• 제목/요약/키워드: Secondary Injection

검색결과 315건 처리시간 0.034초

2차 공기 분사에 의한 스파크 점화 가솔린 엔진의 배기 Hydrocarbon 저감에 관한 실험적 연구 (An Experimental Study for Reducing the Exhaust Hydrocarbon Emission at SI Engine Using Timed Secondary Air Injection)

  • 심현성;김세준;정석호
    • 한국자동차공학회논문집
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    • 제7권7호
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    • pp.104-112
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    • 1999
  • An experimental study for reducing the exhaust hydrocarbon emission at spark ignition engine using timed secondary air injection is carried out . In this study, secondary air injection timings and durations are controlled to decrease the hydrocarbon emission and to increase exhaust gas temperature at cold and warm-up engine conditions. The hydrocarbon reduction rate and exhaust gas temperature are compared between timed secondary air injection and continuous air injection. The optimum secondary air injection timing for reducing the hydrocarbon emission is at the exhaust valve open timing. At some engine conditions , the hydrocarbon emissions are decreased to 10% of engine raw values and exhaust gas temperatures increase by 20$0^{\circ}C$ with times secondary air injection . Timed secondary air injection has more hydrocarbon reduction rate that continuous secondary air injection except some engine conditions.

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2차 공기 주입 조건 변화에 따른 소형 소각로 내부의 유동장 분석 (Analysis of the Gas Flow Field of Primary Combustion Chamber with the Conditions of Secondary Air Injection)

  • 최병대;김성준
    • 산업기술연구
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    • 제22권A호
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    • pp.9-17
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    • 2002
  • This analysis is aimed to find out how the conditions of secondary air injection affects the residence time and the turbulence energy of flue gas and flow field in a small incinerator. A commercial code, PHOENICS, is used to simulate the flow field of an Incinerator. The computational grid system is constructed in a cartesian coordinate system In this numerical experiment, an independent numerical variable is the conditions of secondary air injection and dependants are the residence time of flue gas and the mean value of turbulence energy in a primary combustion chamber. The flow field and the distribution of turbulence energy are analysed to evaluate the residence time of flue gas and the turbulence energy The computational results say that the tangential injection of secondary air make the residence time much longer than the radial injection and that the radial injection of secondary make turbulence much stronger than the tangential injection.

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2차 분사의 위치 변화에 따른 로켓노즐 출구에서의 추력 분포 변화 (The Variation of Thrust Distribution of the Rocket Nozzle Exit Plane with the Various Position of Secondary Injection)

  • 김성준;이진영;박명호
    • 산업기술연구
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    • 제20권B호
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    • pp.45-53
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    • 2000
  • A numerical study is done on the thrust vector control using gaseous secondary injection in the rocket nozzle. A commercial code, PHOENICS, is used to simulate the rocket nozzle flow. A $45^{\circ}-15^{\circ}$ conical nozzle is adopted to do numerical experiments. The flow in a rocket nozzle is assumed a steady, compressible, viscous flow. The exhaust gas of the rocket motor is used as an injectant to control the thrust vector of rocket at the constant rate of secondary injection flow. The injection location which is on the wall of rocket is chosen as a primary numerical variable. Computational results say that if the injection position is too close to nozzle throat, the reflected shock occurs. On the other hand, the more mass flow rate of injection is needed to get enough side thrust when the injection position is moved too far from the throat.

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이차분사노즐 작동 조건 변화에 따른 SITVC 성능해석 (Performance Analysis of SITVC System with Various Secondary Injection Conditions)

  • 배지열;송지운;김태환;조형희;배주찬
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제37회 추계학술대회논문집
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    • pp.116-121
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    • 2011
  • SITVC 시스템의 이차분사 노즐 분사 조건 변화에 따른 시스템 성능 변화를 수치적으로 연구하였다. 해석에 사용된 형상은 3차원 종형 수축-팽창 노즐이고 측면에 8개의 이차분사 노즐을 가진다. 노즐 내부 유동은 전압이 70bar이며 300K의 cold flow로 가정하였다. 이차 유동의 유량 변화와 노즐 작동 조건 변화를 고려하였다. 상용코드인 Ansys Fluent v.13을 통해 해석하였고, 난류모델은 Spalart-Allmaras model(1- equation)를 사용하였다. 충격파의 수치적 진동을 막고 충격파의 불연속성을 잘 해석하기 위해 AUSM+ scheme을 사용하였다. Axial thrust, side force, system specific impulse ratio 와 같은 성능 변수를 사용해 시스템 성능을 평가하였다.

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역방향 2차 공기 주입 방식을 적용한 소각 연소로의 Thermal NOx 및 CO 배출특성에 대한 축소모형실험 연구 (Experimental Study on Thermal NOx and CO Emission in a Laboratory-Scale Incinerator with Reversed Secondary Air Jet Injection)

  • 최종균;최우성;신동훈
    • 대한기계학회논문집B
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    • 제40권8호
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    • pp.503-510
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    • 2016
  • 일반적으로 연소로는 연료의 연소과정에서 NOx, CO등의 공해물질을 배출한다. 본 연구는 소각연소로를 대상으로 2차 공기를 연소가스 흐름의 역방향으로 주입시키는 방법의 NOx 및 CO 배출특성에 대한 연구를 수행하였다. 연구의 주요변수는 1, 2차 공기의 유량비와 2차 공기의 투입 방향으로 설정하였다. 변수에 따른 NOx 및 CO 배출특성을 묘사하기 위해서 축소모형실험 연구를 수행하였다. 실험결과 1차 공기유량이 감소하고 2차 공기유량이 증가할수록 NOx가 감소되다가 일정 유량비 이상에서 다시 NOx가 다소 증가하는 형태가 나타났다. 역방향으로 빠른 유속의 2차 공기가 투입될 때 연소로 내부에 유동 재순환이 발생하여 혼합이 증가하고 이로 인해서 온도 영역이 고르게 분포되는 것으로 나타났으며 그 결과로서 thermal NOx의 저감 효과를 확인할 수 있었다. CO는 2차 공기가 역방향에서 높은 비율로 투입되는 조건이외에서는 측정되지 않았다. 측정된 경우도 CO의 농도는 2 ppm 이내로 안정적인 연소 조건으로 나타났다.

2차 가스분사에 의한 원추형 로켓노즐 추력벡터제어 성능해석 (I) (Performance Analysis of Secondary Gas Injection for a Conical Rocket Nozzle TVC(I))

  • 김형문;이상길;윤웅섭
    • 한국추진공학회지
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    • 제3권1호
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    • pp.1-8
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    • 1999
  • 풍전압력비와 2차 제트 분사구 위치에 따른 2차분사 추력방향 제어(SITVC: secondary injection thrust vector control) 성능특성 변화를 수치해석하였다. 2차 제트 분사에 의해 간섭된 수축-팽창노즐 내부의 초음속유동장을 대상으로 3차원 비정상 오일러 방정식을 내재적으로 근사인자분해된 Beam과 Warming의 방법을 사용하여 차분하였으며, 2차 분사 제트에 의한 추력비 비추력비 및 전향각에 대한 성능변화를 고찰하였다. 연구결과 측추력과 비추력비는 2차 분사 질량유량에 비래하여 증가하는 반면, 비추력 성능은 감소되어 2차 분사 질량유량이 적을 수록 추력 성능손실이 적어지는 것으로 나타났다. 또한 동일한 전압력비에 대하여 2차 제트 분사위치가 노즐의 하류에 위치할수록 고속기 주유동과의 간섭에 의한 강한 충격파로 인하여 측추력과 측비추력의 증가와 함께 추력방향 제어성능이 향상됨을 알 수 있었다.

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2차 공기분사 및 냉각수제어에 의한 SI 엔진의 탄화수소 배기저감 (SI Engine Hydrocarbon Emissions Reduction with Secondary Air Injection and Coolant Control)

  • 박기수;조영진;박심수
    • 한국자동차공학회논문집
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    • 제8권4호
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    • pp.51-58
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    • 2000
  • It is well known that the majority of the emissions measured from vehicle exhaust in the US Federal Test Procedure(FTP-75) are emitted during the first 60 seconds. This paper describes an experimental study on SI engine emissions reduction after cold start with interval secondary air injection and coolant control. Secondary air injection after cold start to reduce exhaust emissions causes an exothermic reaction at the exhaust port and gives sufficient air to the catalyst. For that reason engine-out emissions oxidized in the exhaust port and the rapid heating of a catalytic converter after cold start with CSAI and ISAI are estimated. The influence of the coolant temperature on SI engine emissions has been estimated. In the present studycoolant control of the cylinder head tempeature is used to investigate the effect of coolant temperature on SI engine emissions. The results show that engine-out hydrocarbon and carbon monoxide emissions are considerably reduced with interval secondary air injection and coolant control.

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모형 가스터빈 연소기의 2차공기 주입에 따른 연소배출특성 (Combustion Emission Characteristics on the Effect of Secondary Air Injection in Model Gas Turbine Combustor)

  • 김규성;임경달;이도형
    • 한국해양공학회지
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    • 제14권3호
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    • pp.84-89
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    • 2000
  • The purpose of this study is to investigate the combustion emission characteristics by the effect of secondary air injection and variation of the excess air ratio in combustion field of model gas turbine combustor. For this purpose, mean temperature, CO, $CO_2$, $O_2$ and HC concentrations were measured by changing excess air ratio and secondary air injection. As a result of this study, mean temperature was decreased and CO, HC emission increased by increasing the excess air ratio of secondary air. Therefore, this results showed the secondary air injection effected strongly on the flame structure and combustion emission characteristics.

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모형 가스터빈 연소기에서 2차공기 주입이 연소장에 미치는 영향 (Effects of Secondary Air Injection in Combustion Field of Model Gas Turbine Combustor)

  • 김규성;임경달;이동형
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2000년도 춘계학술대회 논문집
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    • pp.171-176
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    • 2000
  • This purpose of this study is to investigate the combustion emission characteristics on the effect of secondary air injection in combustion field of model gas turbine combustor changing excess air ratio. For this purpose, meantemperature, CO, CO2, O2 and HC concentration were measured by changing excess air ratio and secondary air injection. As a result of this study, meantemperature, CO2 emission was decreased and CO emission increased by increasing the excess air ratio of secondary air. therefore, This paper showed the effect of Secondary air injection on flame structure, combustion emission characteristics.

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An Experimental Study on the Combustion Characteristics of a Low NOx Burner Using Reburning Technology

  • Ahn, Koon-Young;Kim, Han-Seok;Son, Min-Gyu;Kim, Ho-Keun;Kim, Yong-Mo
    • Journal of Mechanical Science and Technology
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    • 제16권7호
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    • pp.950-958
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    • 2002
  • The combustion characteristics of a low NOx burner using reburning technology have been experimentally studied. The return burner usually has three distinct reaction zones which include the primary combustion zone, the reburn zone and the burnout zone by provided secondary air. NOx is mainly produced in a primary combustion zone and a certain portion of NOx can be converted to nitrogen in the rebury zone. In the burnout zone, the unburned mixtures are completely oxidated by supplying secondary air. Liquefied Petroleum Gas (LPG) was used as main and reburn fuels. The experimental parameters investigated involve the main/reburn fuel ratio, the primary/secondary air ratio, and the injection location of rebury fuel and secondary air. When the amount of return fuel reaches to the 20-30% of the total fuel used, the overall NO reduction of 50% is achieved. The secondary air is injected by two different ways including vertical and parallel injection. The injector of secondary air is located at the downstream region of furnace for a vertical-injection mode, which is also placed at the inlet primary-air injection region for a parallel-injection mode. In case of the vertical injection of the secondary air flow, the NOx formation of stoichiometric condition at a primary combustion zone is nearly independent of the rebury conditions (locations, fuel/air ratios) while the NOx emission of the fuel-lean condition is considerably influenced by the reburn conditions. In case of the parallel injection of the secondary air, the NOx emission is sensitive to the air ratio rather than the fuel ratio and the reburning process often coupled with the multiple air-staging and fuel-staging combustion processes.