• 제목/요약/키워드: compressed natural gas

검색결과 145건 처리시간 0.027초

중형저상버스의 개별주행모드에 따른 연료소비율 평가 (Evaluation of the Impact of Fuel Economy by Each of Driving Modes for Medium-Size Low-Floor Bus)

  • 정재욱;노윤식;안병규
    • 한국산학기술학회논문지
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    • 제17권9호
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    • pp.133-140
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    • 2016
  • 국토교통부에서는 교통약자의 이동 편의 증진을 위하여 승하차에 편리한 저상버스를 도입하였다. 표준모델로 고시된 저상버스는 11 m 급, 압축천연가스(CNG, Compressed Natural Gas)를 사용하는 차량으로 개발되었다. 11 m 급 저상버스는 길이 좁은 농어촌 및 산간지역 도로여건에서의 운행과, CNG 연료의 특성상 충전시설의 한계로 인하여 연료보급의 단점을 가지고 있다. 본 연구에서는 국토교통부에서 교통약자의 이동편의 증진을 위해 진행하는 중형저상버스 표준모델 기술개발 과제의 일환으로 (주)타타대우상용차에서 제작한 LF-40을 대상으로 공차(CVW, Curb Vehicle Weight), 반적차(HVW, Half Vehicle Weight), 적차(GVW, Gross Vehicle Weight) 3가지 중량조건으로 실도로 타행주행을 통하여 주행저항 값을 취득하였고, WHVC, NIER-06, 복합 에너지 소비효율 측정 대상차량 외 차량의 에너지 소비 효율을 측정하기 위한 시험 방법인 정속주행 (60 km/h)모드를 사용하였다. 시험 결과 공차상태의 연비가 가장 좋았으며, 대표적으로 WHVC 모드에서는 공차대비 반적차는 3.5 %, 공차대비 적차는 12 % 연비소모율의 차이를 보였다. 60 km/h 정속 주행모드에서는 다른 시험모드와 다르게 공차보다 반적차의 연비가 높은 것으로 측정되었다. 추후 배출가스 데이터의 분석이 필요할 것으로 판단된다.

수소-CNG 혼소기관의 공기과잉률 변화에 따른 희박가연한계 및 배출가스 특성에 관한 연구 (An Experimental Study on Lean-burn Limit and Emission Characteristics of Air-fuel Ratio in a CNG Engine)

  • 김인구;손지환;김정화;김정수;이성욱;김선문
    • 한국수소및신에너지학회논문집
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    • 제28권2호
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    • pp.174-180
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    • 2017
  • Recently, the world faces the environmental problem such as air pollution due to harmful gas discharged from car and abnormal climate due to the green-house gases increased by the discharge of $CO_2$. Compressed Natural Gas (CNG), one of alternative for this problem, is less harmful, compared to the existing fossil fuel, as gaseous fuel, and less carbon in fuel ingredients and carbon dioxide generation rate relatively favorable more than the existing fuel. However, CNG fuel has the weakness of slow flame propagation speed and difficult fast burn. On the other hand, hydrogen does not include carbon in fuel ingredients, and does not discharge harmful gas such as CO and HC. Moreover, it has strength of quick burning velocity and ignition is possible with small ignition energy source and it's has wide Lean Flammability Limit. If using this hydrogen with CNG fuel, the characteristics of output and discharge gas is improved by the mixer's burning velocity improved, and, at the same time, is possible to have stable lean combustion with the reduction of $CO_2$ expected. Therefore, this research tries to identify the characteristics of engine and emission gas when mixing CNG fuel and hydrogen in each portion and burning them in spark igniting engine, and grasp the lean combustion limit and emission gas characteristics according and use it as the basic data of hydrogen-CNG premixed engine.

CNG 기관의 수소혼합률 변화에 따른 성능 및 배출가스 특성에 관한 실험적 연구 (An Experimental Study on Performance and Emission Characteristics of Hydrogen Mixtures in a CNG Engine)

  • 김인구;손지환;김정화;김선문;김정수;이성욱
    • 한국수소및신에너지학회논문집
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    • 제27권4호
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    • pp.357-364
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    • 2016
  • Recently, the world faces the environmental problem such as air pollution due to harmful gas discharged from car and abnormal climate due to the green-house gases increased by the discharge of $CO_2$. Compressed Natural Gas (CNG), one of alternative for this problem, is less harmful, compared to the existing fossil fuel, as gaseous fuel, and less carbon in fuel ingredients and carbon dioxide generation rate relatively favorable more than the existing fuel. However, CNG fuel has the weakness of slow flame propagation speed and difficult fast burn. On the other hand, hydrogen does not include carbon in fuel ingredients, and does not discharge harmful gas such as CO and HC. Moreover, it has strength of quick burning velocity and ignition is possible with small ignition energy source and it's has wide Lean Flammability Limit. If using this hydrogen with CNG fuel, the characteristics of output and discharge gas is improved by the mixer's burning velocity improved, and, at the same time, is possible to have stable lean combustion with the reduction of $CO_2$ expected. Therefore, this research tries to identify the characteristics of engine and emission gas when mixing CNG fuel and hydrogen in each portion and burning them in spark igniting engine, and grasp the combustion stability and emission gas characteristics according and use it as the basic data of hydrogen-CNG premixed engine.

ANALYSIS OF IN-CYLINDER FUEL-AIR MIXTURE DISTRIBUTION IN A HEAVY DUTY CNG ENGINE

  • Lee, Seok-Y.;Huh, Kang-Y.;Kim, Y.M.;Lee, J.H.
    • International Journal of Automotive Technology
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    • 제2권3호
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    • pp.93-101
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    • 2001
  • Distribution of fuel-air mixture has a strong influence on performance and emissions of a compressed natural gas (CNG) engine. In this paper, parametric study is performed by KIVA-3V to investigate fuel-air mixture with respect to injection timing, cycle equivalence ratio and engine speed. With open-valve injection intensive mixing during intake and compression stroke results in relatively homogeneous mixture in the cylinder. Sequential induction of fuel-air mixture and fresh air results in stratification in the cylinder among the test cases at closed-valve injection. There is close similarity in the calculated distributions of the mixture in the cylinder with different cycle equivalence ratios and engine speeds. The results are compared against pressure traces and flame images obtained in a single cylinder engine converted from a 11L six-cylinder heavy duty diesel engine.

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가솔린 엔진의 연료분사시기가 희박가연한계에 미치는 영향에 관한 연구 (Effects of Injection Timing on the Lean Misfire Limit in a SI Engine)

  • 엄인용;정경석;정인석
    • 한국자동차공학회논문집
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    • 제5권5호
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    • pp.97-103
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    • 1997
  • Effects of fuel injection timing on the lean misfire limit of a sequential MPI SI engine has been investigated. To investigate the interaction of injection timing and intake flow characteristics, so called axial stratification phenomena, 4 kinds of different intake swirl port of the same combustion chamber geometry have been teated in a single cylinder engine test bench. And 2 kinds of fuel, gasoline and compressed natural gas(CNG), were used to see the effect of liquid fuel vaporization. Result shows that combination of port swirl and injection timing governs the lean misfire limit and lean misfire limit envelopes remain almost the same for a given ratio regardless of engine speed. It is also found that two phase flow has some effects on lean misfire limit.

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대형경유차 저공해기술 적용에 따른 나노입자 배출특성 (Characteristics of Nano-particles Exhausted from Heavy-duty Diesel Vehicles with Low Emission Technology)

  • 임철수;류정호;엄명도;황진우;김예은
    • 한국대기환경학회지
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    • 제20권2호
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    • pp.225-236
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    • 2004
  • Diesel engines which emit a lot of PM and NOx have been known as a main air polluter. Especially, diesel particulate matters (OPM) including black smoke are hazardous air pollutants to human health and environment. The nations retaining advanced engine technologies have reinforced emission regulations. To meet these regulations diesel engine manufacturers have developed low-emission diesel engines, aftertreatment equipments, alternative fuel technologies and so on. In this study, particle number concentrations characteristics according to particle size and engine driving conditions were analyzed when these low-emission technologies were applied. There was a tendency of increasing particle number concentrations from heavy-duty diesel engines with increasing engine rpm and load rate. In the cases of COPF (Catalytic Diesel Particulate Filter), CNG (Compressed Natural Gas) engine and ULSD (Ultra Low Sulfur Diesel) more than 99% of particle number concentration were removed.

교통부분에 있어서 에너지 소비 및 환경오염물질 저감방안에 관한 연구 (A Study on the Reduction Measures of Energy Demand and Environmental Pollutants on the Transport Sector in Korea)

  • 윤소원;정태용
    • 환경영향평가
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    • 제12권4호
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    • pp.229-243
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    • 2003
  • 본 연구에서는 한국에서 도로 승용차로부터 배출되는 $CO_2$, 대기오염물질 및 에너지 소비에 대한 분석, 전망을 하였다. 도로 승용차 교통부분에서의 에너지 소비 및 $CO_2$와 환경오염물질의 추세는 자동차수와 년간주행거리, 평균 탑승자수, 연료 효율을 바탕으로 구하였다. 장래 에너지 소비와 배출, 시나리오 분석은 스톡홀름 환경연구소(SEI-B(Stockholm Environment Institute-Boston))에서 개발한 LEAP(Long Range Energy Alternative Planning System)을 이용하였다. 시나리오는 2005년부터 BaU(Business-as-Usual), CNG(Compressed Natural Gas) 버스의 도입, 경차 이용의 증가, 30$/TC와 300$/TC 탄소세 도입으로 정하였다. 1998년을 기준년도로 하고 2020년을 목표년도로 하여 시뮬레이션하였다. 분석결과 2020년까지의 전망 및 시나리오 분석을 통하여 도로자가용교통부분에서 에너지를 절감하고 $CO_2$ 및 대기오염물질을 저감하기 위하여 도입한 개별정책들을 통합하고 정책간 상승 효과를 볼 수 있도록 팩키지화시키는 것이 효과적이라고 분석되었다.

자동차용 압축천연가스 저장용기의 피로수명향상을 위한 자긴처리 효과 분석 (Analysis of an Autofrettage Effect to Improve Fatigue Life of the Automotive CNG Storage Vessel)

  • 김호윤;황범철;배원병;한승무;김철
    • 소성∙가공
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    • 제17권4호
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    • pp.292-301
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    • 2008
  • Type 2 compressed natural gas(CNG) storage vessels for automobiles are becoming widely used. They are not only supplied to automakers in Korea, such as Hyundai Motors, but increasingly, they are being exported overseas. Autofrettage is a process that produces beneficial residual stresses in a vessel by subjecting it to excessive internal pressure. This strengthens the vessel and improves its fatigue resistance. This paper presents research investigating the autoftettage process and residual stresses it produces in type 2 CNG storage vessels. A finite element analysis technique and a closed form equation are used. Then, fatigue resistance is analyzed through a fatigue evaluation performed according to ASME section VIII.

바이모달 저상굴절차량용 견인전동기 성능 개선 및 평가 (A improvement performance and test result of traction motor for Bimodal low floor vehicle)

  • 최열준;박영호;김철호;최종묵;배창한;목재균
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 춘계학술대회 논문집
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    • pp.2006-2010
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    • 2008
  • This paper deal with the improvement performance and test result of traction motor for Bimodal low floor vehicles that are CNG(Compressed Natural Gas) hybrid bus. The improvement performance concept of the traction motor is studied in terms of electrical characteristics and mechanical construction. Finally, this paper introduces the result of the traction motor test for low floor vehicles, and mentioned the detail design concept of traction motor.

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국내 CNG 가스연료 자동차의 에너지소비효율 측정 및 계산절차에 관한 연구 (A Study on Energy Consumption Rate Measurement and Calculation Procedures of Domestric CNG Gaseous Fueled Vehicle)

  • 서영호;권석주;강은정
    • 융복합기술연구소 논문집
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    • 제3권2호
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    • pp.57-60
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    • 2013
  • The purpose of this study is to analysis of how to calculate fuel efficiency in major development countries (U.S. and Europe) and energy consumption formular derivation of domestic CNG fuel and prove by vehicle test. The formula of fuel consumption is different in mpg(mile per gallon), l/100km, and km/l each countries. CNG fuel has a significant impact on fuel density, composition, and Hydro-Carbon ratio. So, this study how to measurement and calculation procedures of CNG gaseous fueled vehicle energy consumption rate.

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