• 제목/요약/키워드: Parallel-Flow Heat Exchanger

검색결과 77건 처리시간 0.024초

원자력 발전소에 대한 밀폐 ${CO}_{2}$ 가스터빈 프로세스의 최적화 연구 (II) -열교환기의 설계에 관하여 - (A Study of th Optimum of closed ${CO}_{2}$ Gas Turbine Process for Nuclear Energy Power Plant(II) - For Optimal Design of Heat Exchanger-)

  • 이찬규;이종원
    • 대한기계학회논문집
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    • 제14권1호
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    • pp.251-258
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    • 1990
  • 본 연구에서는 제 1보에서 다루었던 프로세스 해석의 결과들을 토대로 하여 열교환기의 최적 설계를 행하는데 주력하였다. 먼저, 열교환기의 최적 설계를 행하 는데 주력하였다. 먼저, 열교환기의 열설계에 필요한 CO$_{2}$와 Natrium의 물성치 및 열전달에 관한 기존의 실험식들을 여러문헌으로부터 연구 검토한 후 프로그램에 편 리하게 이용할 수 있도록 전산화 하였으며, 열교환기의 설계시 필요한 전체 경비의 최 소화를 기하는 방향으로 최적화된 설계인자들을 결정하도록 시도하였고 또한 최적화된 프로그램을 개발함으로써 인력, 외화 및 에너지 절감의 효과를 얻고자 하였다.

알루미늄 다채널 평판관 증발기 내 냉매분배 (Distribution of Air-Water Two-Phase Flow in a Flat Tube Heat Exchanger)

  • 김내현;박태균;한성필;이응렬
    • 설비공학논문집
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    • 제18권10호
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    • pp.800-810
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    • 2006
  • The R-134a flow distribution is experimentally studied for a heat exchanger composed of round headers and 10 flat tubes. The effects of tube protrusion depth as well as mass flux, and quality are investigated, and the results are compared with the previous air-water results. The flow at the header inlet is stratified. For the downward flow configuration, the liquid distribution improves as the protrusion depth or the mass flux increases, or the quality decreases. For the upward configuration, the liquid distribution improves as the mass flux or quality decreases. The protrusion depth has minimal effect. For the downward configuration. the effect of quality on liquid distribution is significantly affected by the flow regime at the header inlet. For the stratified inlet flow, the liquid is forced to rear part of the header as the quality decreases. However, for the annular inlet flow, the liquid was forced to the frontal part of the header as the quality decreased. For the upward flow, the effect of the mass flux or quality on liquid distribution of the stratified inlet flow is opposite to that of the annular inlet flow. The high gas velocity of the annular flow may be responsible for the trend. Generally, the liquid distribution of the stratified inlet flow is better than that of the annular inlet flow. Possible explanation is provided from the flow visualization results.

평판관 열교환기 내 공기-물 2상류 분지 (Distribution of Air-Water Two-Phase Flow in a Flat Tube Heat Exchanger)

  • 김내현;박태균;한성필;신태룡
    • 설비공학논문집
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    • 제18권9호
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    • pp.687-697
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    • 2006
  • The air and water flow distribution are experimentally studied for a heat exchanger composed of round headers and 10 flat tubes. The effects of tube protrusion depth as well as mass flux, and quality are investigated, and the results are compared with the previous 30 channel results. The flow at the header inlet is annular. For the downward flow configuration, the water flow distribution is significantly affected by the tube protrusion depth. For flush-mounted geometry, significant portion of the water flows through frontal part of the header. As the protrusion depth increases, more water is forced to the rear part of the header. The effect of mass flux or quality is qualitatively the same as that of the protrusion depth. Increase of the mass flux or quality forces the water to rear part of the header. For the upward flow configuration, different from the downward configuration, significant portion of the water flows through the rear part of the header. The effect of the protrusion depth is the same as that of the downward flow. As the protrusion depth increases, more water is forced to the rear part of the header. However, the effect of mass flux or quality is opposite to the downward flow case. As the mass flux or quality increases, more water flows through the frontal part of the header. Compared with the previous thirty channel configuration, the present ten channel configuration yields better flow distribution. Possible explanation is provided from the flow visualization results.

적층형 Multi-Chip Module(MCM) 내부에 삽입된 초소형 열교환기 내에서의 대류 열전달 현상에 대한 연구 (A Study on the Convective Heat Transfer in Micro Heat Exchanger Embedded in Stacked Multi-Chip Modules)

  • 신중한;강문구;이우일
    • 대한기계학회논문집A
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    • 제28권6호
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    • pp.774-782
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    • 2004
  • This article presents a numerical and experimental investigation for the single-phase forced laminar convective heat transfer through arrays of micro-channels in micro heat exchangers to be used for cooling power-intensive semiconductor packages, especially the stacked multi-chip modules. In the numerical analysis, a parametric study was carried out for the parameters affecting the efficiency of heat transfer in the flow of coolants through parallel rectangular micro-channels. In the experimental study, the cooling performance of the micro heat exchanger was tested on prototypes of stacked multi-chip modules with difference channel dimensions. The simulation results and the experiment data were acceptably accordant within a wide range of design variations, suggesting the numerical procedure as a useful method for designing the cooling mechanism in stacked multi-chip packages and similar electronic applications.

증발냉각을 이용한 배기열 회수장치의 성능에 관한 연구 (Performance of Heat Recovery System using Evaporative Cooling)

  • 유성연;김태호;김명호
    • 대한기계학회논문집B
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    • 제39권1호
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    • pp.37-43
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    • 2015
  • 현열 뿐만 아니라 잠열을 이용하는 증발냉각은 배기열 회수에 매우 유용하게 사용될 수 있다. 본 연구의 목적은 증발냉각을 이용한 배기열 회수장치의 성능을 실험적으로 규명하는 것이다. 성능실험장치는 플라스틱 열교환기, 물 분무 노즐, 공기유동용 홴, 물 순환용 펌프, 수조, 온도 습도 유량 측정 센서 등으로 구성되었다. 증발이 없는 현열 회수에서의 유용도와 증발을 수반하는 전열 회수에서의 유용도를 여러가지 작동조건에서 측정하여 비교하였다. 현열냉각과 증발냉각의 유용도는 공기의 유량이 증가함에 따라 감소하고, 대향류에서의 유용도가 평행류에서의 유용도 보다 휠씬 높다. 증발냉각의 경우 물 유량이 증가함에 따라 유용도는 증가하고, 평행류가 대향류보다 물 유량에 더 민감함을 알 수 있다.

이산화탄소용 핀-관 증발기의 성능해석 (Performance Analysis of Fin-tube Evaporator for Carbon Dioxide)

  • 이민규;김영일;장영수;김용찬
    • 설비공학논문집
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    • 제16권7호
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    • pp.645-651
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    • 2004
  • Fin-tube evaporator for carbon dioxide has been investigated both by experiment and simulation. Inside refrigerant heat transfer and outside heat and mass transfer of a wet surface heat exchanger were modeled using appropriate correlations. The results estimated by the calculation were in good agreement with the experimental results. The simulation errors were less than 7.9% for estimating capacity, 0.6$^{\circ}C$ for air exit temperature, 1.2% for air exit humidity and 17% for $CO_2$ exit pressure. The simulation program was used to study the effect of air flow direction, number of rows and refrigerant circuits. For a 2-row evaporator, parallel flow showed better performance for low air velocity but for high air velocity, counter-flow was better. Refrigerant circuits, however, showed insignificant effect on the performance.

열교환기 형상에 따른 분리형 히트파이프 성능 비교 (Separate type heat pipe performance comparison by the heat exchanger shapes)

  • 전성택;조진표
    • 한국산학기술학회논문지
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    • 제17권12호
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    • pp.723-729
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    • 2016
  • 본 연구에서는 핀-관형 히트파이프와 평행류형 히트파이프 제작하여 시험하였으며 분리형 히트파이프의 작동유체의 충진량은 40~60(% vol.), 풍량은 300~1,400 사이에서 변화시켜가며 온도교환 효율, 열회수량, 공기측 압력강하를 비교하였다. 온도교환 효율은 두 종류의 히트파이프 모든 경우에서 저 풍량에서는 작동유체 충진량이 40(%vol.)일 때가 가장 높았으며 풍량이 증가함에 따라 최대 효율을 가지는 작동유체 충진량이 다름을 알 수 있었고, 환기량이 작을수록 온도교환 효율이 높게 나타났다. 평행류형 히트파이프 60(%vol.)의 실험결과에서 보는 것과 같이 작동 유체를 너무 많이 충진하게 되면 오히려 낮은 온도교환 효율을 보이는데 이는 관벽의 액막이 두터워지면서 열전달 효과를 악화시킨 결과로 최적 충진량이 40~50(%vol.) 사이에 있음을 알 수 있다. 풍량 변화에 따른 공기측 압력강하 비교에서는 증발부 히트파이프가 응축부 히트파이프 보다 크게 계측 되었는데 증발부 표면에 생긴 결로수의 영향으로 생각된다. 평행류형 히트파이프는 핀-관형 히트파이프와 비교하여 냉매 충진량은 48%, 체적은 41%에서 동등이상의 성능을 보였으며, 공기측 압력강하도 37% 정도로 좋은 성능을 나타내었다.

스크레이퍼형 아이스슬러리 제빙기의 열전달 특성 연구 (A Study on the Heat Transfer Characteristics of Ice Slurry Generator with Scraper)

  • 김민준;김종하;윤재호;박일환;조형석;안성국
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.1974-1979
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    • 2007
  • In this study, Ice slurry generator heat transfer characteristics are experimentally investigated for the ice slurry generating system with scraper which is pneumatically operated. The ice slurry generator has the same shape as the vertical double tube type heat exchanger. Refrigerant is flowing in the outside tube and ethylene glycol solution in the inside tube. Refrigerant and solution water are parallel flow type which entering bottom of generator and leaving top of generator. The experimentations are conducted under the various test conditions such as compressor speed and cooling water temperature. For the above experimental conditions, heat transfer characteristics of the ice slurry generating system are evaluated in terms of the overall heat transfer coefficient and the heat transfer rate. And the experimental results show that the heat transfer rate of the system is increased as the compressor speed increases and the cooling water temperature decreases.

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