• 제목/요약/키워드: injected air temperature

검색결과 132건 처리시간 0.027초

2성분 혼합연료를 이용한 감압비등 분무특성에 관한 연구 (A Study on the Spray Characteristics of Flash Boiling Using Two Component Mixing Fuel)

  • 명광재;윤준규
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권4호
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    • pp.451-458
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    • 2009
  • This experimental study was conducted to investigate macroscopic characteristics of the flash boiling spray with tow component mixing fuel. Homogeneous Charge Compression Ignition (HCCI) is a newer combustion method for internal combustion engines to reduce nitrogen oxide and particulate matter simultaneously. But it is difficult to put this combustion method to practical use in an engine because of such problems as instability of combustion in low load operating conditions and knocking in high load operating conditions. In HCCI, combustion characteristics and exhaust emissions depend on conditions of air/fuel mixture and chemical reactions of fuel molecules. The fuel design approach is achieved by mixing two components which differ in properties such as density, viscosity, volatility, ignitability and so on. We plan to apply the fuel design approach to HCCI combustion generated in a real engine, and examine the possibility of mixture formation control using the flash boiling spray. Spray characteristics of two component fuel with a flash boiling phenomenon was investigated using Shlieren and Mie scattering photography. Test fuel was injected into a constant volume vessel at ambient conditions imitated injection timing BTDC of a real engine. As a result, it was found that a flash boiling phenomenon greatly changed spray structure, especially in the conditions of lower temperature and density. Therefore, availability of mixture formation control using flash boiling spray was suggested.

밀폐된 원통형 분무 연소기내의 자연발화 현상에 관한 수치적 연구 (A Numerical Study of Autoignition in a Confined Cylindrical Spray Combustor)

  • 최지훈;백승욱
    • 대한기계학회논문집B
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    • 제23권6호
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    • pp.778-787
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    • 1999
  • In this study, the autoignition process of liquid fuel, injected into hot and stagnant air in a 2-D axisymmetric confined cylindrical combustor, has been investigated. Eulerian-Lagrangian scheme was adopted to analyze the two-phase flow and combustion. The unsteady conservation equations were used to solve the transition of the gas field. Interactions between two phases were accounted by using the particle source in cell (PSI-Cell) model, which was used for detailed consideration of the finite rates of transports between phases. And infinite conduction model was adopted for the vaporization of droplets. The results have shown that the process of the autoignition consists of heating up of droplets, vaporization, mixing and ignition. The ignition criteria could be determined by the temporal variations of temperature, reaction rate and species mass fraction. And the effects of various parameters on ignition phenomena are examined. These have shown that the increasing the reaction rate and/or the vaporization rate can reduce the ignition delay time.

가솔린 직접분사식 HCCI 엔진의 혼합기 제어에 의한 연소 및 배기 특성에 관한 실험적 연구 (An Experimental Study on the Characteristics of Combustion and Emission in a Gasoline Direct Injection Type HCCI Engine by Controlling Mixture Formation)

  • 김형민;류재덕;이기형
    • 한국자동차공학회논문집
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    • 제12권4호
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    • pp.24-30
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    • 2004
  • As the environmental pollution becomes serious global problem, the regulation of emission exhausted from automobiles is strengthened. Therefore, it is very important to know how to reduce the NOx and PM simultaneously in diesel engines, which has lot of merits such as high thermal efficiency, low fuel consumption and durability. By this reason, the new concept called as Homogeneous Charge Compression Ignition(HCCI) engines are spotlighted because this concept reduced NOx and P.M. simultaneously. However, there is trade off between output and NOx in a HCCI engine. In this study, output and emission characteristics for a gasoline direct injection type HCCI engine were investigated to clarify the effects of intake air temperature, injection time and mixture formation. From these experiments, we found that the smoke was not produced when the fuel was injected earlier than BTDC 90$^{\circ}$. In addition, the output was increased because of delay of ignition time and NOx emission was decreased because of homogeneous charge of first injection in case of split injection.

단실형 마이크로 고체 산화물 연료전지의 작동특성 전산모사 (Performance Modeling of Single-Chamber Micro SOFC)

  • 차정화;정찬엽;정용재;김주선;이종호;이해원
    • 한국세라믹학회지
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    • 제42권12호
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    • pp.854-859
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    • 2005
  • Performance of micro scale intermediate temperature solid oxide fuel cell system has been successfully evaluated by computer simulation based on macro modeling. Two systems were studied in this work. The one is designed that the ceria-based electrolyte placed between composite electrodes and the other is designed that electrodes alternately placed on the electrolyte. The injected gas was composed of hydrogen and air. The polarization curve was obtained through a series of calculations for ohmic loss, activation loss and concentration loss. The calculation of each loss was based on the solving of mathematical model of multi physical-phenomena such as ion conduction, fluid dynamics and diffusion and convection by Finite Element Method (FEM). The performance characteristics of SOFC were quantitatively investigated for various structural parameters such as distance between electrodes and thickness of electrolyte.

Micro-Gravity Research on the Atomization Mechanism of Near-Critical Mixing Surface Jet

  • Tsukiji, Hiroyuki;Umemura, Akira;Hisida, Manabu
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.774-778
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    • 2004
  • The atomization process of a circular $SF_{6}$ liquid jet issued into an otherwise quiescent, high-pressure $N_2$ gas was observed to explore the breakup mechanism of liquid ligaments involved in turbulent atomization. Both liquid and gas temperatures were fixed at a room temperature but the gas pressure was elevated to more than twice the critical pressure of $SF_{6}$. Therefore, the liquid surface was in a thermodynamic state close to a critical mixing condition with suppressed vaporization. Since the surface tension and the surface gas density approach zero and the surface liquid density, respectively, phenomena equivalent to those which would appear when a very high speed laminar flow of water were injected into the atmospheric-pressure air can be observed by issuing $SF_{6}$ liquid at low speeds in micro-gravity environment which avoid disturbances due to gravity forces. The instability ob near-critical mixing surface jet was quantitatively characterized using a newly developed device, which could issue a very small amount of $SF_{6}$ liquid at small constant velocity into a very high-pressure $N_2$ gas.

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고공시험설비에서 로켓엔진의 지상시험 플룸 거동 해석 (An Analysis on Plume Behaviour of Rocket Engine with Ground Condition at High Altitude Engine Test Facility)

  • 김성룡;이승재;한영민
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.112-115
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    • 2017
  • 고공엔진시험설비에서 지상 시험 조건의 시험 가능 여부와 설비 안전 문제를 점검하고자 로켓 엔진 유동을 해석하였다. 진공 챔버를 개방한 상태에서 냉각수를 초음속 디퓨저로 분사하면서 엔진이 작동하는 상황이며, 2차원 축대칭과 플룸, 공기, 냉각수의 3원 혼합물로 가정하였다. 해석 결과 냉각수 유량 200 kg/sec까지 지상 조건 시험이 가능하였다. 그러나 시동 초기 플룸의 역류로 인해 진공 챔버가 고온에 노출되고, 동시에 냉각수 역류로 인해 진공 챔버 내부가 오염되었다. 따라서 충분한 단열 대책과 오염 회피를 위한 작업이 선행되어야 한다.

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도로터널내 화재 발생시 매연 제거를 위한 모델 해석 (A Model-Analysis for Removal of Fire Fumes in a Road Tunnel during a Fire Disaster)

  • 윤성욱;이희근
    • 터널과지하공간
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    • 제7권2호
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    • pp.100-107
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    • 1997
  • In case of a fire outbreak in a uni-directional road tunnel, the flow of traffic immediately behind the fire disaster will be stalled all the way back to the entrance of the tunnel. Furthermore, when the vehicle passengers try to flee away from the fire toward the entrance of the tunnel, the extremely hot fume that propagates in the same direction will be fatal to the multitudes evacuating, but may also cause damage to the ventilation equipments and the vehicles, compounding the evacuation process. This paper will present the 3-dimensional modelling analysis of the preventive measures of such a fume propagation in the same direction as the evacuating passengers. For the analysis, the fire hazard was assumed to be a perfect combustion of methane gas injected through the 1 m X 2 m nozzle in the middle of the tunnel, and the product of $CO_2$ as the indicator of the fume propagation. From the research results, when the fire hazard occurred in middle of the 400 m road tunnel, the air density decreased around the fire point, and the maximum temperatures were 996 K and 499 K at 210 m and 350 m locations, respectively, 60 seconds after fire disaster occurred, when the fumes were driven out only towards the exit-direction of the tunnel. By tracing the increase of $CO_2$ level over 1% mole fraction, the minimum longitudinal ventilation velocity was found to be 2.40 m/sec. Furthermore, through Analysis of the temperature distribution graphs, and observation of the cross-sectional distribution of $CO_2$ over 1% mole fraction, it was found that the fume did not mix with the air, but rather moved far in a laminar flow towards exit of the tunnel.

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충돌벽면이 직분식 LPG의 분무 및 연소 특성에 미치는 영향에 관한 실험 연구 (A Experimental Study on the Effects of the Impingement-wall on the Spray and Combustion Characteristics of Direct-Injection LPG)

  • 황성일;정성식;염정국
    • 동력기계공학회지
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    • 제19권2호
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    • pp.49-56
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    • 2015
  • As an alternative fuel that can be used in SI engine, LPG is one of clean fuels with larger H/C ratio compared to gasoline, low $CO_2$ emission, and small amount of pollutants such as sulfur compounds. When LPG is used in spark ignition engine, volumetric efficiency of the engine can be improved and pumping loss can be reduced by performing direct injection into the combustion chamber instead of port fuel injection. LPG-DI engine allows for lean combustion and stratified combustion under low load. In case of stratified combustion, air fuel ratio can be greatly increased compared to theoretic mixture ratio combustion. Improved thermal efficiency of the engine and reduced pumping loss can be expected from stratified combustion. Accordingly in this study, an experimental apparatus for visualization was designed and manufactured to study the combustion process of LPG after injection and ignition, intended to examine ignition probability and combustion characteristics of spark ignition direct injection(SIDI) LPG fuel. Ambient pressure, ambient temperature and fuel injection pressure were found as important variables that affect ignition probability and flame propagation characteristics of LPG-air mixture. Also, it was verified that the injected LPG fuel can be directly ignited by spark plug under appropriate ambient conditions.

측정방법에 따른 흡기포트 분사식 다공 가솔린인젝터의 분무각 비교 (Comparison of Spray Angles of Multihole Port Fuel Gasoline Injector with Different Measuring Methods)

  • 김재호;임정현;노수영;문병수
    • 한국분무공학회지
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    • 제5권3호
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    • pp.17-26
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    • 2000
  • The main parameter commonly used to evaluate spray distribution is spray angle. Spray angle is important because it influences the axial and radial distribution of the fuel. Spray angles were measured and compared for the two non-air assisted injectors such as 2hole-2stream 4hole-1stream injectors used for port fuel injection gasoline engines with n-heptane as a fuel by three different measuring techniques, i.e., digital image processing, shadowgraphy, and spray patternator, respectively. Fuel was injected with the injection pressures of 0.2-0.35 MPa into the room temperature and atmospheric pressure environment. In digital image processing approach, the selection of the transmittance level is critical to obtain the edge of spray and hence to measure the spray angle. From the measurement results by the shadowgraphy technique, it is dear that the spray angle is varied during the spray injection period. The measurement results from spray patternator show that the different spray angles exist in different region. Spray angle increases with the increase in the injection pressure. it is suggested that the spray angle and stream separated angle should be specified when spray is characterized for 2hole-2stream injector, because spray angle is much different though stream separated angle is same. It was also considerably affected by the measurement techniques introduced in this experimental work. However, the optimal axial distance for measuring the spray angle seems to be at least 60-80 mm from the injector tip for two non-air assisted injectors.

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보텍스 사이클론을 이용한 VOCs 제거효율에 관한 연구 (A Study on Removal Efficiency of VOCs using Vortex Cyclones)

  • 임계규
    • 공업화학
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    • 제16권2호
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    • pp.194-199
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    • 2005
  • 본 연구에서는 배연가스속에 함유되어 있는 휘발성 유기화합물과 입자물질 등의 오염물질을 보텍스 사이클론의 원리를 이용하여 동시에 제거하는 메카니즘을 규명하고 나아가 효율을 높이기 위한 영향인자들을 분석 하였다. 보텍스 사이클론 속에 접선방향으로 압축된 공기를 주입함으로써 Joule-Thomson 팽창에 의하여 형성된 저온부분에서 페놀, 탄산가스 및 수분이 활성탄소 입자표면에 응집, 응축 및 흡착이 일어나도록 하였다. 활성탄소와 같은 입자물질은 쉽게 응축될 수 있는 물질들이 저절로 응집이나 응축은 입자물질의 입경이 증가함에 따라 속도는 급속도로 빨라져서 제거효율이 상승된다. 본 연구실험에서 탄산가스와 페놀의 제거효율은 각각 87.3%와 93.8%로 얻어졌다. 그리고 페놀 제거효율은 톨루엔과는 달리 상대습도의 증가에 따라 함께 증가되었고, 활성탄의 주입으로 제거효율도 증폭되었다. Joule-Thomson 계수는 상대습도 10%~50% 범위에서는 도입되는 압력이 높아짐에 따라 같이 상승하였다. 실험의 결과로는 도입되는 압력과 수분이 보텍스 사이클론의 처리효율에 미치는 영향은 공기 속에 함유되어 있는 대상물질의 물리화학적 특성과 입자물질의 특성에 따라 많은 영향을 받고 있음을 알 수 있고, 따라서 휘발성 유기화합물의 제거효율은 수분의 양과 입자물질의 물리화학적 특성을 조절함으로 제어할 수 있다고 판단된다.