• 제목/요약/키워드: fuel-air mixing

검색결과 312건 처리시간 0.024초

액체 램제트 엔진의 3차원 분무 및 연소 반응 해석 (Analysis of Three Dimensional Liquid Ramjet Engine with Spray and Combustion)

  • 오대환;임상규;손창현;이충원
    • 한국추진공학회지
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    • 제3권2호
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    • pp.18-24
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    • 1999
  • 액체 램제트 연소기는 흡입공기와 분무, 혼합 그리고 이에 따른 연소 등 일련의 과정에 따라 다수의 복잡한 현상들이 상호 밀접하게 관련되어 있으며, 이러한 반응 및 비반응 유동 특성을 파악하기 위해서 2차원 및 3차원 연소기 형상에 대해서 수치적 실험을 수행하였다 격자구성은 연소기에 공기를 공급하고 연료를 분무하는 공기 유입관 영역과 연소실 영역, 그리고 출구 대기 영역으로 나누어 격자를 생성시켰다. 비반응 유동해석을 통해서 연소실내의 선회영역 유동특성은 2차원과 3차원이 크게 차이가 남을 알 수 있었다. 반응 유동 해석에서는 분무 모델의 적용 유무에 따라 연소 형태가 크게 변화하였다. 연료의 분사위치를 유입관의 위쪽에 준 경우와 아래쪽에 준 두 가지 경우를 비교하였으며, 유입관의 아래쪽에 연료의 분사위치를 준 경우가 연소의 안정화에 필요한 재순환 영역으로의 연료의 유입이 잘 되어 유입관 위쪽에 연료를 분사시키는 것보다 좋은 분사위치임을 알 수 있었다.

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5kW 용융탄산염 연료전지(MCFC) 이젝터 설계 및 시험 (The Ejector Design and Test for 5kW MCFC System)

  • 김범주;김도형;이정현;이성윤;김진열;강승원;임희천
    • 한국수소및신에너지학회논문집
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    • 제20권1호
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    • pp.31-37
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    • 2009
  • An ejector is a machine utilized for mixing fluid, maintaining a vacuum, and transporting fluid. The Ejector enhances system efficiency, are easily operated, have a mechnically simple structure, and do not require a power supply. Because of these advantages, the ejector has been applied to a variety of industrial fields such as refrigerators, power plants and oil plants. In this work, an ejector was used to safely recycle anode tail gas in a 5 kW Molten Carbonate Fuel Cell system at KEPRI(Korea Electric Power Research Institute). In this system, the ejector is placed at mixing point between the anode tail gas and the cathode tail gas or the fresh air. Commercial ejectors are not designed for the actual operating conditions for our fuel cell system. A new ejector was therefore designed for use beyond conventional operating limits. In this study, the entrainment ratio is measured according to the diametrical ratio of nozzle to throat in the designed ejector. This helps to define important criteria of ejectors for MCFC recycling.

EFFECT OF VALVE TIMING AND LIFT ON FLOW AND MIXING CHARACTERISTICS OF A CAI ENGINE

  • Kim, J.N.;Kim, H.Y.;Yoon, S.S.;Sa, S.D.;Kim, W.T.
    • International Journal of Automotive Technology
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    • 제8권6호
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    • pp.687-696
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    • 2007
  • To increase the reliability of auto-ignition in CAI engines, the thermodynamic properties of intake flow is often controlled using recycled exhaust gases, called internal EGR. Because of the internal EGR influence on the overall thermodynamic properties and mixing quality of the gases that affect the subsequent combustion behavior, optimizing the intake and exhaust valve timing for the EGR is important to achieve the reliable auto-ignition and high thermal efficiency. In the present study, fully 3D numerical simulations were carried out to predict the mixing characteristics and flow field inside the cylinder as a function of valve timing. The 3D unsteady Eulerian-Lagrangian two-phase model was used to account for the interaction between the intake air and remaining internal EGR during the under-lap operation while varying three major parameters: the intake valve(IV) and exhaust valve(EV) timings and intake valve lift(IVL). Computational results showed that the largest EVC retardation, as in A6, yielded the optimal mixing of both EGR and fuel. The IV timing had little effect on the mixing quality. However, the IV timing variation caused backflow from the cylinder to the intake port. With respect to reduction of heat loss due to backflow, the case in B6 was considered to present the optimal operating condition. With the variation of the intake valve lift, the A1 case yielded the minimum amount of backflow. The best mixing was delivered when the lift height was at a minimum of 2 mm.

발전소 점화자 팁 부품의 마모 문제 해결을 위한 3D 프린팅 기술을 이용한 부품 제조기술개발 (Wear Problem Improvement Manufacture Technology of Ignitor Tip Component Using 3D Printing Technology)

  • 이혜진;연시모;손용;이낙규
    • 융복합기술연구소 논문집
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    • 제6권2호
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    • pp.35-40
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    • 2016
  • Ignitor tip is a component of burner to start the burning process in power plant. This is used to ignite the coal to a constant operating state by fuel mixed with air and kerosene. This component is composed of three components so that air and kerosene are mixed in the proper ratio and injected uniformly. Because the parts with the designed shape are manufactured in the machining process, they have to be made of three parts. These parts are designed to have various functions in each part. The mixing part mixes the supplied air and kerosene through the six holes and sends it to the injecting part at the proper ratio. The inject part injects mixed fuel, which is led to have a constant rotational direction in the connecting part, to the burner. And the connecting plate that the mixed fuel could rotate and spray is assembled so that the flame can be injected uniformly. But this part causes problems that are worn by vibration and rotation because it is mechanically assembled between the mixing part and the inject part. In this study, 3D printing method is used to integrate a connecting plate and an inject part to solve this wear problem. The 3D printing method could make this integrated part because the process is carried out layer by layer using a metal powder material. The part manufactured by 3D printing process should perform the post process such as support removal and surface treatment. However, while performing the 3D printing process, the material properties of the metal powders are changed by the laser sintering process. This change in material properties makes the post process difficult. In consideration of these variables, we have studied the optimization of manufacturing process using 3D printing method.

An Experimental Study of the Diffusion Flame Characteristics for the Gas Fueled Torch System

  • Choi, Hyun-Kyung;Choi, Seong-Man
    • International Journal of Aeronautical and Space Sciences
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    • 제7권2호
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    • pp.50-55
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    • 2006
  • Currently, a gas fueled diffusion flame is used for the relay torch system. It could be burned cleanly but should be stable at severe weather condition such as rain of up to 55 mm/h, winds of up to 70 km/h and also produce a highly bright yellow visible flame. This paper presents torch diffusion flame characteristics on the various wind speeds and rainfall conditions. From the results, flame lengths are controlled by the momentum flux ratio of fuel and ambient air flow and flame stability is much influenced by the mixing characteristics with air flow. Flame is fluctuated above than 200 mm/h rainfall and blow out is occurred about 300 mm/h rainfall condition.

배연가스 분석에 의한 가연성과 유기성폐기물을 혼합한 고형화연료 연소 특성평가 (Characteristics Evaluation of Combustion by Analysis of Fuel Gas Using Refuse-derived Fuel by Mixing Different Ratios with Organic and Combustible Wastes)

  • 하상안
    • 유기물자원화
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    • 제17권3호
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    • pp.27-39
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    • 2009
  • 본 연구는 가연성폐기물, 음식물폐기물 및 하수슬러지를 혼합하여 연료로 제조하여, 연소장치에서 다양한 연소조건에 따라 배출되는 배연가스를 분석하여 연소특성을 조사하였다. CO가스성분은 연소과정에서 불완전연소 부분을 평가하는 가스성분으로서, 연소장치의 실험조건이 온도 $800^{\circ}C$와 공기비 2일 때 가장 낮게 발생하였다. $CO_2$는 시료가 완전 연소되어 최종적으로 발생되는 부산물로서 연소조건이 가장 최적상태인 온도 $800^{\circ}C$와 공기비 2일 때 가장 높은 농도가 발생하였다. $SO_2$ 발생은 시료 중에 황 함유량이 높은 S.1에서 높게 나타났다. NOx는 질소성분이 높은 S.1시료와 온도 $800^{\circ}C$의 조건에서 공기비 m=2의 조건에서 NOx의 발생이 높게 나타났다. HCl가스는 연소과정에서 산소의 촉매 반응을 통해서 분진이나 금속촉매물질과 반응하여 다이옥신류를 발생시키는 전구물질로서 분석결과에서 보면 시료의 Cl함유량이 많은 시료와 동일한 시료에서 온도 $800^{\circ}C$와 공기비 2일 때가 가장 낮은 HCl의 농도가 발생되었다. $NH_3$는 시료의 혼합비율과 온도조건보다는 공기비 2일 때 연소시작 3분 후에 가장 낮게 나타났으며, 연소온도 보다는 공기비가 $NH_3$의 생성에 더 큰 영향을 미치는 것으로 나타났다. $H_2S$ 발생은 시료의 황 함유량이 높은 S.1시료와 하수슬러지나 음식물쓰레기 혼합 비율이 높은 경우 높게 나타났다. 연소실험에서 혼합비율에 따라서 제조된 S.1과 S.2의 시료를 연소한 결과 CxHy농도 무연탄 연소시 발생농도와 비슷하게 나타남으로서, 성형하여 제조된 연료는 보조연료 및 주연료로서 가치가 있는 것으로 평가되었다.

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Characterization and Electrochemical Performance of Composite BSCF Cathode for Intermediate-temperature Solid Oxide Fuel Cell

  • Kim, Yu-Mi;Kim-Lohsoontorn, Pattaraporn;Bae, Joong-Myeon
    • Journal of Electrochemical Science and Technology
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    • 제2권1호
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    • pp.32-38
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    • 2011
  • The composite barium strontium cobalt ferrite (BSCF) cathodes were investigated in the intermediate temperature range of solid oxide fuel cells (SOFCs). The characteristics and electrochemical performances of composited BSCF/samarium doped ceria (SDC); BSCF/gadolinium doped ceria (GDC); and BSCF/SDC/GDC were compared to single BSCF cathode. The BSCF used in this study were synthesized using glycine nitrate process and mechanically mixing was used to fabricate a composite cathode. Using a composite form, the thermal expansion coefficient (TEC) could be reduced and BSCF/SDC/GDC exhibited the lowest TEC value at $18.95{\times}10^{-6}K^{-1}$. The electrochemical performance from half cells and single cells exhibited nearly the same trend. All the composite cathodes gave higher electrochemical performance than the single BSCF cathode (0.22 $Wcm^{-2}$); however, when two kinds of electrolyte were used (BSCF/SDC/GDC, 0.36$Wcm^{-2}$), the electrochemical performance was lower than when the BSCF/SDC (0.45 $Wcm^{-2}$) or BSCF/GDC (0.45 $Wcm^{-2}$) was applied as cathode ($650^{\circ}C$, 97%$H_2$/3%$H_2O$ to the anode and ambient air to the cathode).

자발광 및 레이저 계측기법을 이용한 모형 가스터빈 연소기에서 화염구조 분석 (Study of Flame Structure by Chemiluminescence and Laser Diagnostics in Model Gas Turbine Combustor)

  • 윤지수;김민기;이민철;윤영빈
    • 한국추진공학회지
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    • 제16권5호
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    • pp.10-19
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    • 2012
  • 연소불안정 현상을 제거하거나 효과적으로 제어하기 위해서는 화염구조에 대한 이해가 매우 중요하다. 이에 본 연구에서는 OH 자발광 및 He-Ne 레이저 광흡수 계측기법을 이용하여 연소불안정과 화염 구조사이의 상관관계에 대한 실험적 연구를 다양한 실험조건에서 수행하였다. 실험에서는 673 K로 가열된 swirl 형태로 공급되는 건조한 공기와 LNG($CH_4$) 연료를 사용하였으며 전체 당량비는 1.2 조건에서 속도를 25 ~ 70 m/s까지 바꾸어가며 실험을 수행하였다. 이를 통하여 연소불안정 현상이 낮은 속도조건과 높은 속도조건에서 발생하는 것을 확인할 수 있었고, 낮은 속도조건의 불안정에서는 화염의 와동구조가 연소불안정현상에 영향을 끼친다는 것을 확인할 수 있었다.

자발광 및 레이저 계측기법을 이용한 모형 가스터빈 연소기에서 화염구조 분석 (Study of Flame Structure by Chemiluminescence and Laser Diagnostics in Model Gas Turbine Combustor)

  • 윤지수;김민기;이민철;윤영빈
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2012년도 제38회 춘계학술대회논문집
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    • pp.367-376
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    • 2012
  • 연소불안정 현상을 제거하거나 효과적으로 제어하기 위해서는 화염구조에 대한 이해가 매우 중요하다. 이에 본 연구에서는 OH 자발광 및 He-Ne 레이저 광흡수 계측기법을 이용하여 연소불안정과 화염구조사이의 상관관계에 대한 실험적 연구를 다양한 실험조건에서 수행하였다. 실험에서는 673K로 가열되어진 swirl 형태로 공급되는 건조한 공기와 LNG(CH4) 연료를 사용하였으며 전체 당량비는 1.2 조건에서 속도를 25 ~ 70 m/s까지 바꾸어가며 실험을 수행하였다. 이를 통하여 연소불안정 현상이 낮은 속도조건과 높은 속도조건에서 발생하는 것을 확인할 수 있었고, 낮은 속도조건의 불안정에서는 화염의 와동구조가 연소불안정현상에 영향을 끼친다는 것을 알 수 있었다.

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고속 고부하 상태의 DISI 엔진에서 메탄올-가솔린 혼합연료의 연료 혼합비와 2단 분사가 엔진 내부유동 및 연소특성에 미치는 영향 (The Effect of Mixing Rate and Multi Stage Injection on the Internal Flow Field and Combustion Characteristics of DISI Engine Using Methanol-gasoline Blended Fuel at High Speed / High Load Condition)

  • 배진우;서주형;이재성;김호영
    • 한국자동차공학회논문집
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    • 제21권5호
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    • pp.15-24
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    • 2013
  • Numerical studies were conducted to investigate the internal flow field and combustion characteristics of DISI engine with methanol blended in gasoline. Dual injection was applied and the characteristics were compared to single injection strategy. The amount of the fuel injection was corresponded to air-fuel ratio of each fuel for complete combustion. The preforming model in this study, software STAR-CD was employed for both modeling and solving. The operating speed condition were at 4000 rpm/WOT (Wide open throttle) where the engine was fully warmed. The results of single injection with M28 showed that the uniformity, equivalence ratio, in-cylinder pressure and temperature increased comparing to gasoline (M0). When dual injection was applied, there was no significant change in uniformity and equivalence ratio but the in-cylinder pressure and temperature increased. When M28 fuel and single injection was applied, the CO (Carbon monoxide) and NO (Nitrogen oxides) emission inside the combustion chamber increased approximately 36%, 9% comparing with benchmarking case in cylinder prior to TWC (Three Way Catalytic converter). When dual stage injection was applied, both CO and NO emission amount increased.