• Title/Summary/Keyword: CNG 버스

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[이슈] 저탄소와 그린카 - 차세대 저탄소 친환경 대중교통 수단의 도입 필요

  • Kim, Yong-Rae
    • Korea Petroleum Association Journal
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    • s.292
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    • pp.24-27
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    • 2014
  • 환경부에서는 1990년대 말경 대기오염 문제를 해결하기 위한 방안으로서 디젤 버스를 CNG 버스로 대체하고자 CNG 탱크 추가 등으로 가격이 비싼 CNG 버스에 대하여 보조금을 지급하고 CNG 충전 인프라를 구축하는 등의 지원정책을 실시하여, 현재 국내에서 운행하는 버스는 일부 소도시를 제외하면 대부분 CNG 버스로 대체되었다. 이러한 CNG 버스 정책으로 인하여 당시만 해도 매연 배출이 심하던 디젤 버스로 인한 공해물질이 줄어들고 대기질이 어느 정도 개선된 효과를 거두었다. 최근들어 환경에 대한 중요 이슈의 개념이 변화하고 있으며 자동차 기술도 새로운 변모를 보여주고 있는 것이 현실이기 때문에 CNG 버스만으로 운영되는 정책이 향후에도 계속 유지가 되어야 할지 다시 한번 생각해보아야 할 필요가 있다.

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Economics Approach on Validity of CNG Bus Promotion Policy (천연가스(CNG)버스 보급정책의 타당성 제고를 위한 연구)

  • Shin, Won Shik
    • Journal of the Korean Institute of Gas
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    • v.22 no.5
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    • pp.114-123
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    • 2018
  • As recognizing the necessity of eco-friendly vehicles in order to reduce air pollution from road sector, Korean government has established and implemented a promotion policy which is encouraging the public transportation companies to purchase CNG buses in replacing diesel buses since 2000s. With CNG bus promotion policy, the number of CNG buses had been increased on the road of metropolitan area and big cities. However, increasing rate of CNG buses had been fluctuated between the decrease and the increase since year 2014. In this study, the impact of fuel cost competitiveness between diesel and CNG on CNG bus increasing volume was testified by simple regression, which was only assumed by precedent research on the CNG promotion policy. And this study suggested the necessity of harmonization among the related policies conducted by related Ministries. Eventually this study should contribute to enhance the validity of CNG bus promotion policy. And it is expected that Korean government should apply the new policy suggestion of this study in the establishment of government's promotion policy on LNG cargo trucks and Zero Emission Vehicles in the future.

The Eire Risk Assessment in Compressed Natural Gas Buses & Gas Station (CNG 버스 및 충전소의 화재 위험도 평가)

  • Ko, Jae-Sun;Kim, Hyo
    • Fire Science and Engineering
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    • v.18 no.2
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    • pp.57-67
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    • 2004
  • The results of the risk assessing on general buses, consisting mainly of diesel-fueled buses, show that the frequency of the instantaneous release is 1.4${\times}$10$^{-3}$ /bus/year, from which the probability of the formation of fireball as a sub event becomes 1.7${\times}$104, and show that the leakage from the CNG-fueled buses is 0.002 event/year. Also, the frequency of gradual release due to a crack is estimated at 3.7${\times}$10$^{-3}$ /buses/year, and a subsequent probability at which this could lead to a jet flame as a sub event is 1.2${\times}$10$^{-3}$ This corresponds to 0.04event/year for the CNG-fueled buses. Dividing all the fired casualties by the running distance of diesel-fueled buses, the risk is 0.091 fire fatalities per 100-million miles. And the total fire risk fur CNG buses is approximately 0.17 per 100-million miles of travel. This means that CNG buses is twice or more dangerous than diesel buses. After all CNG buses are more susceptible to the major fires. In the aspect of the reliability of this study, generic models and the failure data used in assessing the risks of CNG buses are appropriate. However, more accurate physics-based models and databases should be supplemented with this study to provide the better results.

An Analysis on the Effect of Environmental Improvement on Replacing CNG Bus in Seoul with Electric Bus (서울의 CNG버스를 전기버스로 대체했을 때 환경 개선 효과 분석)

  • Choi, Byeong-Joo;Na, Hae-Joong;Choi, Uk-Don;Kim, Jong-Hae
    • Journal of IKEEE
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    • v.24 no.3
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    • pp.821-827
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    • 2020
  • In particular, vehicles with internal combustion engines of public transportation such as diesel and CNG buses are in urgent need of measures to reduce emissions as they have a long daily total mileage, long driving hours and a large number of vehicles. In this paper, the fuel consumption rate (km/kWh) was actually measured through road test of electric buses. Based on the measured values, CO2 emissions from internal combustion engines and electric buses were calculated per bus. In addition to environmental improvement effects such as the expected reduction of carbon dioxide compared to CNG buses when replacing city buses with electric buses, additional effects were analyzed when the replacement of CNG buses is expanded to electric buses.

Fuel Consumption and CO2 Characteristics of HCNG Bus (HCNG 버스의 연비와 CO2 배출특성)

  • Han, JO;Kim, YC;Lee, YC
    • Journal of the Korean Institute of Gas
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    • v.21 no.2
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    • pp.20-25
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    • 2017
  • For the HCNG bus using fuel which is the mixture gas of hydrogen and natural gas, the fuel efficiency and $CO_2$ emission characteristics were analyzed based on the WHVC test results and compared with that of the CNG and diesel buses. $CO_2$ emission characteristics were also analyzed by contribution effects such as carbon emission factor and fuel consumption. As a result, the fuel economy of HCNG bus was evaluated to be 11.5% improvement compared to CNG bus, and it was also showed equivalent to diesel bus. In addition, the $CO_2$ emission of HCNG bus was reduced 20.4% and 34.5% compared to CNG bus and diesel bus respectively. It was concluded that the $CO_2$ emission characteristics were influenced by the carbon emission factor depending on fuel composition and the fuel consumption according to the engine performance.

Study on Application of USN in CNG Station (CNG 충전소의 USN 적용에 관한 연구)

  • Lee, Heon-Seok;Lee, Dong-Heuk;Yang, Jae-Mo;Oh, Jeong-Seok;Shin, Jun-Ho;Yoo, Jin-Hwan;Park, Chul-Hwa;Ko, Jae-Wook
    • Journal of the Korean Institute of Gas
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    • v.15 no.4
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    • pp.56-61
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    • 2011
  • For the prevention of air pollution, the CNG vehicles have been supplied since 2006. The spread of CNG vehicles has decreased the level of air pollution. Declared goals of Korean Ministry of Environment (ME) are to supply CNG city bus by 90% by 2012. CNG bus explosion has exacerbated commuters' safety concerns, it has caused the barrier to the installation of CNG station. In this study, the sensor was installed for the safety improvement of CNG station. When new sensors were installed, a problem was encountered by a line of communication. To solve the installation problem, we carried out the monitoring of data communication network by USN technology.

업계동향 - CNG자동차 용기 재검사 제도 도입

  • 한국LP가스공업협회
    • LP가스
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    • v.23 no.4
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    • pp.26-28
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    • 2011
  • 지난해 CNG버스 폭발사고 이후 CNG차의 안전성에 대한 문제가 제기되고 있으며, 그 일환으로 CNG자동차 용기에 대한 재검사제도가 도입된다. 이와 관련 지난 7월 18일, 19일 연속 보도된 관련 기사를 게재한다.

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Stress and Flow Analysis due to Installation Method of Fuel Tank at CNG Bus (CNG버스의 연료탱크 설치방법에 따른 응력과 유동해석)

  • Cho, Jae-Ung
    • Journal of the Korean Society of Mechanical Technology
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    • v.13 no.4
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    • pp.15-21
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    • 2011
  • The safety at this study is investigated by flow or stress analyses due to configuration or installation direction of fuel tank in the existing CNG bus. In case of the lower ceiling with sharp type, the equivalent stress due to the explosion of fuel tank is less than the type of flat or arc. it becomes safer on passenger. In case of the installation direction of fuel tank in the existing CNG bus, the stress applied on the lower ceiling at transverse direction becomes less than at longitudinal direction. It is more stable on the safety of passenger. The harm on the explosion accident can be prevented by use of the analysis result at this study.

Suggestion for Safety Improvement of Compressed Natural Gas Vehicle (압축천연가스 자동차의 안전성 향상을 위한 제언)

  • Kim, Young-Seob;Park, Kyo-Shik;Kim, Tae-Ok
    • Journal of the Korean Institute of Gas
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    • v.16 no.4
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    • pp.1-7
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    • 2012
  • Systematic safety research by Korea Government has been made to enhance the safety of CNG (compressed natural gas) vehicles since the burst of compressed cylinder of an urban bus in August 9, 2010. This article summarizes some major activities to ensure the safety of CNG vehicles, which covers review of regulation, safety management system including standard of inspection and certification, and training program of inspectors and car mechanics. Specifically, the followings were reviewed; type of CNG cylinder, location of CNG cylinder, material and type of fuel line and vent line, modification of pipeline connection, installation of gas detector, installation of emergency shutdown valve, installation of protecting cover for cylinder, obligations for CNG vehicle filling station. improving periodical inspection, routine test on gas vehicles, training program for engaged in gas vehicles, and designation of safety manager for CNG bus company. This paper suggests how to improve safety of CNG vehicles as a result of review of above mentioned check items.