• 제목/요약/키워드: Cargo fire

검색결과 29건 처리시간 0.049초

도로터널 화재안전기준 기반 항만 지역 도로터널 화재 안전성 분석 (Evaluation of Fire Safety for Road Tunnels in Port Area based on Fire Safety Guidelines)

  • 하예진;전준호
    • 융복합기술연구소 논문집
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    • 제11권1호
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    • pp.25-28
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    • 2021
  • Recently, the fire safety of road tunnels has been important issues in South Korea. However, proper fire safety regulations has not made for road tunnels. Due to geographical challenges in South Korea, road tunnels should be constructed to secure stable traffic flows. In the Guidelines for Installing and Managing Disaster Prevention Facilities of Road Tunnels (NFSC 603), main target vehicles are passenger cars. This guidelines cannot support big fires from larger vehicles such as cargo, oil trucks. In this study, fire safety for a road tunnel in port area was analyzed with fire dynamics theory under cargo truck fire scenario. Sujunsan road tunnel in Busan city was chosen as a target tunnel, which links between Busan port and highways to increase cargo shipping. The results show the limitations of present guidelines (NFSC 603) for road tunnel from large fire situations.

Ro-Ro 구역용 미분무 소화설비의 개발을 위한 실험적 연구 (An experimental study on development of water mist fire-fighting systems for Ro-Ro spaces)

  • 곽지현;김영한
    • Journal of Advanced Marine Engineering and Technology
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    • 제37권8호
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    • pp.946-952
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    • 2013
  • 선박의 Ro-Ro 구역이나 특별범주구역의 화재방호를 위해 설치하는 고정식 수계소화설비의 개발 및 실용화를 위해, 특히 방수량이 적으며 관련기준에서 요구하는 성능요건을 만족하는 미분무 노즐을 개발하고자 실물화재실험을 수행하였다. 본 설비의 화재시나리오는 크게 두 가지로 트럭화물화재와 승용차화재로 구분되며, 각각 고정 설치된 미분무 노즐과 화원과의 세 가지 위치에 대한 시나리오로 이루어져 있다. 모든 화재실험은 30분간 진행되었으며 천장부의 가스온도와 우드펠릿의 손상율, 타깃합판의 착화여부로 판단되었다. 본 논문은 두 가지 화재실험 중 조건이 더욱 까다로운 트럭화재용 미분무 노즐의 결과를 위주로 방수압력과 방수량, 미분무수의 유동특성에 따른 화재실험결과와 화재진압특성을 고찰하였으며, 수십 회의 반복실험 결과 분당 약 40 L의 유량을 가지는 저압 미분무 노즐로 Ro-Ro구역의 화재진압이 가능한 것으로 나타났다.

선박관리와 감항능력주의의무에 관한 연구 (A Paper on the Relation of Ship Management and Obligation to Exercise Due Diligence in Making the Vessel Seaworthy)

  • 정준식
    • 한국항만경제학회지
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    • 제21권4호
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    • pp.121-139
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    • 2005
  • The case, Papera Traders Co. Ltd. and Others v. Hyundai Merchant Marine Co. Ltd and Another(The Eurasian Dream), was occurred on July, 1998 when the ISM Code became mandatory under SOLAS and from that date it applied to oil tankers, chemical tankers, gas carriers, bulk carriers and cargo high-speed craft of 500 gross tonnage and above. On July 23, 1998, a fire started on the deck of pure car carrier Eurasian Dream while in port at Sharjah. The source of fuel was the stevedores action of pouring petrol or transferring fuel in some way - refueling or pouring into a carburettor. The fire eventually destroyed or damaged the vessels cargo of new and second-hand vehicles and rendered the vessel itself a constructive total loss. Justice Cresswell held that the fire that destroyed or damaged the cargo was due to the unseaworthiness of the vessel they have the burden of proving that the vessel was unseaworthy before and at the beginning of the voyage and that the loss or damage was caused by that unseaworthiness. This case was a dispute between dependent and claimant alleging that the carrier should provide "properly man, equip and supply the ship and keep the ship so manned" under Hague-Visby Rules. Although ISM code was not officially applied to the carriage by car carriers until July 2002, a rule based on the code had customarily been employed as a mean for international dispute resolution. Examining the above case closely, the purpose of this study is to explore the relation of ship management and obligation to exercise due diligence in making the vessel seaworthy.

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선박용 미분무수 소화설비의 성능평가연구 (A Study on the performance test of Water mist system as a fire extinguish system for Ships)

  • 김성윤;안병호;김동석;김유택
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2006년도 전기학술대회논문집
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    • pp.155-156
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    • 2006
  • Developed and conducted a performance test of the Water mist system that is satisfied with the requirement of a fire test requiring Class 3 Engine Mock-up exceeding net volume $3,000m^3$ as per IMO's MSC/Circ. 668 Appendix B(Test method for fire testing equivalent water-based fire-extinguishing systems for machinery spaces of category A and cargo pump rooms).Even though fuel atomizing was continued for 15 sec. after stopping of the system according to the test method relating to the atomizing fire type, no fire was reignited. This result shows the excellence of the system. There was no damage to the contents of the system after the test.

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선박용 펌프의 소개 (An Introduction of Pumps Installed for Marine Use)

  • 이상일;이영호;김유택
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2006년 제4회 한국유체공학학술대회 논문집
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    • pp.363-366
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    • 2006
  • Various kinds of ships(Cargo ship, Passenger ship, Training ship, Special ship etc.) are operated to transport cargo or passengers at sea in the world. Most of the important auxiliary machinery which is installed are fluid machinery in those ships. A large percentage of fluid machinery is pumps which are classified turbo and non-turbo type. While much previous research has focused on pumps for shore use, very little is known about ship's pump. In order to develop an understanding of ship's pump, we introduce common pumps used in every ship and special pumps based on ship's type. This exploratory study lays the groundwork for further investigation of ship's pumps

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선박화재 적용 단백포 소화약제의 안정제에 따른 소화특성 (Characteristics of Protein Foam Agent by Stabilizer on the Ship Fire Extinguishment)

  • 이응우;신창섭
    • 한국안전학회지
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    • 제30권4호
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    • pp.79-85
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    • 2015
  • Onboard fire extinguishing system is important to protect cargo and human lives and every oil tanker has foam type fire extinguishing system. Because of environmental problem, agent which contains materials such as Perfluorinated compounds are regulated and the development of the environmental friendly agent is required. The protein foam has less environmental pollution problem and has an excellent fire extinguish performance to oil fire. In the research, bivalency metal salts were added as stabilizer to increase fire resistance and stability of the foam. Ferrous sulfate, Iron chloride and Nickel chloride were used and to adjust to vessel, sea water was applied. As a stabilizer increased, the expansion ratio was raised. However 25% drainage time was decreased over 2.0 wt.% which is knowable that the foam brokes easily. The amount of generated foam was measured to check fluidity of foam and it appeared that when $FeSO_4$ 1.2 wt.% was added, the amount of generated foam reached large and also the 25% drainage time was high. To evaluate the fire extinguishing performance for oil fire, the small scale oil fire test was executed. When $FeSO_4$ 1.2 wt.% was added, fire extinguishing time was in its shortest which informs fluidity of foam and stability are important factors on fire extinguishing efficiency.

EXPLOSION HAZARDS IN TANKS OF HIGH FLASH POINT LIQUIDS

  • Zalosh, Robert
    • 한국화재소방학회:학술대회논문집
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    • 한국화재소방학회 1997년도 International Symposium on Fire Science and Technology
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    • pp.203-210
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    • 1997
  • Reports of explosions in cargo and storage tanks of high flash point liquids such as residual fuel oil, asphalt, and oily waste water have shown that these explosions have occurred even when the liquid temperatures are well below the liquid nominal flash point. The reasons for these seemingly paradoxical explosions are reviewed and results of recent laboratory tests are presented to better define the conditions leading to flammable vapor atmospheres in these tanks. The potential effectiveness of various prevention measures are discussed including inerting, monitoring tank vapor concentrations, and periodic cleaning of condensation and deposits on the tank walls and roof.

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Fire Resistance Characteristics of Firewall Structure Associated with Impact Damage Induced by Explosion

  • Hye Rim Cho;Jeong Hwa Yoo;Jung Kwan Seo
    • 한국해양공학회지
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    • 제37권3호
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    • pp.99-110
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    • 2023
  • When a fire accident accompanied by an explosion occurs, the surrounding firewalls are affected by impact and thermal loads. Damaged firewalls due to accidental loads may not fully perform their essential function. Therefore, this paper proposes an advanced methodology for evaluating the fire resistance performance of firewalls damaged by explosions. The fragments were assumed to be scattered, and fire occurred as a vehicle exploded in a large compartment of a roll-on/roll-off (RO-RO) vessel. The impact velocity of the fragments was calculated based on the TNT equivalent mass corresponding to the explosion pressure. Damage and thermal-structural response analyses of the firewall were performed using Ansys LS-DYNA code. The fire resistance reduction was analyzed in terms of the temperature difference between fire-exposed and unexposed surfaces, temperature increase rate, and reference temperature arrival time. The degree of damage and the fire resistance performance of the firewalls varied significantly depending on impact loads. When naval ships and RO-RO vessels that carry various explosive substances are designed, it is reasonable to predict that the fire resistance performance will be degraded according to the explosion characteristics of the cargo.