• 제목/요약/키워드: 액막증발

검색결과 27건 처리시간 0.019초

MED 담수기내 수평관 강하막식 증발기의 3D 수치해석적 연구 (3D Numerical Study of Horizontal Falling Film Evaporator in Multi Effect Distillation (MED) Plant)

  • 김수재;제준호;김무환
    • 대한기계학회논문집B
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    • 제37권5호
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    • pp.513-522
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    • 2013
  • 본 연구에서는 다중효용 증발식 담수기에 쓰이는 강하막식 증발기의 수치해석을 수행하였다. 증발기에 사용되는 다관군을 다공성 매질로 묘사하고 공간평균 개념을 적용하였다. 증발기 내부의 유동계산 및 열 전달로 인한 상변화를 계산하기 위해서 FLUENT 와 UDF 가 사용되었다. 작동조건에 대한 증발기의 성능변화를 살펴보기 위해 수평관 내 증기 질량 유속을 $0.5{\sim}2.5kg/m^2s$, 관내입구 측 비 응축성 기체의 질량분율을 0~1%, 그리고 수평관 외 뿌려지는 강하막의 액막 레이놀즈 수를 100~1000 으로 바꾸어가며 해석을 수행하였다. 관내 증기유속 및 관외 강하막 레이놀즈 수가 증가할수록 증발량은 증가하였으며, 관내 비 응축성 기체의 질량분율이 1%증가함에 따라 증발량이 0.87%줄어들었다.

원판증발기를 가진 회전형 히트파이프에서 액막두께가 전열에 미치는 영향 (The Effect of Film Thicknesses on Heat Transfer in a Rotating Heat Pipe with the Disc Evaporator)

  • 권순석;장영석;유병욱
    • 대한기계학회논문집
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    • 제18권6호
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    • pp.1572-1581
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    • 1994
  • Heat transfer characteristics in a rotating heat pipe with evaporator of the rotating disc and the condenser of the screwed groove is investigated by numerical method for various dimensionless film thicknesses, Re, C_{p}{\Delta}T/h_{fg}$, rotational speed and working fluids. The temperature difference between evaporator wall and vapor increases a little, but the temperature difference between condenser wall and vapor decreases rapidly as Re increases. As the dimensionless film thickness decreases, the temperature difference of evaporator and condenser decreases. As the rotational speed increases, the temperature difference between evaporator wall and vapor increases but the temperature difference between condenser wall and vapor decreases. The Nusselt number can be shown as a function of dimensionless film thickness and Re, that is $Nu=0.963\cdot(\delta^{-1}(\omega/\vpsilon)^{-1/2}{\cdot}Re^{0.5025})$.

수직관(수직관)내를 흘러내리는 액막식흡수기(液膜式吸收器)의 흡수(吸收) 및 열전달(熱傳達) 특성(特性) (제(第)3보(報), 증발기(蒸發器)의 냉동능력(冷凍能力)과 흡수기(吸收器)의 난방능력(暖房能力)) (Characteristics of Absorption and Heat Transfer for Film Falling along a Vertical Inner Tube (3rd. Report, Refrigerating Capacity in Evaporator and Heating Capacity in Absorber))

  • 엄기찬;카시와기 타카오;서정윤
    • 설비공학논문집
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    • 제6권3호
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    • pp.175-181
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    • 1994
  • This paper deals with the correlation of absorption rate in absorber and evaporation rate in evaporator. The evaporator consists of a copper tube of 10mm dia, and 600mm long and chilled water flowing through the tube is fed by the chilled water circulator. The flowrate of LiBr-water solution in the absorber plays a significant role in determining the magnitude of the heat transfer rate from chilled water to refrigerant There exists a flowrate of solution which has a maximum value of heat transfer. It is interesting to note that the absorption rate of absorber increases with increasing the heat transfer rate of the evaporator. Also, absorption rate increases with evaportation rate, and the ratio(the former/the other) depends on the inlet temperature of LiBr-water solution in the absorber. The heating capacity in the absorber is higher than the refrigerating capacity in the evaporator.

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마이크로핀 관의 기하학적 형상면화에 대한 열전달 특성(II) -증발 열전달- (Heat transfer with geometric shape of micro-fin tubes (II) -Evaporating heat transfer-)

  • 곽경민;장재식;배철호;정모
    • 설비공학논문집
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    • 제11권6호
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    • pp.789-798
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    • 1999
  • The evaporating heat transfer experiments with refrigerant HCFC 22 are performed for performance evaluation using 4 and 6 kinds of microfin tubes with outer diameter of 9.52mm and 7.0mm, respectively. Used microfin tubes have different shape and number of fins with each other, The experimental results are represented with effects of quality, mass flux and EPR. The evaporating heat transfer characteristics are represented by the existence of not only heat transfer area and turbulence promotion effect but also additional other enhancement mechanism, which are the overflow of the refrigerant over the microfin and microfin arrangement. Microfin tubes having a shape which can give much overflow over the microfin show large evaporating heat transfer coefficients. The effect of refrigerant overflow is much severe in evaporation than condensation. The effect of microfin arrangement is related to overflow effect of the refrigerant over the microfin.

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담수화 설비 스프레이 노즐에 대한 실험적 연구 (An Experimental Study of Spray Nozzle Desalination Facility)

  • 신현경;주현태;박민호;박경민;김진영;임진영
    • 한국해양공학회지
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    • 제20권1호
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    • pp.26-31
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    • 2006
  • Experimental research was undertaken to develop a domestic spray nozzle used on equipment for desalination. First, we made a test set-up in order to confirm nozzle efficiency of spray and distribution under different pressure conditions. Then, we found a maximum spray condition after verifying reliability of this facility. An optimum arrangement of the nozzle, based on the test result, was made using CATIA V5 and EXCEL.

습식건조제 이용 제습에서의 증발기 성능인자 영향 연구 (Study on the Effect of Performance Factors on the Evaporator Using Liquid Desiccant Falling Flim for Dehumidification)

  • 박문수
    • 설비공학논문집
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    • 제7권3호
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    • pp.512-520
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    • 1995
  • This study investigates the simultanceous heat and mass transfer between a falling desiccant film and air in cross flow at the interface. The application of this work is the optimization of falling film evaporators for use in potential hybrid air conditioning systems. The specific geometry considered is liquid TEG films falling along the vertical cooled surfaces of a channel with air in cross flow. The equations to describe the coupled heat and mass transfer between a falling desiccant film and air in cross flow for a falling film evaporator have been presented and solved numerically. The effects of important design and operating variables on the evaporator performance predicted by the parametric numerical analysis and suggestions for performance improvements of the evaporator are presented.

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증발부 양단에 테이퍼 응축기를 가진 회전형 히트파이프의 전열 특성 (The Heat Transfer Characteristics of Rotating Heat Pipe with Tapered Condensers in the both Sides of Evaporator)

  • 이기우;이영수;장기창;장영석
    • 설비공학논문집
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    • 제8권1호
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    • pp.13-25
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    • 1996
  • The purpose of this paper is to study heat transfer characteristics of rotating heat pipe with tapered condensers by numerical analysis and experimental method. An experimental investigation has been carried out on thermal resistance between condenser wall and vapor region fo the rotating heat pipe with various taper 0, 1/11.4, 1/38. Heat transfer characteristics by analytical study were applied to describe various Nu numbers on the base of dimensionless condensate film, Re and Pr numbers in both condensers. Comparison between calculated results and experimental data showed qualitatively good agreement and the numerical analysis of this study can be utilized to predict the performance of a rotating heat pipe. The thermal resistance can be decreased by increasing the revolution per minute. Regardless of various dimensionless condensate film, Nu number was largely influenced by saturation temperatures of working fluid.

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수평 평활관 외측의 액막 증발에 관한 연구 (Thin Film Evaporation on Horizontal Plain Tubes)

  • 김정오;김내현;최국광
    • 태양에너지
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    • 제18권4호
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    • pp.49-57
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    • 1998
  • In this study, thin film evaporation of water on a horizontal plain tube is experimentally investigated. At a high heat flux, boiling of water is noticed inside the film. Once boiling occurs, evaporation heat transfer coefficient increases as the heat flux increases. In the non-boiling region, however, the heat transfer coefficient remains uniform irrespective of the heat flux. In this region, the heat transfer coefficient increases as the film flow rate increases. Comparison with existing correlations is also provided.

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고온 실린더의 미스트 냉각 (Mist Cooling of High-Temperature Cylinder Surface)

  • 김무환;이수관;박지만;이필종
    • 대한기계학회논문집B
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    • 제26권3호
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    • pp.448-457
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    • 2002
  • Heat treatment such as quenching of a high-temperature cylinder is being used on steel to produce high strength levels. Especially, the mist cooling with the high and uniform surface heat flux rate s expected to contribute for better products. The experimental mist cooling curve is produced for better understanding, and two distinct heat transfer regions are recognized from the cooling curve produced. It is shown that the liquid film evaporation dominated region follows the film boiling-dominated region as decreasing the temperature of test cylinder by mist flow. Based on the intuitive view from some previous investigations, a simplified model with some assumptions is introduced to explain the mist cooling curve, and it is shown that the estimation agrees well with our experimental data. In the meanwhile, it is known that the wetting temperature, at which surface heat flux rate is a maximum, increases with mass flow rate ratio of water to air ($\varkappa$ < 10). However, based on our experimental data, it is explained that there exists a critical mass flow rate ratio, at which the wetting temperature is maximum, in the range of 3 < $\varkappa$ < 130. Also, it is described that despite of the same value of $\varkappa$, the wetting temperature may increase with mist velocity.

고온에서 벽면 형상에 따른 GDI 분무의 충돌 과정 및 연료 액막 형성에 대한 수치적 연구 (Numerical Study on Impingement Process and Fuel Film Formation of GDI Spray according to Wall Geometry under High Ambient Temperature)

  • 심영삼;최경민;김덕줄
    • 한국자동차공학회논문집
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    • 제16권2호
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    • pp.166-174
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    • 2008
  • Numerical study on the impingement process and the fuel film formation of the hollow-cone fuel spray was conducted under vaporization condition, and the effect of the wall cavity angle on spray-wall impingement structure was investigated. A detailed understanding of this phenomena will help in designing injection systems and controlling the strategies to improve engine performance and exhaust emissions of the Gasoline Direct Injection (GDI) engine. The improved Abramzon model was used to model the spray vaporization process and the Gosman model was adopted for modeling of spray-wall impingement process. The calculated results of the spray-wall impingement process were compared with experimental results. The velocity field of the ambient gas, the Sauter Mean Diameter (SMD) and the generated fuel film on the wall, which are difficult to obtain by the experimental method, were also calculated and discussed. It was found that the radial distance after the wall impingement and the SMD decreased with increasing the cavity angle and the temperature.