• 제목/요약/키워드: Gas-liquid two-phase

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진동하는 유동장하에서 내부 순환 유동을 고려한 액적의 증발에 관한 수치적 연구 (A numerical study on the vaporization of a droplet considering internal circulating flow in the presence of an oscillating flow)

  • 하만영
    • 대한기계학회논문집B
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    • 제20권5호
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    • pp.1700-1716
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    • 1996
  • The two-dimensional, unsteady, laminar conservation equations for mass, momentum, energy and species transport in the gas phase and mass, momentum and energy in the liquid phase are solved simultaneously in spherical coordinates in order to study heating and vaporization of a droplet entrained in the oscillating flow. The numerical solution gives the velocity and temperature distribution in both gas and liquid phase as a function of time. When the gas flow oscillates around an vaporizing droplet, the liquid flow circulates in the clockwise or counterclockwise direction and the temperature distribution in the liquid phase changes its shapes, depending on the gas fow direction. When the gas flow changes its direction of circulating liquid flow is opposite to the gas flow, forming two vortex circulating in the opposite direction. During the heating period, the difference in the maximum and minimum temperature is large, followed by the almost uniform temperature slightly below the boiling temperature. The mass and heat transfer from the droplet depend on the droplet temperature, droplet diameter and the magnitude of relative velocity, giving the droplet lifetime different from the d$^{2}$-law.

Numerical Analysis of Plume Characteristics and Liquid Circulation in Gas Injection Through a Porous Plug

  • Choi, Choeng-Ryul;Kim, Chang-Nyung
    • Journal of Mechanical Science and Technology
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    • 제14권12호
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    • pp.1365-1375
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    • 2000
  • Two phase flows have been numerically calculated to analyze plume characteristics and liquid circulation in gas injection through a porous plug. The Eulerian approach has been for formulation of both the continuous and dispersed phases. The turbulence in the liquid phase has been modeled using the standard $textsc{k}$-$\varepsilon$ turbulence model. The interphase friction coefficient has been calculated using correlations available in the literature. The turbulent dispersion of the phase has been modeled by the "dispersion Prand시 number". The predicted mean flows is compared well with the experimental data. The plume region area and the axial velocities are increased with the gas flow rate and with the decrease in the inlet area. The turbulent intensity also shows the same trend. Also, the space-averaged turbulent kinetic energy for various gas flow rates and inlet areas has been obtained. The results are of interest in the design and operation of a wide variety of materials and chemical processing operations.

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잠겨진 가스분사장치에서의 2상유동의 열수력학적 특성 (Thermohydraulic Characteristics of Two-Phase Flow in a Submerged Gas Injection System)

  • 최청렬;김창녕
    • 대한기계학회논문집B
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    • 제23권10호
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    • pp.1327-1339
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    • 1999
  • Characteristics of two-phase flow and heat transfer were numerically investigated in a submerged gas Injection system. Effects of both the gas flow rate and bubble size were investigated. In addition, heat transfer characteristic and effects of heat transfer were investigated when temperature of the injected gas was different from that of the liquid. The Eulerian approach was used for the formulation of both the continuous and the dispersed phases. The turbulence in the liquid phase was modeled by the use of the standard $k-{\varepsilon}$ turbulence model. The interphase friction and heat transfer coefficient were calculated by means of correlations available in the literature. The turbulent dispersion of the phases was modeled by introducing a "dispersion Prandtl number". The plume region and the axial velocities are increased with increases in the gas flow rate and with decreases in the bubble diameter. The turbulent flow field grows stronger with the increases in the gas flow rate and with the decreases in the bubble diameter. In case that the heat transfer between the liquid and the gas is considered, the axial and the radial velocities are decreased in comparison with the case that there is no temperature difference between the liquid and the gas when the temperature of the injected gas is higher than the mean liquid temperature. The results in the present research are of interest in the design and the operation of a wide variety of material and chemical processes.

기체주입을 이용한 와류형 분사기들에서의 가변추력 연구 (A Study on the Thrust Throttling Using Gas Injection in Swirl Injectors)

  • 이원구;윤영빈;안규복
    • 한국분무공학회지
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    • 제23권4호
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    • pp.159-168
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    • 2018
  • Thrust throttling in a liquid rocket engine can be implemented via several ways such as high pressure drop injector, dual manifold, multiple chamber, pintle injector, and gas injection. Thrust throttling using gas injection controls thrust by usually injecting inert gas into propellant through an aerator to reduce the propellant's bulk density. In this study, the outside-in aerator was used in the propellant line to create two phase flow. Closed-type, open-type, and screw-type bi-swirl coaxial injectors were utilized for investigating throttling characteristics such as pressure drop, mixture density, and discharge coefficient according to gas-liquid mass ratio.

난류 횡단류에 수직 분사 되는 액주의 분열 및 기화 특성에 관한 LES (LES of Breakup and Atomization Characteristics of a Liquid Jet into Cross Turbulent Flow)

  • 양승준;구자예;성홍계
    • 한국추진공학회지
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    • 제14권2호
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    • pp.1-9
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    • 2010
  • 난류 유동장으로 분사되는 액체 제트의 액주 분열과 액적 미립화 현상에 관한 LES를 수행하였다. 기체상태의 공기 유동해석에 Eulerian 해법을 사용하고, 액적 추적을 위하여 Lagrangian 해법을 사용하여 기체-액체간 이상유동(two phase flow) 해석을 수행하였다. 액적 분열 과정 모사에 blob-KH 분열 모델을 적용하여 액주와 액적의 분열이 관찰되었다. 일정한 공기 유동 조건에서 액체 분사 속도 변화를 통한 액체-기체 운동량 플럭스 비의 변화에 따른 액체 제트의 침투깊이를 조사하였으며 실험결과와 유사함을 알 수 있었다. 분사 제트의 분열에 따라 유동장에 존재하는 액적의 분포를 Sauter 평균 입경(SMD)의 분석을 통해 수행하였다.

액체-기체 2상 유동장의 정확하고 강건한 해석 Part 1: 충격파 안정적인 2상 유동 수치기법의 개발 (Accurate and Robust Computations of Gas-Liquid Two-Phase Flows Part 1: Development of Shock-Stable Two-Phase Schemes)

  • 임승원;김종암
    • 한국항공우주학회지
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    • 제37권1호
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    • pp.1-16
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    • 2009
  • 최근 공학적으로 응용 범위가 넓은 액체-기체의 2상 유동장에 대한 전산 해석이 주목을 받고 있다. 본 연구에서는 밀도차가 큰 압축성 2상 유동장을 해석하기에 적합하도록 기존에 개발된 RoeM과 AUSMPW+ 공간 이산화 기법을 확장하였다. RoeM과 AUSMPW+에서 사용되는 충격파 포착항을 2상 혼합류의 상태방정식으로부터 새롭게 정의하여, 밀도와 음속이 상이한 두 유체에서도 정확성을 보장하면서 충격파 불안정성을 제거할 수 있도록 하였다. 개발된 2상 유동 RoeM과 AUSMPW+를 몇 가지 예제 문제에 적용하여 검증하였으며, 해석 결과는 두 수치기법이 일반적인 2상 유동에서도 충격파 안정적이며 정확한 특성을 갖는 것을 보여주었다.

OMACON형 LM-MHD 시스템에서의 에너지전환특성 시뮬레이션 (Simulation of Energy Conversion Characteristics of OMACON LM-MHD Systems)

  • 김창녕
    • 한국시뮬레이션학회논문지
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    • 제6권2호
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    • pp.1-14
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    • 1997
  • The characteristics of the flow and energy conversion in OMACON liquid-metal MHD system are investigated. Numerical simulation of two-phase flow in the OMACON system without magnetic field was carried out by the Phoenics code and the energy conversion characteristics are studied in association with the fact that the mechanical energy loss at the nozzle of the OMACON system are to be converted into electrical energy. In this system, working fluid (gas) is injected through the mixer located at the bottom of the riser, and is mixed with hot liquid metal. Therefore in the riser two-phase flow is developed under the influence of the gravity. In this study, the interaction between the gas and liquid is considered by the use of IPSA(InterPhase Slip Algorithm) where standard drag coefficient has been used. It has been assumed that in the flow regime the liquid is continuous and the gas is dispersed. For the liquid and gas, the continuity equations, momentum equations and energy equations are solved respectively in association with void fraction in the flow field. In order to calculate the energy conversion efficiency, firstly the ratio of the mechanical energy loss of liquid metal flow at the nozzle to the input thermal energy is considered. Secondly flow pattern of liquid metal in the generator has been analyzed, and the characteristics of the conversion of the mechanical energy into the electrical energy has been investigated. For an representative case where Hartmann number is 540 and magnetic field is 0.35 T, the present analysis shows that the energy conversion efficiency is 0.653. This result is considered to be reasonable in comparison with published experimental results.

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Riser의 기액유동 특성에 따른 Air-lift 펌프의 성능예측 (A Prediction of the Air-lift Pump Performance by gas-liquid Flow Charac teristics of Riser)

  • 박찬수
    • Journal of Advanced Marine Engineering and Technology
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    • 제23권2호
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    • pp.252-258
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    • 1999
  • As an effective means to convey crushed materials from seabed to on board ship and to raise hazardous or abrasive liquids air-lift pump provides a reliable mechanism due to its simple config-uration and easy-to-operate principle. The present study is focused on fundamental investigation of related performance by the analysis program based on the gas-liquid two-phase flow in circular pipes. The program covers pump operating in isothermal and vertical two-phase flow with Newto-nian liquids. it is summarized as important result that an optimum air mass flow rate exists for the maximum lifted liquid mass flow rate in terms of a given submergence rates and furthermore attachment of downcomer gives little effects on riser performance the conveyed liquid flow rate increases with larger submergence rate.

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LES 해석에서 액체제트의 분열에 대한 확률론적 분열 모델링 비교 (Stochastic Model Comparison for the Breakup and Atomization of a Liquid Jet using LES)

  • 유영린;성홍계
    • 한국항공우주학회지
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    • 제45권6호
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    • pp.447-454
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    • 2017
  • 난류 유동장으로 분사되는 두가지 형태의 액체 제트 (수평분사는 디젤연료와 수직분사는 물)의 액주 분열과 미립화 현상에 관한 이상(Two-phase) 유동에 대해 3차원 LES 수치해석을 수행하였다. 기체상태의 공기 유동은 오일러리안 해법을 사용하고, 액체 제트의 액적 추적은 라그랑지안 해법을 사용하여 기체-액체간 이상유동 해석을 수행하였다. 두 종류의 확률론적 분열 모델(Stochastic breakup model)을 사용하여 액적 분열을 모사하였으며, 액체제트의 침투깊이와 액적 분포(Sauter Mean Diameter)를 실험결과와 비교하여 미세하게 분열되는 액체 제트의 분열 현상에 대해 확률론적 분열 모델링의 적합성을 제시하였다.

기체-액체 이젝터 유동의 가시화와 광섬유 탐침에 의한 기포분율 측정 (Visualization of Gas/liquid Ejector Flow and Void Fraction Measurement using Fiber Optic Probe)

  • 최성환;지호성;김경천
    • 한국가시화정보학회지
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    • 제11권1호
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    • pp.34-40
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    • 2013
  • Gas/liquid two-phase ejector is a device without moving parts, in which liquid is used to drive gas of a low-pressure source. In this paper, the hydrodynamic characteristics of a vertical down type two-phase ejector were studied using an air-water loop system. Entrained air flow rates were measured with inlet and outlet pressures of the ejector with varying water flow rate. Homogeneous bubbly flows in the discharge pipe were confirmed by the high speed flow visualization method. Quantitative measurements of void fraction were made using a newly developed fiber optic probe system.