• Title/Summary/Keyword: breakup model

검색결과 111건 처리시간 0.027초

벽면 형상에 따른 중공 원추형 분무의 벽 충돌 과정 모델링 (Modeling of Wall Impingement Process of Hollow-Cone Fuel Spray according to Wall Geometry)

  • 심영삼;최경민;김덕줄
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.3467-3472
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    • 2007
  • The effects of the wall geometry on the spray-wall impingement process of a hollow-cone fuel spray emerging from a high-pressure swirl injector of the Gasoline Direct Injection (GDI) engine were investigated by means of a numerical method. The ized Instability Sheet Atomization (LISA) & Aerodynamically Progressed Taylor Analogy Breakup (APTAB) model for spray atomization process and the Gosman model were applied to model the atomization and wall impingement process of the spray. The calculation results of spray characteristics, such as a spray development process and a radial distance after wall impingement, compared with the experimental ones by the Laser Induced Exciplex Fluorescence (LIEF) technique. It was found that the radial distance of the cavity angle of 90$^{circ]$ after wall impingement was the shortest and the ring shaped vortex was generated near the wall after spray-wall impingement process.

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Effects of hydrodynamics and coagulant doses on particle aggregation during a rapid mixing

  • Park, Sang-Min;Heo, Tae-Young;Park, Jun-Gyu;Jun, Hang-Bae
    • Environmental Engineering Research
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    • 제21권4호
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    • pp.365-372
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    • 2016
  • The effects of hydrodynamics and alum dose on particle growth were investigated by monitoring particle counts in a rapid mixing process. Experiments were performed to measure the particle growth and breakup under various conditions. The rapid mixing scheme consisted of the following operating parameters: Velocity gradient (G) ($200-300s^{-1}$), alum dose (10-50 mg/L) and mixing time (30-180 s). The Poisson regression model was applied to assess the effects of the doses and velocity gradient with mixing time. The mechanism for the growth and breakup of particles was elucidated. An increase in alum dose was found to accelerate the particle count reduction. The particle count at a G value of $200s^{-1}$ decreased more rapidly than those at $300s^{-1}$. The growth and breakup of larger particles were more clearly observed at higher alum doses. Variations of particles due to aggregation and breakup of micro-flocs in rapid mixing step were interactively affected by G, mixing time and alum dose. Micro-flocculation played an important role in a rapid mixing process.

횡단가스 유동에 분사되는 액체제트의 분무특성 (Characteristic of Liquid Jet in Subsonic Cross-flow)

  • 고정빈;이관형;구자예
    • 한국분무공학회지
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    • 제10권1호
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    • pp.35-42
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    • 2005
  • The present study has numerically and experimentally investigated the spray behavior of liquid jet injected in subsonic cross-flow. The corresponding spray characteristics are correlated with jet operating parameters. The spray dynamics are known to be distinctly different in the three regimes: the column, the ligament and the droplet regimes. The behaviors of column, penetration and breakup of liquid jet have been studied. Numerical and physical models are base on a modified KIVA code. The primary atomization is represented by a wave model base on the KH(Kelvin-Helmholtz) instability that is generated by a high interface relative velocity between the liquid and gas flows. In odor to capture the spray trajectory, CCD camera has been utilized. Numerical and experimental results indicate that the breakup point is delayed by increasing gas momentum ratio and the penetration decreases by increasing Weber number.

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EGR을 사용하는 직접분사식 디젤엔진의 연소과정 및 매연가스 배출특성에 대한 수치해석 (Numerical studies for combustion processes and emissions in the DI diesel engines using EGR)

  • 권영동;이재철;김용모;김세원
    • 대한기계학회논문집B
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    • 제21권5호
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    • pp.659-669
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    • 1997
  • The effects of exhaust gas recirculation on diesel engine combustion and soot/NOx emissions are numerically studied. The primary and secondary atomization is modelled using the wave instability breakup model. Autoignition of a diesel spray is modelled using the Shell ignition model. Soot formation is kinetically controlled and soot oxidation is represented by a model which account for surface chemistry. The NOx formation is based on the extended Zeldovich NOx model. Effects of injection timing and concentration of $O_{2}$ and CO$_{2}$ on the pollutant formation and the combustion process are discussed in detail.

희박연료 직접분사(Lean Direct Injection) 가스터빈 연소기의 이상유동 분석 (The Analysis of Two-phase Flow in a Lean Direct Injection Gas-turbine Combustor)

  • 이교빈;김종찬;성홍계
    • 한국항공우주학회지
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    • 제47권3호
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    • pp.204-211
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    • 2019
  • 희박연료 직접분사(Lean Direct injection(LDI)) 가스터빈 연소기에 대한 이상유동 특성을 해석하였다. LDI 연소기에 적용된 환형분사기(hollow-cone spray injector)의 분열을 모사하기 위해 분열모델(Linearized Instability Sheet Atomization(LISA), Aerodynamically Progressed Taylor Analysis Breakup(APTAB)을 적용하였다. 침투깊이와 평균입도(Sauter Mean Diameter(SMD))를 통해 분열모델을 검증하였으며, LDI 연소기에 적용하여 이상유동특성을 분석하였다. 스월인젝터로 인해 Precessing Vortex Core(PVC)가 발생하였으며, 액적들이 PVC를 따라 미립화되는 것을 확인하였다. SMD 결과를 통해 PVC가 회전하는 영역의 외곽으로 즉, 빠른 속도 영역에 액적들이 분포하며, 스톡스수(Stokes number)는 1보다 작다.

액체로켓엔진에 장착되는 스월 분사기의 분무 모델 개발 및 검증 (Development and Validation of Spray Model of Coaxial Swirl Injector Installed in Liquid Propellant Rocket Engine)

  • 문윤완;설우석
    • 한국추진공학회지
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    • 제11권5호
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    • pp.37-50
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    • 2007
  • 본 연구에서는 액체 추진제 로켓엔진의 연소기에 주로 사용되는 액체 동축 스월형 분사기의 분무특성을 예측할 수 있는 모델을 개발하여 분무 연소장을 계산하기위하여 개발된 KIVA의 환경에 적합하도록 유도하였다. 액막의 분열에는 선형 안정성 이론을 도입하여 장파와 단파의 영역을 모두 고려할 수 있는 모델을 개발하였고 점성이 고려된 수력학적 해석을 통해 초기의 액막 두께와 분무각 및 분사 속도를 예측하였다. 또한 개발된 분무 모델에 대한 난류 모델의 적합성을 평가하여 RNC $k-{\varepsilon}$ 모델이 적합함을 알았다. 이러한 모델의 평가를 바탕으로 액체로켓엔진에 장착되는 분사기에서 생산되는 분무의 특성을 실험 결과와 비교하였고, 분열 길이, 분무각 및 SMD가 정성적, 정량적으로 잘 일치하는 것을 알 수 있었다.

벽면 충돌 분사에 의한 DI디젤엔진 배기가스 특성의 수치해석적 연구 (A Numerical Study on the emission Characteristics of DI Diesel Engine by Wall Impingement of Spray)

  • 최성훈;황상순
    • 한국자동차공학회논문집
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    • 제6권3호
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    • pp.97-105
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    • 1998
  • High pressure injection is recently used to reduce the emissions and increase the power of DI diesel engine. This high pressure injection makes the spray strike the cylinder wall. This spray/wall impingement is known to affect the emission and performance of DI diesel engine such that it is very important to know the spray/wall impingement process. In this study, multidimensional computer program KIVA-II was used to clarify the effect of spray wall impingement by different injection spray angle with the spray/wall impingement model consiedering rebound and slide motion and also the improved submodel for liquid breakup, drop distortion model.

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