• Title/Summary/Keyword: Ignition plug

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상세 모델링을 통한 RDX 연소 동특성 분석 (An Analysis of Dynamic Characteristics of RDX Combustion Using Rigorous Modeling)

  • 김신혁;염기환;문일;채주승;김현수;오민
    • 청정기술
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    • 제20권4호
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    • pp.398-405
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    • 2014
  • 수명이 도래한 고에너지물질의 처리를 위해 환경오염 및 안전성, 처리용량 등을 고려해야 하며, 현재 가장 주목 받고 있는 처리방식은 소각처리공정이다. 그러나 처리대상 고에너지물질의 종류가 매우 다양하고, 특성 또한 다르기 때문에 범용적 기술개발이 힘든 실정이다. 본 연구는 상세 수학적모델링 및 동적모사를 통하여 가장 널리 사용되는 고에너지물질의 하나인 고폭약(research department explosive, RDX)을 플러그흐름반응기(plug flow reactor, PFR)에서 소각 시 반응기 내부의 물리-화학적 변화를 예측하였다. 본 연구에서 사용된 RDX반응은 263개의 상세한 기초반응식으로 이루어져 있으며 43개의 성분이 반응에 관여한다. 모사결과 반응기 내부온도를 제어하여 RDX의 민감성을 통제할 수 있었다. 반응기 내부온도를 1,200 K로 유지 할 때 RDX는 분해반응만 일어나 폭발과 같은 큰 에너지 방출을 막을 수 있었으나 공급되는 열원이 높아져 1,300 K이상 반응기 온도가 증가 시에는 3,000 K 이상의 온도상승을 수반하는 발화반응이 일어났다. 본 연구를 통하여 반응기의 운전온도변화에 따른 RDX반응 특성을 제시함으로써 효율적인 RDX소각로 공정설계 및 운전에 기초가 될 것으로 사료된다.

연소실 직접분사식 성층급기 가솔린기관 개발에 관한 연구 - 연료분사압력과 부하변동에 따른 연소특성 해석 - (A Study on Stratified Charge GDI Engine Development - Combustion Analysis according to the Variations of Injection Pressure and Load -)

  • 이상만;정영식;채재우
    • 대한기계학회논문집B
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    • 제22권9호
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    • pp.1317-1324
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    • 1998
  • In general, DI gasoline engine has the advantages of higher power output, higher thermal efficiency, higher EGR tolerance and lower emissions due to the operation characteristics of increased volumetric efficiency, compression ratio and ultra-lean combustion scheme. In order to apply the concept of stratified charge into direct injection gasoline engine, some kinds of methodologies have been adapted in various papers. In this study, a reflector was adapted around the injector nozzle to apply the concept of stratified charge combustion which leads the air-fuel mixture to be rich near spark plug. Therefore, the mixture near the spark plug is locally rich to ignite while the lean mixture is wholly introduced into the combustion chamber. The characteristics of combustion is analyzed with the variations of fuel injection pressure and load in a stratified -charge direct injection single cylinder gasoline engine. The obtained results are summarized as follows ; 1. The MBT spark timing approached to TDC with the increase of load on account of the increase of evaporation energy, but has little relation with fuel injection pressure. 2. The stratification effects are apparent with the increase of injection pressure. It is considered by the development of secondary diffusive combustion and the increase of heat release of same region, but proceed rapidly than diesel engine. Especially, in the case of high pressure injection (l70bar) and high load (3.0kgf m), the diffusive combustion parts are developed excessively and results in the decrease of peak pressure than in the case of middle load. 3. The index of engine stability, COVimep value, is drastically decreased with the increase of load. 4. To get better performance of DI gasoline engine development, staged optimizaion must be needed such as injection pressure, reflector, intake swirl, injection timing, chamber shape, ignition system and so on. In this study, the I50bar injection pressure is appeared as the optimum.

3-연소실형 GDI Engine의 성능 및 배기 배출물 특성에 관한 연구 (Study on the Characteristics of Performance and Exhaust Emissions of 3-Chamber GDI Engine)

  • 김봉수;정남훈;진선호;배종욱
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권1호
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    • pp.37-47
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    • 2002
  • Recently gasoline direct injection method has been applied to gasoline engine to reduce fuel consumption rate by controlling fuel air mixture on lean condition by means of stratified charging, and to reduce simultaneously. Pollutant emissions especially NOx and CO by lowering the combustion temperature. But difficulty of controling local fuel air ratio at ignition area in flammability limit unavoidably appeared, because it is merely controlled by injection timing with spatial and temporal distribution of fuel mixture. In this study, the authors devised a uniquely shaped combustion chamber so called three-chamber GDI engine, intended to keep the more reliable fuel air ratio at ignition area. The combustion chamber is divided into three regions. The first region is in the rich combustion division, where the fuel is injected from the fuel injection valve and ignited by the spark plug. The second region is in the lean combustion division, where the combustion gas from the rich combustion division flows out and burns on lean condition. And the last region is in the main combustion division ie in the cylinder, where the gas from the above two combustion divisions mixed together and completes the combustion during expansion stroke. They found that the stable range of operation of three-chamber GDI engine on low-load condition exists in the lean area of average equivalence ratio. And they also found that the reformed engine reveals less specific fuel consumption and less pollutant emissions compared with conventional carburettor type gasoline engine.

가솔린자동차의 유효방전에너지와 배기가스와의 상관관계 연구 (A Study on Correlation of Effective Discharge Energy and Exhaust Emission of Gasoline Vehicle)

  • 유종식;김철수
    • 한국자동차공학회논문집
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    • 제22권7호
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    • pp.70-75
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    • 2014
  • The experiment was done on traveling at the speed of 20km/h, 60km/h and 100km/h using the performance testing mode for chassis dynamometer. The experimental method were employed to measure the waveform of secondary ignition coil and exhaust emission. In this experiment, the correlation between the secondary waveform coming from ignition coil and exhaust emission were measured in decrepit vehicle. The secondary waveform characterized by the value of effective discharge energy. The following results are obtained by analyzing the data relativity between the effective discharge energy and exhaust emission. The variation rate of effective discharge energy was largest 60km/h, 20km/h, 100km/h velocity in the ordered named. As the vehicle velocity increases, the average variation rate of CO and $NO_X$ decreases and that of HC and $CO_2$ decrease. The value of effective discharge energy, CO, $NO_X$ and fuel consumption is measured badly in case of car with failures in MAP, spark plug and good in case of car with before and after maintenance regardless of vehicle velocities. The value of effective discharge energy is to be nearly parabolic shape as vehicle velocity increases. As the value of effective discharge energy increases, the value of $NO_X$, HC and $CO_2$ decrease, the value of CO increase. The most sensible factors of exhaust emission were CO, $NO_X$, and the small variation factors were HC, $CO_2$.

분무충돌을 이용하는 디젤연소실 설계를 위한 충돌면 분석 (Analysis of Impingement Lands to Help Diesel Combustion Chamber Using Spray Impaction)

  • 박권하
    • 한국분무공학회지
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    • 제1권2호
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    • pp.24-32
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    • 1996
  • Most of the research of small engines to date focused on developing spark ignition engines occupied much parts. Recently the number of a small direct injection diesel engine applied in small cars has been increased and considered as a next generation power source for passenger cars because of its high efficiency. Therefore the combustion chamber becomes smaller and the fuel injection pressure goes higher, which makes fuel sprays impinged easily on the combustion chamber walls. When strong swirls are not induced, the fuel may not mix with air because of fuel deposition on the wall. As a positive way, the combustion chamber systems which is using spray wall impaction has been introduced and assessed by an experimental or a simulate manner. In these systems the raised lands are positioned in tile chamber for spray impaction in order to break up the fuel drops into much smaller and direct them into desirable direction. This study addresses to the effects of rho position and size of the raised land or glow plug to help the chamber design using spray wall impaction. The characteristics of the spray impinged on various lands are investigated and compared with each other. Then the chamber shapes are discussed with the characteristics and their proper position and size is proposed in any chamber volume.

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장기체공 소형 UAV용 엔진 성능시험 및 시뮬레이션 (Test and Simulation of An Engine for Long Endurance Miniature UAVs)

  • 신영기;장성호;구삼옥
    • 한국항공우주학회지
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    • 제33권5호
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    • pp.99-105
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    • 2005
  • 장기체공 소형 무인기 실용화를 위해서는 연료소비율이 우수한 엔진 개발이 매우 중요하다. 본 연구에서는 4행정 글로우 플러그 엔진을 가솔린 엔진으로 개조하였다. 고공에서의 엔진 성능예측에 필요한 시뮬레이션 프로그램 개발을 위하여 지상에서 엔진 성능을 측정하였다. 측정결과 고속에서 윤활부족으로 인하여 엔진 마찰력이 급격히 증가함을 알 수 있었다. 지상 시험결과를 토대로 개발된 엔진성능 예측 프로그램에 의하면 고도가 상승할수록 연료소비율이 악화되는데 이는 윤활부족에 의한 마찰력 손실은 고도에 관계없이 거의 일정하기 때문이다.

전자 제어식 가솔린 엔진의 벽류 생성 요인에 관한 연구 (A Study on the Factors of Fuel-Film Formation in an EGI Gasoline Engine)

  • 김봉규;이기형;이창식
    • 대한기계학회논문집B
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    • 제22권11호
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    • pp.1530-1537
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    • 1998
  • Mixture formation is one of the significant factors to improve combustion performance of an spark ignition engine. This is affected by spray and atomization characteristics of injector. In the case of EGI system, air-fuel mixing period is so short that a lot of fuel-film and liquid-fuel flow into cylinder. Since this fuel-film is not burnt perfectly in cylinder, it is exhausted in the form of HC emission. In this paper, three measurement techniques were utilized to measure spray characteristics and the amount of fuel-film in the cylinder. At first, PMAS was used to measure the spray characteristics such as size distributions, SMD, and spray angle. Secondly the amount and distribution of fuel-film which flow into through intake valve could be measured quantitatively using the fuel-film measuring device. And lastly, by optical fiber type spark plug used to detect the diffusion flame, the amount of unburned HC was measured. As the result of these experiments, the information of optimal spray characteristics and injection condition to minimize fuel-film could be built up.

가솔린 직분사 엔진에서 운전 조건에 따른 공기 유동 특성에 의한 분무 거동 및 점화 채널에 관한 연구 (Study on Behavior of Spray and Spark Channel by Air Flow Characteristics According to Operating Conditions in Gasoline Direct Injection Engine)

  • 이호승;박성욱
    • 한국분무공학회지
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    • 제28권4호
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    • pp.198-206
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    • 2023
  • In this study, visualization of in-cylinder spray behavior and spark channel stretching by air flow characteristics depending on engine operating conditions were investigated. For in-cylinder spray behavior, increase in engine rpm did not alter the counter-clockwise air flow direction and location of in-cylinder dominant air flow but increased average air flow velocity, which hindered spray propagation parallel to the piston surface. When injection timing was retarded, direction of in-cylinder dominant air flow was changed, and average air flow velocity was reduced resulting in an increase in spray penetration length and change in direction. For spark channel stretching, increase in air flow speed did not affect spark channel stretch direction but affected length due to increase in spark channel resistance and limitation of energy ignition coil can handle. Change in air flow direction affected spark channel stretch direction where the air flow was obstructed by ground electrode which caused spark channel direction to occur in the opposing direction of air flow. It also affected spark channel stretch length due to change in air flow speed around the spark plug electrode from the interaction between the air flow and ground electrode.

연소제어인자의 변화에 따른 직접분사식 초희박 LPG엔진의 연소특성 연구 (Study of Combustion Characteristics with Variations of Combustion Parameter in Ultra-Lean LPG Direct Injection Engine)

  • 박윤서;박철웅;오승묵;김태영;최영;이용규
    • 대한기계학회논문집B
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    • 제37권6호
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    • pp.607-614
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    • 2013
  • 오늘날 전 세계의 자동차 회사들은 연비를 향상시키고 배기가스를 저감시키기 위해 다양한 기술을 개발하고 있다. 그 중 직접분사식 초희박 연소기술은 연료제어의 정확도를 향상시켜 연소 효율을 극대화하고 초희박 연소를 통해 연비를 향상 시킬 수 있는 차세대 기술로 평가받고 있다. 따라서 기존 가스엔진에 초희박 직접분사 기술을 적용한 초희박 LPG 직접분사 엔진을 개발하기 위해 $2{\ell}$ 급 MPI 엔진을 베이스 엔진으로 실린더 헤드를 재설계하였다. 재설계된 헤드는 초희박 연소를 구현하기 위해 인젝터와 점화플러그가 헤드 중앙에 장착되는 분무유도방식 연소시스템을 적용하였다. 연료 분사 압력별 연료 분사 시기와 점화 시기의 변경을 통해 연료 소비율과 연소 안정성을 측정하였으며 이를 통해 최적연료 분사시기와 점화시기를 선정하였다.

예연소실 점화 플러그의 화염 분출구 직경에 따른 매립지가스의 연소 특성 (Combustion Characteristics of Land Fill Gas according to the Diameter of the Flame outlet of the Pre-chamber Spark Plug)

  • 김권세;전영철;최두석
    • 융합정보논문지
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    • 제11권7호
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    • pp.111-117
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    • 2021
  • 본 연구는 LFG(Land Fill Gas)의 주성분인 메탄(CH4) 60%와 이산화탄소(CO2) 40%로 구성된 매립지가스를 활용하여 정적연소 환경에서 연소의 초기 불안정성을 해결할 수 있는 실험적인 연구결과를 제안하는 것이다. 실험조건은 공기과잉율 0.9~1.6, 초기연소를 위한 압축압력 3bar, 실험주변온도 25℃, 실험용 연료가스 메탄, 예연소실 화염 분출구 직경 2.5, 3.0, 3.5, 4.0, 4.5mm로 설정하였다. 실험결과 M3.0 모델에서 초기화염의 확산성이 매우 증가된 특성을 확인할 수 있으며, 이와 같은 증가의 특성은 공기 과잉률이 0.9, 1.0, 1.2에서 오리피스의 효과가 극도로 향상하게 되었다는 점을 알 수 있었다. 결과적으로, 본 실험을 통하여 M3.0으로 설계된 예연소실 화염 분출구 치수를 LFG에 적용할 경우 기존의 점화 플러그 특성 보다 부분적인 연소의 성능을 높일 수 있다는 점을 확인할 수 있었다.