especially since the density of the office facilities is high, the study conducted a study on the combustible materials of the office facilities and the thermal speed and fire load of the main combustibles of the office facilities were calculated.

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Dynamic Response of Drill Floor to Fire Subsequent to Blowout

  • Kim, Teak-Keon;Kim, Seul-Kee;Lee, Jae-Myung
    • 한국해양공학회지
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    • 제34권2호
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    • pp.110-119
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    • 2020
  • Explosions and fires on offshore drilling units and process plants, which cause loss of life and environmental damage, have been studied extensively. However, research on drilling units increased only after the 2010 Deepwater Horizon accident in the Gulf of Mexico. A major reason for explosions and fires on a drilling unit is blowout, which is caused by a failure to control the high temperatures and pressures upstream of the offshore underwater well. The area susceptible to explosion and fire due to blowout is the drill floor, which supports the main drilling system. Structural instability and collapse of the drill floor can threaten the structural integrity of the entire unit. This study simulates the behavior of fire subsequent to blowout and assesses the thermal load. A heat transfer structure analysis of the drill floor was carried out using the assessed thermal load, and the risk was noted. In order to maintain the structural integrity of the drill floor, passive fire protection of certain areas was recommended.

비재하 가열시험 및 Stub 시험체를 활용한 CFT기둥의 역학적 특성평가에 관한 실험적 연구 (An Experimental Study on the Evaluation of Mechanical Properties of CFT Column by Unstressed Test and Stub Specimen)

  • 이대희;이태규;이의배;김영선;김규용;김무한
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2008년도 춘계 학술논문 발표대회
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    • pp.209-213
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    • 2008
  • Recently, it increases in use of CFT(Concrete filled steel tube, below CFT) because material and method are required to be diversification and High-Performance according to increase the super-high structure. But, CFT column lose bearing capacity under fire because steel tube is exposed to outside. As a result, structure is collapsed and then it cause much damage. In case of the Europe, Japan and America, they have studied the fire-resistance performance of CFT under fire for a long time. However, it would have hardly studied it in domestic because it is much difficulty about experiment machine and cost. So it is needed base on fire-resist performance of CFT under fire. Therefore, this study dynamic specificity of stub column which made tester of stub column based on facts of strength and mixing fiber evaluated used heating and load testing machine. As a result, it is willing to propose fundamental data for quick and accurate diagnosis of deteriorated concrete structure by fire damage with experiment according to the design high strength concrete.

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An experimental and numerical analysis of concrete walls exposed to fire

  • Baghdadi, Mohamed;Dimia, Mohamed S.;Guenfoud, Mohamed;Bouchair, Abdelhamid
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.819-830
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    • 2021
  • To evaluate the performance of concrete load bearing walls in a structure under horizontal loads after being exposed to real fire, two steps were followed. In the first step, an experimental study was performed on the thermo-mechanical properties of concrete after heating to temperatures of 200-1000℃ with the purpose of determining the residual mechanical properties after cooling. The temperature was increased in line with natural fire curve in an electric furnace. The peak temperature was maintained for a period of 1.5 hour and then allowed to cool gradually in air at room temperature. All specimens were made from calcareous aggregate to be used for determining the residual properties: compressive strength, static and dynamic elasticity modulus by means of UPV test, including the mass loss. The concrete residual compressive strength and elastic modulus values were compared with those calculated from Eurocode and other analytical models from other studies, and were found to be satisfactory. In the second step, experimental analysis results were then implemented into structural numerical analysis to predict the post-fire load-bearing capacity response of the walls under vertical and horizontal loads. The parameters considered in this analysis were the effective height, the thickness of the wall, various support conditions and the residual strength of concrete. The results indicate that fire damage does not significantly affect the lateral capacity and stiffness of reinforced walls for temperature fires up to 400℃.