• 제목/요약/키워드: Impinging Spray

검색결과 151건 처리시간 0.026초

벽면에 충돌하는 분무의 미립화에 관한 수치적 모델 (A Numerical Model for Atomization of an Impinging Spray on the Wall)

  • 조미옥;허강열
    • 한국분무공학회지
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    • 제2권1호
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    • pp.36-45
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    • 1997
  • A spray-wall impingement model for fuel sprays is proposed and implemented as a module into the KIVA-POSTECH code. The model is based on the single droplet experiments. The droplet behaviors after impingement are determined from experimental correlations. Different behaviors of impinged droplets depend on the wall temperature and the critical temperature of the fuel. Fuel film formation is taken into account so that the model can be applicable to any wall temperature and injection conditions. Computational results on a normal and on inclined wall are in good agreement for the spray shape and penetration. More validation against experiments and development of the heat transfer model are needed for further improvement.

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디젤 분무 거동에 관한 수치 해석적 연구 (Numerical Analysis of Sprays in the Combustion Chamber of Diesel Engine)

  • 차경세;최종욱;박찬국
    • 한국전산유체공학회지
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    • 제5권1호
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    • pp.8-13
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    • 2000
  • In this study, the spray models incorporated into the GTT code were tested for sprays injected in quiescent swirling gases and for the sprays impinging on a flat wall, and the validity of the models has been confirmed by comparing the calculated results with the experimental data. Using this code, the gas flow, spray behavior and fuel vapor distributions in the combustion chamber of a D.I engine have been numerically analyzed with respect to the constant injection pressure and the injection pressure varying with injection time.

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충돌분무 액막의 열전달 해석모델을 고려한 범용 열/유체 프로그램 NUFLEX의 개발 (Development of a general purpose thermo/fluid flow analysis program NUFLEX with heat transfer analy sis model of impinging liquid film)

  • 김현정;노경철;유홍선;허남건
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 춘계학술대회논문집
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    • pp.71-74
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    • 2008
  • NUFLEX is a general purpose thermo/fluid flow analysis program which has various physical models including spray. In NUFLEX, spray models are composed of breakup and collision models of droplet. However, in case of diesel engine, interaction between wall-film and impingement model considering heat transfer is not coded in NUFLEX. In this study, Lee & Ryou impingement & wall-film model considering heat transfer is applied to NUFLEX. For the verification of this NUFLEX program, numerical results are compared with experimental data. Differences of film thickness and radius between numerical results and experimental data are within 10% error range. The results show that NUFLEX can be used for comprehensive analysis of spray phenomena.

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액상 충돌 제트의 혼합에 대한 분사공 직경비의 영향 (Effect of Orifice Diameter Ratio on Unlike Impinging Jet Mixing)

  • 이성웅;조용호;유병일
    • 한국분무공학회지
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    • 제11권4호
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    • pp.220-227
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    • 2006
  • Experimental studies has been conducted to investigate the effect of orifice diameter ratio on the mixing characteristics of the split element of doublet and triplet elements. The spray characteristics of non-reacting immiscible liquids have been investigated using a patternator. The local volume fraction is measured by use of mean value of each component. This volume measurement represents the mixing characteristics of the liquid, which affect the overall combustion efficiency. The ratio of the orifice diameter, ranging from 1 to 1.5, and that of the jet-momentum, ranging from 0.5 to 6.0, we used. The jet impinging behavior with use of various ratios exhibits substantially different mixing characteristics. Mixing efficiency is maximized when the jet-momentum ratio is increased; this behavior is particularly prominent when the orifice diameter ratio is greater than unity. The split of the triplet element yields better mixing characteristics and is more effective than that of the doublet element in regard to achieving high combustion efficiency. The optimum mixing factor for the triplet element is found to be 0.75, according to our measurement.

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Development and Application of a New Spray Impingement Model Considering Film Formation in a Diesel Engine

  • Ryou, Hong-Sun;Lee, Seong-Hyuk;Ko, Gwon-Hyun;Hong, Ki-Bae
    • Journal of Mechanical Science and Technology
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    • 제15권7호
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    • pp.951-961
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    • 2001
  • The present article presents an extension to the computational model for spray/wall interaction and liquid film processes that has been dealt with in the earlier studies (Lee and Ryou, 2000a). The extensions incorporate film spread due to impingement forces and dynamic motion induced by film inertia to predict the dynamic characteristics of wall films effectively. The film model includes the impingement pressure of droplets, tangential momentum transfer due to the impinging droplets on the film surface and the gas shear force at the film surface. Validation of the spray/wall interaction model and the film model was carried out for non-evaporative diesel sprays against several sources of experimental data. The computational model for spray/wall interactions was in good agreement with experimental data for both spray radius and height. The film model in the present work was better than the previous static film model, indicating that the dynamic effects of film motion should be considered for wall films. On the overall the present film model was acceptable for predication of the film radius and thickness.

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A Numerical Study on the Spray-to-Spray Impingement System

  • Lee, Seong-Hyuk;Ko, Gwon-Hyun;Ryou, Hong-Sun
    • Journal of Mechanical Science and Technology
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    • 제16권2호
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    • pp.235-245
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    • 2002
  • The present article aims to perform numerical calculations for inter-spray impingement of two diesel sprays under a high injection pressure and to propose a new hybrid model for droplet collision on the basis of literature findings. The hybrid model is compared with the original O'Rourke's model, which has been widely used for spray calculations. The main difference between the hybrid model and the O'Rourke's model is mainly in determination of the collision threshold condition, in which the preferred directional effect of droplets and a critical collision radius are included. The Wave model involving the cavitation effect inside a nozzle is used for predictions of atomization processes. Numerical results are reported for different impingement angles of 60°and 90°in order to show the influence of the impinging angle on spray characteristics and also compared with experimental data. It is found that the hybrid model shows slightly better agreement with experimental data than the O'Rourke's model.

액체-액체 스월 동축형 인젝터의 분무특성 Part II : 리세스 형상에 따른 영향 (Spray Characteristics of a Liquid-Liquid Swirl Coaxial Injector Part II : Effect of Recess Configuration)

  • 김동준;김성혁;한풍규;윤영빈
    • 한국추진공학회지
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    • 제10권3호
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    • pp.9-17
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    • 2006
  • 본 연구는 케로신-LOX를 추진제로 하는 액체로켓엔진용 스월 동축형 인젝터의 리세스 길이에 따른 분무특성 파악을 목표로 하였다. 리세스 길이에 따른 두 추진제의 내부충돌현상에 의한 ripple의 형성과 감쇠가 인젝터 외부의 분무안정성에 영향을 미치므로 분무특성과 큰 연관성을 가진다. 또한, 리세스 길이가 증가함에 따라 평균액적크기는 증가하였으며, 혼합효율은 증가하다가 최대값에 도달한 후 다시 감소하는 경향성을 보였다.

초고속 발사체의 액체 저장부 충돌에 의한 초음속 액체 제트의 분무 속도 및 분열 특성 (Spray Angle and Break-up Characteristics of Supersonic Liquid Jets by an Impinging Methods with High Speed Projectile)

  • 이인철;신정환;김희동;구자예
    • 한국가시화정보학회지
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    • 제9권1호
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    • pp.55-60
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    • 2011
  • Pulsed supersonic liquid jets injected into an ambient air are empirically studied by using a high pressure ballistic range system. Ballistic range systems which are configured with high-pressure tube, pump tube, launch tube and liquid storage nozzle. Experimental studies are conducted to use with various impact nozzle geometry. Supersonic liquid jets are generated by an impact of high speed of the projectile. High speed liquid jets are injected with M = 3.2 which pressure is 1.19 GPa. Multiple jets which accompany with shock wave and pressure wave in front of the jet were observed. The shock-wave affects significantly atomization process for each spray droplets. As decreasing orifice diameter, the averaged SMD of spray jets had the decreasing tendency.

평판에 충돌하는 디젤분무의 부착특성 (Adhering Characteristics of Diesel Spray Impinging to a Flat Wall)

  • 고경남;허종철
    • 동력기계공학회지
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    • 제9권3호
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    • pp.21-25
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    • 2005
  • 디젤분무가 연소실 벽에 충돌할 때의 연료부착특성을 파악하기 위하여 평판에 충돌하는 디젤 분무의 부착특성을 실험적으로 연구하였다. 투명 아크릴판을 이용하여 연료액막과 충돌분무를 동시에 촬영하였고, 충돌분무의 성장에 따른 연료액막의 성장도 함께 측정되었다. 부착된 연료는 연료액막 및 부착액적들로 나누어서 측정할 수 있었으며 그 결과 연료액막 주변에 무수한 연료액적이 부착함을 알 수 있었다. 시간에 따른 부착연료비를 예측하기 위하여 몇 가지 가정이 사용되었다. 그 결과 시간경과에 따른 부착연료비를 충돌거리 10mm, 30mm, 50mm에 대하여 예측할 수 있었다.

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이중 충돌제트의 혼합 성능 연구 (Mixing Performance of Unlike Doublet Impinging Liquid Jets)

  • 조용호;이성웅;윤웅섭
    • 한국항공우주학회지
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    • 제31권4호
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    • pp.82-91
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    • 2003
  • 이중 충돌형(unlike doublet impinging) 분사기의 직경변화에 따른 혼합특성을 모사 추진제에 의한 실험적인 방법으로 연구하였다. 분사유동은 레이놀즈수 2,500부터 12,000 사이의 난류제트를 사용하였으며, 분사공 직경 비를 1부터 1.5까지 확대시켜 직경변화에 따른 혼합특성을 고찰하였다. 분사공의 형상변수는 최적의 혼합특성을 갖는 설계치로 고정하였으며, 대기압 하의 분사유동장의 공기역학적 영향은 배제하였다. 매개변수로서 운동량비를 사용하여 혼합효율의 변화(mixing doublet impinging)를 고찰하였으며, 패터네이터(patternater)를 사용하여, 연료와 산화제의 국소 질량분포 측정 및 혼합비 분포를 측정하였다. 운동량비와 혼합효율의 상관성을 침투정도로 고려하여 연료와 산화제의 속도비와 혼합효율의 상관성을 고찰하였다. 분사공 직경이 증가됨에 따라 최대 혼합효율점이 운동량비가 증가되는 방향으로 이동함을 보였으며, 연료와 산화제의 속도 비 0.65~0.7영역에서 분사공 직경변화와 무관하게 혼합효율이 최대가 되었다. 또한 혼합효율은 추진제의 분사 충돌 시 상대제트의 침투 깊이 정도에 따라 큰 영향을 받는 것으로 나타났다.