• 제목/요약/키워드: 분열모델

검색결과 95건 처리시간 0.028초

디젤분무에 대한 액체미립화모델들의 영향 (The Influence of Liquid Atomization Models on Diesel Sprays)

  • 이성혁;유홍선;홍기배
    • 한국자동차공학회논문집
    • /
    • 제8권6호
    • /
    • pp.22-30
    • /
    • 2000
  • The present article deals with comparisons of published liquid breakup models for diesel sprays to analyze the influence of breakup models on various spray parameters. The three different models tested in this study are the surface wave instability (Wave) model, the Taylor analogy breakup (TAB) model, and the drop drag model(DDM). The numerical results using these models are compared with several experimental data to assess the prediction capabilities of breakup models. Additional task in this study is to investigate effects of the breakup time constant in the Wave model on the spray parameters because the spray behavior is sensitive to the breakup time constant. It is seen that there is uncertainly about the breakup time constant indicating that the suitable acceptance of the constant is important, and the TAB model generally shows significant under-prediction of Sauter Mean Diameter(SMD). In addition, it may be indicated that differences between the DDM and Wave model are not significant, showing that the DDM may be suitable for air-assisted atomization rather than pressure atomization.

  • PDF

디젤기관 연료분무의 분열 현상에 대한 수치해석적 연구 (A Numerical Study on the Break-up of the Fuel Spray in Diesel Engine)

  • 양희천;최영기;유홍선
    • 한국자동차공학회논문집
    • /
    • 제3권6호
    • /
    • pp.8-22
    • /
    • 1995
  • Three dimensional numerical study of non-evaporating and evaporating spray characteristics was performed in a quiescent and motoring condition of direct injection diesel engine. The calculation parameter was breakup model. The breakup models used were Reitz & Diwakar model and TAB model. The modified k-${\varepsilon}$ turbulence model considering the compressibility effect due to the compression and expansion of piston was used. The calculation results of the spray tip penetration and tip velocity using the TAB model showed similar trends comparing with the experimental data. Although the evaporation rate was not nearly affected with the breakup model at the higher injection pressure, in the low injection case, the evaporation rate result using the TAB model became higher than that of R&D model. The evaporation rate was increased with the injection pressure due to the vigorous interaction with the gas field.

  • PDF

초음속기체-금속액체 분사기의 미립화 과정에 대한 수치해석 (Numerical Study on the Atomization Process of a Supersonic Gas-Metallic Liquid Atomizer)

  • 황원섭;김귀순;최정열
    • 한국항공우주학회지
    • /
    • 제44권7호
    • /
    • pp.593-602
    • /
    • 2016
  • 본 연구에서는 근접연계방식의 초음속기체 금속분말 미립화장치에 대한 수치해석을 수행하였다. 액체금속의 미립화 과정에서 발생하는 1, 2차 액적분열을 모사하기 위해서 난류 모델을 선정하고 VOF(Volume of Fluid), DPM(Discrete Phase Model) 해석을 차례대로 수행하였다. 해석결과, Level-Set function 분포도를 통해 1차 분열액적의 직경을 계산할 수 있었으며 이 데이터를 DPM 해석에 반영해 도메인 출구에서 수집된 입자들의 최종직경분포를 확인할 수 있었다.

스트림 데이타 예측을 위한 슬라이딩 윈도우 기반 점진적 회귀분석 (Incremental Regression based on a Sliding Window for Stream Data Prediction)

  • 김성현;김룡;류근호
    • 한국정보과학회논문지:데이타베이스
    • /
    • 제34권6호
    • /
    • pp.483-492
    • /
    • 2007
  • 최근 센서 네트워크의 발달로 실세계의 많은 데이타가 시간 속성을 갖고 실시간으로 수집되고 있다. 기존의 시계열 데이타 예측 기법은 모델 갱신 없이 예측을 수행하였다. 그러나 스트림 데이타는 매우 빠르게 수집이 되고 시간이 지남에 따라 데이타의 특성이 변경될 수 있으므로 기존의 시계열 예측 기법을 적용하는 것은 적절하지 않다. 따라서 이 논문에서는 슬라이딩 윈도우와 점진적인 회귀분석을 이용한 스트림 데이타 예측 기법을 제안한다. 이 기법은 스트림 데이타를 다중 회귀 모델에 입력하기 위해 차원 분열을 통해 여러 개의 속성으로 분열(Fractal)하고, 변화되는 데이타의 분포를 반영하기 위해 슬라이딩 윈도우 기법을 사용하여 점진적으로 회귀 모델을 갱신한다. 또한 고정 크기 큐를 이용하여 최근의 데이타로만 모델을 유지한다. 이전 데이타의 유지 없이 최소 정보를 갖는 행렬을 통해 모델을 갱신하므로 낮은 공간 복잡도를 갖고 점진적으로 모델을 갱신함으로써 에러율의 증가를 방지한다. 제안된 기법의 타당성은 RME(Relative Mean Error)와 RMSE(Root Mean Square Error)를 이용하여 측정하였고, 실험 결과 다른 기법에 비해 우수하였다.

디젤분무에서 미립화 및 액적분열모델의 예측능력평가 (Assessment of Prediction Ability of Atomization and Droplet Breakup Models on Diesel Spray Dynamic)

  • 김정일;노수영
    • 한국분무공학회지
    • /
    • 제5권2호
    • /
    • pp.35-42
    • /
    • 2000
  • A number of atomization and droplet breakup models have been developed and used to predict the diesel spray characteristics. Of the many atomization and droplet breakup models based on the breakup mechanism due to aerodynamic liquid and gas interaction, four models classified as mathematical models, such as TAB, modified TAB, DDB, WB and one of the hybrid model based on WB and TAB models were selected for the assessment of prediction ability of diesel spray dynamics. The assessment of these models by using KIVA-II code was performed by comparing with the experimental data of spray tip penetration and sauter mean diameter(SMD) from the literature. It is found that the prediction of spray tip penetration and SMD by the hybrid model was only influenced by the initial parcel number. All the atomization and droplet breakup models considered here was strongly dependent on the grid resolution. Therefore it is important to check the grid resolution to get an acceptable results in selecting the models. At low injection pressure, modified TAB model could only give the good agreement with experimental data of spray tip penetration and both of modified TAB and DDB models were recommendable for the prediction of SMD. At high injection pressure, hybrid model could only give the good agreement with the experimental data of spray tip penetration and the prediction of all of the selected models did not match the experimental data. Spray tip penetration was increased with the increase the $B_1$ and the increase of $B_1$ did not affected the prediction of SMD.

  • PDF

초임계 탄화수소계열 혼합유체의 이중 충돌 제트 분무 가시화 (Visualization of Doublet Impinging Jet Spray in Supercritical Mixed Hydrocarbon Fluid)

  • 송주연;최명환;안정우;구자예
    • 한국추진공학회지
    • /
    • 제25권4호
    • /
    • pp.53-58
    • /
    • 2021
  • 대체모델을 사용한 탄화수소계열 혼합유체를 아임계 및 초임계 상태에서 이중 충돌 분무를 통해 분무 메커니즘을 가시화하여 분석하였다. 임계압력과 온도가 다른 데칸과 메틸사이클로헥산을 대체모델로 선정하였다. 챔버 내부에 이중 충돌 인젝터를 설치하여 아임계 및 초임계 상태에서 고속카메라를 통해 분무를 가시화하였다. 혼합유체의 분사 및 챔버 환산압력은 Pr(P/Pc)=1로 유사하게 유지하였으며 Tr(T/Tc)은 0.48에서 1.02까지 증가시켰다. Tr이 증가할수록 혼합유체의 물성치가 각각의 임계점에 도달하여 분무각은 증가하고 시트분열길이는 감소하였다. 또한 혼합 유체가 모두 근임계점에 도달하였을 때 이중 충돌 분열 메커니즘에서 벗어나 밀도 구배의 변화가 크게 관측됨을 보였다.

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
    • /
    • 대한기계학회 2007년도 춘계학술대회B
    • /
    • pp.3467-3472
    • /
    • 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.

  • PDF

혼합모델에 의한 GDI 분무예측의 비교 (Comparison of GDI Spray Prediction by Hybrid Models)

  • 강동완;황순철;김덕줄
    • 대한기계학회논문집B
    • /
    • 제27권12호
    • /
    • pp.1744-1749
    • /
    • 2003
  • The purpose of this study is to obtain the information about the development process of GDI spray. To acquire the characteristics of GDI spray, the computational study of hollow cone spray for high-pressure swirl injectors was performed. Several hybrid models using the modified KIVA code have been introduced and compared. WB model and LISA model were used for the primary breakup, and DDB and APTAB models were used for secondary breakup. To compare with the calculated results, the experimental results such as cross-sectional images and SMD distribution were acquired by laser Mie scattering technique and Phase Doppler Analyzer respectively. The results show that LISA+APTAB hybrid model has the best prediction for spray formation process.

분위기 조건에 따른 GDI 엔진용 인젝터의 분무거동 및 증발특성에 대한 수치적 해석 (Numerical Analysis of Spray Behavior and Vaporization Characteristic of GDI Engine Injector Under Ambient Conditions)

  • 심영삼;황순철;김덕줄
    • 대한기계학회논문집B
    • /
    • 제28권5호
    • /
    • pp.545-552
    • /
    • 2004
  • The purpose of this study is to improve the prediction ability of the atomization and vaporization processes of GDI spray. Several models have been introduced and compared. The atomization process was modeled using hybrid breakup model that is composed of Linearized Instability Sheet Atomization (LISA) model and Aerodynamically Progressed TAB (APTAB) model. The vaporization process was modeled using Spalding model and Abramzon & Sirignano model. Exciplex fluorescence method was used for comparing calculated with experimental results. The experiment and computation were performed at the ambient pressure of 0.1 MPa, 0.5 MPa and 1.0 MPa and the ambient temperature of 293k and 473k. Comparison of calculated and experimental spray characteristics was carried out and the calculated results of GDI spray showed good agreement with experimental results.

디젤분무의 모델에서 액적의 형상 및 수밀도의 영향에 관한 연구 (The Effects of Initial Droplet Shape and Number Density on Modeling of Non-evaporating Diesel Sprays)

  • 원영호
    • 한국분무공학회지
    • /
    • 제7권2호
    • /
    • pp.22-30
    • /
    • 2002
  • A number of droplet breakup models have been developed to predict the diesel spray. The capabilities of droplet deformation and breakup models such as TAB, ETAB, DDB and APTAB models are evaluated in modeling the non-evaporating diesel sprays injected into atmosphere. New methods are also suggested that take into account the non- spherical shape of droplets and the reduced drag force by the presence of neighbouring droplets. The KIVA calculations with standard ETAB, DDB, and APTAB models predict well the spray tip penetrations of the experiment, but overestimate the Sauter mean Diameter(SMD) of droplets. The calculation with non spherical droplets injected from the nozzle shows very similar results to the calculation with spherical droplets. The drag coefficient which is linearly increased with the time after start of injection during the breakup time gives the smaller SMD that agrees well with the experimental result.

  • PDF