• 제목/요약/키워드: Exhaust-gas temperature reduction

검색결과 172건 처리시간 0.024초

소형디젤기관의 배출가스 저감을 위한 복합재생방식 DPF의 실차적용 연구 (Research on Actual Vehicle Application of Composite Regenerative DPF for Reducing Exhaust Gases of Light-duty Diesel Engines)

  • 이윤철;오상기
    • 한국분무공학회지
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    • 제29권2호
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    • pp.68-74
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    • 2024
  • As awareness of environmental pollution problems increases worldwide, interest in air pollutants is increasing. In particular, NOx and PM, which are major pollutants in diesel vehicles, are contributing significantly to emissions. As a result, its importance is increasing. In this study, based on research results applied to large diesel vehicles, the problem of natural regeneration caused by low exhaust gas temperature during low speed and low load operation is solved by applying a complex regeneration DPF that is not affected by temperature conditions to small diesel vehicles. The feasibility of application to small diesel vehicles was reviewed by measuring the emission reduction efficiency. As a result of the engine test, the power reduction rate and fuel consumption rate before and after device installation under full load conditions were 2.9% decrease and 3.5% increase, respectively, satisfying the standard for a 5% reduction, and as a result of the regeneration equilibrium temperature (BPT) test, the regeneration temperature was 310℃. appeared at the level. The reduction efficiency test results for the actual vehicle durability test equipment showed 97.3% PM, 51.0% CO, and 31.1% HC, while the city commuter vehicle had PM 97.5%, CO 61.7%, HC 40.0%, and the school bus vehicle had PM 96.8%, CO 44.4%, HC 34.3%, and low-speed logistics vehicles showed a reduction efficiency of 98.2% for PM, 36.0% for CO, and 45.7% for HC. Based on the results of this study, in the future, it is necessary to secure DPF technology suitable for all vehicle types through actual vehicle application research on temperature condition-insensitive composite regenerative DPF for medium-sized vehicles.

소음기내의 정상상태 및 맥동파 배기가스 유입에 의한 유동특성에 관한 연구 (A Study on the Flow Characteristics of Steady State and Pressure Variation inside the Mulffler with the Inflow of Pulsating Exhaust Gas)

  • 김민호;정우인;천인범
    • 한국자동차공학회논문집
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    • 제7권8호
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    • pp.150-159
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    • 1999
  • Exhaust system is composed of several parts. Among, them , design of muffler system strongly influences on engine efficiency and noise reduction. So , through comprehension of flow characteristics inside muffler is necessary . In this study , three-dimensional steady and unsteady compressible flow analysis was performed to understand the flow characteristics, pressure loss and amplitude variation of pulsating pressure. The computational grid generation was carried out using commercial preprocessor ICEM CFD/CAE. And the three-dimensional fluid motion inside the muffler was analyzed by STAR-CD, the computational fluid dynamics code. RNG k-$\varepsilon$ tubulence model was applied to consider the complexity of the geometry and fluid motion. The steady and unsteady flow field inside muffler such as velocity distribution, pulsating pressure and pressure loss was examined. In case of unsteady state analysis, velocity of inlet region was converted from measured pulsating pressure. Experimental measurement of pressure and temperature was carried out to provide the boundary and initial condition for computational study under three engine operating conditions. As a result of this study, we could identify the flow characteristics inside the muffler and obtain the pressure loss, amplitude variation of pulsating exhaust gas.

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모사 배기관 내 HC-DeNOx 촉매용 인젝터의 분무 거동 특성 (Spray Behavior Characteristics of Injector Used for HC-DeNOx Catalyst System in the Transparent Exhaust Manifold)

  • 이동훈;오정모;정해영;이기형;여권구
    • 한국자동차공학회논문집
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    • 제15권4호
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    • pp.54-60
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    • 2007
  • A new method that optimizes a control of hydrocarbon (HC) addition to diesel exhaust gas for HC type DeNOx catalyst system has been developed. These catalysts are called as the HC-DeNOx catalyst in this paper. The system using HC-DeNOx catalyst requires a resonable quantity of hydrocarbons addition in the inlet gas of the catalyst, because the HC concentration in a diesel engine is so low that the HC is not sufficient for NOx conversion. Generally ambient temperature in the exhaust manifold is $250{\sim}350^{\circ}C$, so spray behavior in this case is different from that of any other condions. This research shows spray behavior of injected hydrocarbons in the transparent exhaust manifold.

디젤 NOx 후처리 장치에 있어서 암모니아 SCR 시스템 혼합영역 내 가스유동의 유입열 수치모델링에 관한 연구 (A Study on Numerical Modeling of the Induced Heat to Gaseous Flow inside the Mixing Area of Ammonia SCR System in Diesel Nox After-treatment Devices)

  • 배명환;샤이풀
    • 대한기계학회논문집B
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    • 제32권11호
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    • pp.897-905
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    • 2008
  • Selective catalytic reduction(SCR) is known as one of promising methods for reducing $NO_x$ emissions in diesel exhaust gases. $NO_x$ emissions react with ammonia in the catalyst surface of SCR system at working temperature of catalyst. In this study, to raise the reacting temperature when the exhaust gas temperature is too low, a heater is located at the bottom of SCR reactor. At an ambient temperature, ammonia is radially injected perpendicular to the exhaust gas flow at inlet pipe and uniformly mixed in the mixing area after being impinged against the wall. To predict the turbulent model inside the mixing area of SCR system, the standard ${\kappa}\;-\;{\varepsilon}$ model is applied. This work investigates numerically the effects of induced heat on the gaseous flow. The results show that the Taylor-$G{\ddot{o}}rtler$ type vortex is generated after the gaseous flow impinges the wall in which these vortices influence the temperature distribution. The addition of heat disturbs the flow structure in bottom area and then stretching flow occurs. Vorticity strand is also formed when heat is continuously increased. Constriction process takes place, however, when a further heat input over a critical temperature is increased and finally forms shed vortex which is disconnected from the vorticity strand. The strong vortex restricts the heat transport in the gaseous flow.

함정 적외선 신호 감소를 위한 폐기관의 디퓨져 설계에 관한 연구 (A Study on the Diffuser Design of Exhaust Pipes for the Infra-Red Signature Reduction of Naval Ship)

  • 윤석태;조용진;고대은
    • 한국산학기술학회논문지
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    • 제18권12호
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    • pp.793-798
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    • 2017
  • 현대의 함정에서는 추진 기관에서 생성된 고온의 폐기가스와 가열된 폐기관의 금속표면온도를 저감하기 위해 적외선 신호저감 장치(Infra-red Signature Suppression system, IRSS)를 설치하고 있다. 국내 함정에 탑재된 일반적인 IRSS는 이덕터, 믹싱튜브 그리고 디퓨져로 구성되며, 이 중 디퓨져는 금속표면에 내기 외기의 압력차에 의한 공기 막을 생성시켜 온도를 저감시키는 역할을 한다. 본 연구에서는 국외 선진 기술사에서 설계한 IRSS의 디퓨져 형상을 분석하여 설계 변수를 선정하였으며, 분석 조건을 줄이면서 설계 변수의 특성을 효과적으로 파악 할 수 있는 다구치 실험계획법을 통해 IRSS 디퓨져의 성능에 영향을 미치는 설계 변수의 특성을 검토하였다. 디퓨져의 성능분석에는 선행 연구에서 정립한 열 유동해석 기술을 활용하였다. IRSS의 성능평가에는 함정 적외선 신호의 세기와 직접적으로 관련되는 디퓨져 출구에서의 폐기가스 온도와 금속표면온도의 면적평균 값을 기준으로 하였으며, 폐기가스의 온도는 디퓨져 출구의 직경 변화에 크게 영향을 받고, 디퓨져 금속표면의 온도는 디퓨져 링의 개수 변화에 크게 영향 받음을 확인하였다.

EGR Cooler system을 장착한 건설기계용 대형디젤엔진의 성능에 관한 연구 (A Study on Characteristics of Performance by Heavy-Duty Diesel Engine on Construction Machine with EGR Cooler System)

  • 오상기;김진열;이승호;송호영
    • 동력기계공학회지
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    • 제17권6호
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    • pp.130-135
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    • 2013
  • It is a research about the change in reduction efficiency and performance resulting from installation of the EGR cooler, which is the core technology reducing NOx in response to standards been tightened of exhaust controls for off-road vehicle. It can reduce NOx by altering combustion temperature and oxygen concentration by recycling high-temperature exhaust gas. The target engine was large diesel engine for construction machine through by which we were able to verify a rate of change in output and capabilities for a heat-exchange within cooler itself depending on the existence of EGR cooler system. We have acquired a emission reduction technology for a construction machine by testing the reduction performance and rate of change in output.

한국형발사체 3단 터빈배기부 개념설계 (Conceptual Design of Turbine Exhaust System for 3rd stage of Launch Vehicle)

  • 신동순;김경석;한상엽;방정석;김현웅;조동혁
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.1068-1071
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    • 2017
  • 3단 터빈배기부 구성은 터빈 플랜지, 열교환기, 배기덕트와 추력노즐로 이루어진다. 냉가스 가압 방식에 비하여 열교환기 가압 방식을 사용함으로서 추진제탱크 가압을 위한 헬륨가스 자체 무게와 저장 탱크 무게가 감소하는 장점이 있기 때문에 발사체에 열교환기를 사용한다. 가스발생기는 추진제 연료과농 조건에서 연소가 이루어지며, 연소가스 중에 그을음이 많이 포함되어 있기 때문에 열교환 효율이 감소하는 것을 고려하여 열교환기를 설계해야 한다. 본 논문에서는 터빈배기부 구성품 배치, 열교환기 내부 구조 및 제작성을 고려한 설계기법, 기 설계된 노즐 설계를 바탕으로 3단 터빈배기부 재 노즐 설계 형상에 대한 장점을 기술하였다.

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자동차 배출가스 저감을 위한 과급기의 온도변화 해석 (Analysis on Temperature Change of Super Changer for the Reduction of Auto Exhausts Gas)

  • 이종호;김성원;윤한기
    • 한국해양공학회지
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    • 제27권1호
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    • pp.109-114
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    • 2013
  • Regulations on exhaust emissions for vehicles and ships are reinforced. Therefore, researchers are focus on developing an excellent engine that emits less environmental pollutants and leads to high gas milage. The purpose of this study is to investigate the efficiency of intake super charging system. Super charger is the special device for improving performance of intake system. Futhermore, for reducing exhaust emissions, the examine are performed on the effectiveness of device structures that tow materials for performance improvement. To fulfill the purpose, Super charger materials of aluminum alloy(AL6262) and polycarbonate were selected and then their temperature change of super charger and inhalation efficiency were analyzed by ANSYS program. In addition, it is attempted to apply these results to device development by comparing the results with the real value. As a result, there was less temperature change of super charger in aluminum materials than polycarbonate, and HC and NOx were decreased when the super charger was installed.

Tandem 시스템의 NOx 저감 효과에 관한 연구 (A Study on the Effects of NOx Reduction for the Tandem System)

  • 남정길
    • Journal of Advanced Marine Engineering and Technology
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    • 제29권6호
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    • pp.645-653
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    • 2005
  • The effects of a WI(Water Injection) at the intake Pipe and an urea injection at the exhaust pipe for a 4-cylinder DI(Direct Injection) diesel engine were investigated experimentally The water quantity was controlled by temperature of intake manifold and MAF(Manifold Air Flow). In addition, the urea quantify was controlled by NOx quantify and MAF. Effects of WI system, urea-SCR system and tandem system were investigated for with and without EGR(Exhaust Gas Recirculation). As the results. the SUF(Stoichiometric Urea Flow) and NOx map were obtained. In addition, NOx results can be visualized with engine speed and engine load. It was concluded. therefore, that the NOx reduction effects of the tandem system without the EGR were more than those with the EGR base engine.

시험온도에 따른 LPG 차량의 저온 시동성 및 배출가스 배출특성 연구 (A Study on the Cold Startability and Emission Characteristics of LPG Vehicle According to Test Temperature)

  • 이민호;김성우;김기호;하종한
    • 한국가스학회지
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    • 제18권6호
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    • pp.7-13
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    • 2014
  • 국내 외에서 대기 오염에 대한 관심은 높은 편이며, 자동차 및 연료 연구자들은 깨끗한 (친환경 대체연료) 연료와 연료 품질에 맞춘 새로운 엔진 설계의 구성, 혁신적인 후처리 시스템 등의 접근을 통하여 차량의 배기가스 배출을 줄이려고 노력하고 있다. 이러한 연구는 다음과 같은 다양한 주요 이슈를 가져오게 된다. PM 배출량이 디젤과 가솔린 차량에 대해 규제해야 하는지 여부와 가솔린 및 LPG 차량이 PM 배출가스 규제에서 무시될 수 있는지 여부이다. 마지막으로 온실 가스 (C$CO_2$, $CH_4$, $N_2O$) 규제가 자동차 배출 규제를 포함하여 논의 것 등이다. 자동차의 온실 가스 및 배출가스(PM)는 환경오염, 건강 악영향 등의 원인으로 많은 문제점을 일으키게 된다. 본 논문에서는 자동차 저온 시동성 및 배출가스에 대해 LPG 연료의 영향을 논의하였다. 또한 본 논문은 시험 온도에 대한 배출가스 특성을 평가하였다. 이때의 시험온도는 시험모드 상의 온도와 국내 겨울철 최저온도를 기준으로 나누어서 실시하였다. 본 연구를 통해 시동성 및 배출가스, 온실가스 배출의 상관관계를 분석하고자 하였다.