• Title/Summary/Keyword: Car Fire

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Analysis of a Car Fire Case Deciding at Courts that a Fire Broke Out due to Manufacture Defect (제조결함이 법원에서 인정된 차량화재 사례의 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.30 no.3
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    • pp.94-103
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    • 2016
  • This study analyzed the cause and liability of a car fire. The car was purchased 1 year ago and had traveled 8,500 km. When the car stopped at a red right and was about to start when the light turned green, the car next to it sounded itsa horn. As a result, the driver stopped the car and found that there was a fire in the engine compartment, which the fire brigade subsequently extinguished. This car fire may have been caused by an electrical spark from a screw hook inserted into the battery + terminal. Therefore, the courts decided that the car owner or driver was not responsible for the fire, because the electrical spark from the hook that caused it resulted from the automaker's manufacturing defect.

Analysis of an Automotive Fire Case that a Fire Broke out during Driving Immediately after DPF Cleaning (DPF 클리닝 직후에 주행 중 발생한 승용차화재 사례의 분석)

  • Lee, Euipyeong
    • Transactions of the Korean Society of Automotive Engineers
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    • v.24 no.5
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    • pp.556-565
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    • 2016
  • As a result of the enforced control of emission, many devices, including the diesel particulate filter, have been installed in diesel cars to reduce the emission of particulate matters. In this study, a car fire case has been investigated and analyzed. A car fire broke out after the vehicle traveled a distance of 1.4 km from a car service center. The car was provided with DPF cleaning when the DPF warning light came on. After being dismantled in the engine room, the car's engine and gearbox were investigated. The findings showed that the rear part of the DPF metal case was melted and punctured, while the honeycomb filter of the DPF was damaged. The car fire was caused by an overheated DPF associated with inaccurate maintenance practice. Therefore, the responsibility of the fire rested on the car service center that performed the DPF cleaning.

Analysis of a Car Fire Case Caused by the Overheating of a Diesel Particulate Filter (매연포집필터 과열로 발생한 디젤승용차화재 원인의 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.31 no.1
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    • pp.89-97
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    • 2017
  • This study analyzed the case of diesel car fires that occurred while driving in a tunnel 5 days after maintenance at a car service center. The results of the investigation and analysis found that a large amount of white foreign matter adhered to the inside of the exhaust port and the insulating plate above the DPF (diesel particulate filter) installed in the middle of the exhaust pipe was melted and lost. In particular, the metal floor of the car above the DPF was molten and pierced, and the rubber mat placed on the metal floor was burnt. Moreover, while the exhaust pipe in front of the DPF showed no overheating mark, such a mark was observed in the exhaust pipe from the DPF to the exhaust port. Because these findings may appear only when the DPF is overheated and ignited, this car fire is believed to have been caused by internal overheating of the DPF. The car fire investigation of this study suggests that if white foreign matter is found in the inside of the exhaust port during a fire cause investigation of a diesel car, the cause of the fire should be determined by removing the DPF and examining the internal damage of the DPF.

Analysis of Car Fire Cases Related to a Lithium Battery and Cause Investigation Technique (리튬배터리와 관련된 차량화재 사례 및 원인조사 기법 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.33 no.2
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    • pp.98-106
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    • 2019
  • As lithium batteries have been used for car navigation systems and as the second battery for black boxes, lithium battery-related car fires have often occurred. In the case a lithium battery is the fire origin, a fire investigation technique has not been established to determine if a battery ignites or whether the lithium battery is damaged by fire. This study introduced car fire cases related to lithium batteries, analyzed the causes of a fire of a lithium battery, and proposed fire investigation techniques to objectively determine if a lithium battery ignites or whether a lithium battery is damaged by fire after external ignition.

The combustion experiment considering car fire in the basement parking space (지하대공간의 주차장 차량화재를 고려한 연소 실험)

  • Kang, Seung-Goo;Han, Jung-Chul;Kim, Dong-Eun;Kim, Dong-Jun;Kwon, Young-Jin
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2012.04a
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    • pp.302-305
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    • 2012
  • 지하 주차장에서 차량사고에 의해 차량화재가 발생하는 것을 고려하여 대규모 연소실험을 실시하였다. 연소 실험결과 실험체 Car1, Car2 의 최대 발열량은 5.4MW가 측정 되었으며, 최고온도는 Car1에서 $1206^{\circ}C$와 Car2에서 최고 온도 $1113^{\circ}C$가 측정 되었다.

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Fire Suppression Tests for a Train Using Water Mist Systems (미분무 소화시스템을 이용한 철도차량 실물화재 진압실험)

  • Choi, Byung-Il;Han, Yong-Shik;Do, Kyu-Hyung;Kim, Myung-Bae;Lee, Dong-Chan
    • Fire Science and Engineering
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    • v.23 no.6
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    • pp.57-65
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    • 2009
  • Fire suppression tests are carried out for a train car using water mist systems. Three kinds of fire scenario applied to the real-scale train car are a surface fire representing car combustibles, a oil pool fire pretending an oil spill and a blocked fire for evaluation of space-cooling capacity. Five fixedpressure water mist systems and one self-contained water mist system with nitrogen gas are used for fire suppression experiments. Almost water mist systems can extinguish effectively train car fires, and fire-control capability of the system is seen due to the space cooling.

Characteristics of the Car Fires Related to a Diesel Particulate Filters and an Analysis of the Process of Proving Fire Causes (미세먼지 저감 장치와 관련된 자동차화재의 특징 및 화재원인 입증절차의 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.32 no.1
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    • pp.99-107
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    • 2018
  • Diesel cars employ a diesel particulate filter (DPF) to reduce the discharge of fine dust. However, cases of fires caused by DPFs have been reported in diesel cars. In this study, I examined the regulation of exhaust gas and exhaust gas recirculation in diesel cars. Then, I analyzed cases of car fires caused by DPFs, their characteristics, car fire factors related to DPFs and preventive measures, and their consideration in investigations of the causes of fires. Finally, regarding car fire investigations, this study proposed a process of proving that fires are caused by DPFs.

A Case Analysis of Intentional Car Explosion (고의에 의한 승용차폭발 사례의 분석)

  • Lee, Eui-Pyeong
    • Fire Science and Engineering
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    • v.31 no.4
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    • pp.119-127
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    • 2017
  • This study analyzed the cause of car explosion that occurred in the riverside park. The car carrying a male driver and a female passenger was parked in the park and explosion occurred inside the car. After the explosion, the driver and the passenger got burned. When they went to the hospital by the 119 Rescue Service, they stated that the car was sprayed with thinner before they had a quarrel and the explosion occurred during their quarrel. However, after several days, they changed their statement. They said that gasoline in the plastic bottle was poured and ran into the cigarette lighter. They tried to pull the cigarette lighter but pushed it by mistake. Then explosion occurred. Because only the explosion by mistake could receive car insurance, whether the cause of explosion was intentional or not became an issue. The car exploded was carefully investigated and analyzed. The statement of the driver and passenger was analyzed in the aspect of fire science. As a result, it was demonstrated that this car explosion occurred by driver's intention.

Study on the Possibility of Car Fire by Arbitrary Electrical Wiring (자동차 임의배선에 의한 화재발생 가능성 연구)

  • Kim, Min;Yoon, Jang-Soo
    • Congress of the korean instutite of fire investigation
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    • 2010.12a
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    • pp.91-119
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    • 2010
  • There is an increasing number of car fires along with the increasing numbers of cars. The purpose of this study was to verify the possibility of fires caused by car tuning, which is one of the causes of car fires. The result showed that the possibility of car fires was increased by car tuning including replacement of headlights, excess of allowable current of wires or fuses by using multi cigar jacks, wire damage, earth fault, and vulnerability of wires and cables (sold in auto parts stores) to heat.

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The Heat Release Rate Comparison of Subway car's Interior Materials using Cone Calorimeter (콘칼로리미터를 이용한 도시철도차량 내장재료별 발열량 비교)

  • Lee Cheul-kyu;Lee Duck Hee;Jung Woo Sung
    • Proceedings of the KSR Conference
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    • 2005.05a
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    • pp.70-76
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    • 2005
  • The interior materials of the urban subway car in operation are now being changed to new materials that meet the latest law in effect, the fire safety criteria of the urban railway vehicle. It was well known fact that the composite materials, that were applied to last subway car, were weak on the fire. Contrary to this materials, materials in work have good resistance to the fire. On the paper, To investigate the difference of fire safety level on the subway car, cone calorimeter was used to measure the heat release rate and total heat released according to the ISO 5660. A high radiative heat flux of 50kW/m2 was used to burn out all materials and to simulate the condition of fully developed fire case in the tests.

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