• 제목/요약/키워드: Diesel spray combustion

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Common Rail을 이용한 대형 디젤 가시화엔진에서의 연소특성 (Combustion Characteristics of Common Rail System by Using a Heavy Duty Transparent Engine)

  • 김영민;이장희;김상호;이웅건;홍창호;최병철
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집D
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    • pp.896-902
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    • 2001
  • To meet strict emission regulation while improving engine performances, common rail injection system which is suitable for electronic control, and capable of controlling injection quantity, timing, rate and pressure individually as well as realizing high pressure has been developed. At present study, a 8L DI diesel engine was converted to a single-cylinder experimental engine allowing optical access through an extended piston and a prototype of common rail injector in progress was applied to the engine. The combustion characteristics of the engine were analysed by using direct images and characteristics of the injector were analysed. We can not say that the results are always the same to general common rail injection system but that they are just characteristics of specific prototype injector.

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고온 고압 정적 연소실에서 연소과정에 따른 온도 분포 측정 (Study of spatial temperature distribution during combustion process in a high temperature and pressure constant volume chamber)

  • 김기현
    • 한국산학기술학회논문지
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    • 제18권1호
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    • pp.345-350
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    • 2017
  • 디젤 엔진의 연비와 배기를 개선하고자 하는 노력으로 다운사이징이 강화되고 있다. 이에 따라 엔진의 사이즈는 작아지고, 엔진 연소실 내 온도와 압력은 상승하는 추세이다. 따라서 높은 온도와 압력 조건에서 연료 분무의 발달과정과 연소과정 연구가 매우 중요하다. 본 연구에서는 디젤 엔진 연소실의 고온 고압 환경을 벤치에서 모사해줄 수 있는 정적 연소실을 개발하였다. 정적 연소실은 예혼합기를 연소시켜 순간적으로 온도와 압력을 급격하게 상승시킨 다음, 주변으로의 열전달에 의해 온도와 압력이 감소할 때 시험 목표조건인 온도와 압력 조건에 다다르면, 연료 분사기에 신호를 인가하여 연료분무를 개시하며 쿼츠 창을 통하여 연료 분무를 가시화 한다. 이 때, 정적 연소실 내에 연료 분무가 이루어지는 영역의 온도를 정확히 측정하여 정확한 시험 조건을 형성해야 한다. 본 연구에서는 고속으로 온도를 측정할 수 있는 열전대를 직접 개발 및 제작하여 연소실 내 시공간적 온도분포를 측정하였다. 측정 결과, 전체 체적 온도보다 연료 분무가 개시되는 중심 공간의 온도가 더 높게 나타났으며, 이는 연소실 벽면으로의 열전달 때문임을 확인하였다. 또한 횡방향으로의 온도 편차는 약 10%이내 수준이었으나, 종방향으로 온도편차가 최대 15%수준으로 나타났고 이는 부력으로 인한 고온의 연소가스의 상승효과 때문으로 판단되었다.

압축착화 엔진에서 분사압이 저온연소에 미치는 영향 (Effect of Injection Pressure on Low Temperature Combustion in CI Engines)

  • 장재훈;이선엽;이용규;오승묵;이기형
    • 한국분무공학회지
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    • 제18권1호
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    • pp.21-26
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    • 2013
  • Diesel low temperature combustion (LTC) is the concept where fuel is burned at a low temperature oxidation regime so that $NO_x$ and particulate matters (PM) can simultaneously be reduced. There are two ways to realize low temperature combustion in compression ignition engines. One is to supply a large amount of EGR gas combined with advanced fuel injection timing. The other is to use a moderate level of EGR with fuel injection at near TDC which is generally called Modulated kinetics (MK) method. In this study, the effects of fuel injection pressure on performance and emissions of a single cylinder engine were evaluated using the latter approach. The engine test results show that MK operations were successfully achieved over a range of with 950 to 1050 bar in injection pressure with 16% $O_2$ concentration, and $NO_x$ and PM were significantly suppressed at the same time. In addition, with an increase in fuel injection pressure, the levels of smoke, THC and CO were decreased while $NO_x$ emissions were increased. Moreover, as fuel injection timing retarded to TDC, more THC and CO emissions were generated, but smoke and $NO_x$ were decreased.

음영사진의 화상해석에 의한 디젤화염에 관한 연구 (A Study on the Diesel Flame by Means of Image Analysis ofn Shadow Photographs)

  • 장영준;박호준;신본무정
    • 대한기계학회논문집
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    • 제14권5호
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    • pp.1222-1233
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    • 1990
  • 본 연구에서는 급속압축장치에서 실현된 단발분무하염내의 매연을 레이저음영 사진법에 의하여 가시화하고, 화염내의 매연농도의 시간적, 공간적분포를 조사한다. 또 전보에서 측정된 비증발분무내의 당량비분포와 비교검토하여 디젤화염내의 매연 생 성기구를 고찰하고, 분위기조건에 따른 착화지연이 매연생성에 미치는 영향 및 매연생 성과 열발생율과의 관계를 밝힌다.

Urea 수용액의 배기가스 유동장내 분무 특성과 분무 균일도에 관한 연구 (A Study on the Characteristic and Droplet Uniformity of Spray Injection to Exhaust Gas Flow from Urea Solution Injector)

  • 오정모;차원심;김기범;이진하;이기형
    • 한국자동차공학회논문집
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    • 제19권3호
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    • pp.83-89
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    • 2011
  • Diesel engines can produce higher fuel efficiency and lower $CO_2$ emission, they are subject to ever more stringent emission regulation. However, there are two major emission concerns fo diesel engines like such as particulate matter (PM) and nitrogen oxides (NOx). Moreover, it is not easy to satisfy the regulations on the emission of NOx and PM, which are getting more strengthened. One of the solutions is to apply the new combustion concept using multistage injection such as HCCI and PCCI. The other solution is to apply after-treatment systems. For example, lean NOx trap catalyst, Urea-SCR and others have various advantages and disadvantages Especially, Urea-SCR system have advantages such as a high conversion efficiency and a wide operation conditions. Hence the key factor to implementation of Urea-SCR technology, good mixing of urea(Ammonia) and gas, reducing Ammonia slip. Urea mixer components are required to facilitate evaporation and mixing because the liquid state of urea poses significant barriers for evaporation, and the distance to mixer is the most critical that affect mixer performance. In this study, to find out the distance from injector to mixer and simulation factor, a laser diagnostics and high speed camera are used to analyze urea injector spray characteristics and to present a distribution of urea solution in transparent manifold In addition, Droplet Uniformity Index is calculated from the acquired images by using image processing method to clarify the distribution of spray.

분사노즐 출구 각도 변화가 분사특성에 미치는 영향에 관한 계산적 고찰 (Computational Study on The Effect of Injection Nozzle Hole Exit Angle Variation on Injection Characteristics)

  • 김주연;박권하;이승호
    • Journal of Advanced Marine Engineering and Technology
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    • 제36권8호
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    • pp.997-1002
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    • 2012
  • 박용기관에서의 배기규제는 단계별로 강화되고 있으며 연소실 내외의 종합대책이 요구되고 있다. 기관 내부의 연소 특성은 배기배출 특성과 밀접한 관계가 있으며 분사밸브의 노즐과 노즐 홀 특성은 연소에 중요한 영향을 미친다. 분무 특성을 향상시키기 위한 노즐에 관한 연구는 입구형상, 직경 등에 집중되고 있으며, 노즐 출구의 형상에 대해서는 연구가 부족하다. 본 연구에서는 노즐 출구의 형상을 0도에서 90도까지 변화시키면서 계산을 수행하였다. 분사 압력, 질량유량, 유속, 유동특성 등을 종합하였을 때 노즐 출구 각도를 30도와 60도 사이로 하였을 때가 가장 효과적일 것이라 사료된다.

확대촬영법 및 Mie 산란광법을 이용한 다성분연료의 분무구조에 관한 실험적 해명 (An Experimental Analysis on the Spray Structure of Multi-component Fuels Using Magnification Photograph and Mie Scattering Images)

  • 명광재;윤준규
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권5호
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    • pp.707-716
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    • 2008
  • The objective of this study was to analyze the effect of mixed fuel composition and mass fraction on spray inner structure in evaporating transient spray under the variant ambient conditions. Spray structure and spatial distribution of liquid phase concentration were investigated using a thin laser sheet illumination technique on the three component mixed fuels. A pulsed Nd:YAG laser was used as a light source. The experiments were conducted in a constant volume vessel with optical access. Fuel was injected into the vessel with electronically controlled common rail injector. Used fuel contains i-octane($C_8H_{18}$), n-dodecane($C_{12}H_{26}$) and n-hexadecane($C_{16}H_{34}$) that were selected as low-, middle- and high-boiling point fuel, respectively. Experimental conditions are 42 MPa, 72 MPa and 112 MPa in injection pressure, $5\;kg/m^3$, $15kg/m^3$ and $30kg/m^3$ in ambient gas density, 300 K, 500 K, 600 K and 700 K in ambient gas temperature, 300 K and 368 K in fuel temperature and different fuel mass fraction. Experimental results indicated that the multi-component fuels made two phase region mixed vapor and liquid so that it would are helpful to improve combustion, for the fuels of high boiling point component could accelerate evaporation very much according as low boiling point fuel was added to high boiling point fuel.

휘발유와 LPG 자동차의 연료분사방식에 따른 극미세입자 배출 특성 (Emission Characteristics of Ultrafine particles According to Fuel Injection Type in Gasoline and LPG Vehicle)

  • 박경균;권상일;이우석;홍지형
    • 한국분무공학회지
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    • 제14권4호
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    • pp.184-189
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    • 2009
  • Recently, ultrafine particles emitted from internal combustion engine is main concern because of its well known adverse health effects. So Europe decided to start the regulation about diesel engine particle number emissions. The nanoparticles smaller than 50nm in diameter have the ability to penetrate deep into interstitial tissue of luge, where they may cause severe respiratory inflammation and acute pulmonary toxicity. Recent studies have showed that spark ignition engines emit particles number concentration comparable to those from diesel engines with DPF under high load and rich mixture conditions, including cold starts and acceleration. So this study investigated emission characteristics of ultrafine particles according to fuel injection type in gasoline vehicles and LPG vehicles. The test vehicles were tested on CVS-75 and NEDC vehicle test mode using the chassis dynamometer, CPC system applied as a particle measuring instrument at the end of dilution tunnel. As a result, the correlation between fuel injection type and particulate emission was determined. GDI vehicle emitted 10 times higher particles than PFI vehicles, and compared to Mixer and LPGI type LPG vehicle, LPLI vehicle emitted particles high.

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커먼레일 디젤기관에서 분사전략에 따른 성능 및 배출가스에 관한 연구 (A Study on Characteristics of Performance and Emission by CRDI Engine's Injection Strategy)

  • 엄동섭;고동균;나완용;이성욱
    • 한국분무공학회지
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    • 제16권3호
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    • pp.134-139
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    • 2011
  • Recent research has focused on engine combustion technology as well as application of after-treatment in order to comply with emission regulation. However, it is much more efficient way to control emissions from engine itself and furthermore research on engine control will provide the direction of after-treatment technology in future. Furthermore, emission standard regulation for passenger diesel vehicles has been stringent compared to others and nano-particles will be included in EURO6 regulation in Europe and similar emission standard will be introduced in Korea. A 3.0 liter high speed diesel engine equipped with by CRDI system of 160MPa injection pressure, and an intake/exhaust system of V type 6 cylinder turbo-intercooler was applied. The injection duration and injection quantity, pilot injection types which are related to CRDI and air/fuel ratio control applied by EVGT were changed simultaneously. Standard experiment procedure constituted dilution apparatus and CPC system to collect nano-particles and these test results were compared with regulated materials of CO, HC, NOx and investigated their relations and characteristics of nano-particles.

부탄과 프로판 혼합비율에 따른 액상 LPG 분사시 Icing 특성 (Icing Characteristics of Liquid Phase LPG Injection According to Butane and Propane Mixing Rates)

  • 김영진;조원준;이기형
    • 한국분무공학회지
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    • 제16권3호
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    • pp.146-151
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    • 2011
  • LPG(Liquified Petroleum Gas) fuel for vehicles has lots of advantages such as low emission level, cheaper fuel cost and enough infrastructure. Therefore it arouses interest as an alternative engine to reduce emission of diesel engines. Especially MPI(Multi Point Injection) type LPLi(Liquid Phase LPG injection) system could have overcome the disadvantages of mixer types such as low engine performance, decreased charging efficiency and cold starting difficulty. However ice formation on the nozzle tip and intake port due to the freezing of moisture around the components is often observed in LPLi systems. This icing phenomenon is the direct cause of unstable engine combustion, resulting in engine emissions. Therefore in this research, a spray visualization test for LPG injection was carried out to obtain the basic information of an LPLi injector, then the effects of butane and propane mixing rates on ice formation at the intake port and nozzle tip was investigated. As a result, the icing characteristics of them showed contrary results according to the mixing rates.