• 제목/요약/키워드: Plate Fins

검색결과 84건 처리시간 0.023초

원형관-평판휜 형상의 밀집형 열교환기 내 공기 측대류열전달특성에 대한 수치해석 (Numerical Analysis for the Air-Side Convective Heat Transfer Characteristics in a Compact Heat Exchanger with Circular Tubes and Continuous Plate Fins)

  • 모정하;이상호
    • 대한기계학회논문집B
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    • 제31권12호
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    • pp.994-1001
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    • 2007
  • Numerical analysis has been carried out to investigate air-side convective heat transfer characteristics in a compact heat exchanger with circular tubes and continuous plate fins. Simulation results such as air velocity and temperature distributions are presented, and heat transfer coefficients are compared with previous experimental correlations. Three models of standard and RNG $k-{\varepsilon}$, and Reynolds stress are applied for turbulence model applicability. Predicted heat transfer coefficient from the models of standard and RNG $k-{\varepsilon}$ are very close to those of the heat transfer correlations while there are relatively large difference, more than 17 percentage in the result from the Reynolds stress model. From the calculated results a correlation for Colburn j factor in the compact heat exchanger system is suggested.

초기 횡방향 유동이 존재하는 충돌제트/유출냉각에서 원형핀이 설치된 유출면에서의 열/물질전달 특성 (Heat/Mass Transfer on Effusion Plate with Circular Pin Fins for Impingement/Effusion Cooling System with Intial Crossflow)

  • 홍성국;이동호;조형희
    • 대한기계학회논문집B
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    • 제29권7호
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    • pp.828-836
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    • 2005
  • Impingement/effusion cooling technique is used for combustor liner or turbine parts cooling in gas turbine engine. In the impingement/effusion cooling system, the crossflow generated in the cooling channel induces an adverse effect on the cooling performance, which consequently affects the durability of the cooling system. In the present study, to reduce the adverse effect of the crossflow and improve the cooling performance, circular pin fins are installed in impingement/effusion cooling system and the heat transfer characteristics are investigated. The pin fins are installed between two perforated plates and the crossflow passes between these two plates. A blowing ratio is changed from 0.5 to 1.5 for the fixed jet Reynolds number of 10,000 and five circular pin fin arrangements are considered in this study. The local heat/mass transfer coefficients on the effusion plate are measured using a naphthalene sublimation method. The results show that local distributions of heat/mass transfer coefficient are changed due to the installation of pin fins. Due to the generation of vortex and wake by the pin fin, locally low heat/mass transfer regions are reduced. Moreover, the pin fin prevents the wall jet from being swept away, resulting in the increase of heat/mass transfer. When the pin fin is installed in front of the impinging let, the blockage effect on the crossflow enhances the heat/mass transfer. However, the pin fin installed just behind the impinging jet blocks up the wall jet, decreasing the heat/mass transfer. As the blowing ratio increases, the pin fins lead to the higher Sh value compared to the case without pin fins, inducing $16\%{\~}22\%$ enhancement of overall Sh value at high blowing ratio of M=1.5.

Melting of Ice on the Heating Plate with Split Fins

  • Hong, Hi-Ki;Kim, Moo-Geun
    • International Journal of Air-Conditioning and Refrigeration
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    • 제9권2호
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    • pp.1-7
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    • 2001
  • One of the important applications of a contact melting process is a latent thermal energy storage system owing to its high heat flux and small temperature variation. In some previous works, the split fins have been employed in order to enhance the melting rate. In the present work, the direct contact melting was experimentally investigated using an ice as specimen for both split and non-split fins. It was shown that the contact melting by split fins increases the melting rate compared to that of non-split ones.

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CaO 충전층의 수화발열반응 촉진 (Rate Augmentation of Exothermic Hydration in the CaO Packed Bed)

  • 정수열;김종식
    • 태양에너지
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    • 제14권2호
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    • pp.91-101
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    • 1994
  • [ $Ca(OH)_2/CaO$ ]계 가역반응 싸이클을 이용하는 화학축열에서 열전도도가 낮은 고체입자 충전층의 전열성능을 개선하여 축열장치의 효율을 높이고자 한다. 본 연구에서는 반응기내의 CaO 입자 충전층의 전열성능 향상을 도모하기 위해 반응기 속에 구리판으로 된 전열핀을 설치하고 수화발열 반응시의 방열특성을 조사 하였다. 이 때 반응조건의 변화에 따른 반응층내의 온도 분포를 조사하고 전열촉진 효과에 대해 검토하였다. 그 결과 구리판 전열핀의 방열촉진 효과로 인하여 수화발열반응의 방열시간이 전열핀을 사용하지 않은 때보다 1/2 이상 단축되었으며, 방열시간은 전열핀의 매수에 가장 많은 영향을 받았다.

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평판형 STR의 연소공간 형상변화에 따른 성능 예측 (The Efficiency Prediction for Plate Type Steam Reformer with Shape Change of Combustion Chamber)

  • 김헌주;이지홍;이명용;이상석;이도형
    • 한국수소및신에너지학회논문집
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    • 제21권4호
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    • pp.286-294
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    • 2010
  • According to the propagation of fuel cell system, the importance of that system efficiency is being magnified. Thus, the efficiency improvement of reformer which is the important part of fuel cell system will be required. In structural aspect, the reformer is classified into cylindrical and plate type. Plate type reformer features better maintenance and space efficiency compared with cylindrical type. In this study, we changed the shape of combustion chamber to improve the reforming efficiency. And then we performed the CFD simulation to predict the spacial distribution of temperature. Analysis cased contains with baffles, fins, baffles and fins, and without those. In case of only with-baffle, temperature distributions were uneven because the high temperature stream was concentrated near the baffle end. In case of with-fin, the temperature distributions were relatively even than other cases.

루우버 위치(位置)가 루우버핀 열교환기(熱交換器)의 공기측열전달(空氣側熱傳達)에 미치는 영향(影響) (Effect of Louvered Positions on Air-Side Heat Transfer in Louvered Fin Heat Exchangers)

  • 김선정;정태현;권순석
    • 설비공학논문집
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    • 제2권2호
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    • pp.99-104
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    • 1990
  • A Study has been conducted experimentally on heat transfer characteristics of louvered fin heat exchangers with various louvered positions in air. The experimental results are as follows; 1. Mean heat transfer coefficient is increased with increasing air velocity and decreasing temperature difference. The maximum value of heat transfer coefficient shows at 10㎜ backward louvered fins. 2. Pressure drop is increased with increasing air velocity and apparently depended on the louvered positions at V>10m/sec. 3. $\bar{h}/{\Delta}P$ is decreased with increasing air velocity and its maximum value shows at 10mm forward louvered fins and its minimum value shows at plate fins.

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옵셋 스트립 휜의 휜피치가 고 Prandtl 유체 열전달 특성에 미치는 영향 (A Study on the Effect of Fin Pitch of Offsets Strip Fin on Heat Transfer of High Prandtl Fluid)

  • 강덕종;양대일;전승환;정형호
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권1호
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    • pp.83-89
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    • 2002
  • In the present study, heat transfer characteristics of oil flow over offset strip fins were predicted by the numerical methods. Oil flow in the plate-fin passage was idealized by 2 dimensions. The flow patterns and heat transfer characteristics were predicted in details. Numerical results shows that the average convective heat transfer coefficients are almost independent on the raws of fins and affected by fin pitches. At the rear face of fin, there exists minimum point of heat transfer coefficients where stream are separated from the fin surfaces. The convective heat transfer coefficients were effected by separation bubbies which appeared at the wake region of offset strip fins.

옵셋 스트립 휜에서 오일유동의 열전달 특성에 관한 연구 (A Study on the Heat Transfer Characteristics of Oil Flow over Offset Strip Fins)

  • 양대일;정형호
    • 설비공학논문집
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    • 제13권11호
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    • pp.1134-1140
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    • 2001
  • In the present study, heat transfer characteristics of oil flow over offset strip fins were predicted by the numerical methods. Oil flow in the plate-fin passage was idealized by 2 dimension. Power law scheme and SIMPLE algorithm were used for convective diffusion formulation and pressure term respectively. Governing equations were discretized by control volume formulation. The flow patterns and heat transfer were predicted in details. The convective heat transfer coefficients were affected by separation bubbles which appeared at the wake region of offset strip fins.

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옵셋 스트립 휜을 가로지르는 오일유동의 열전달 2차원 상관관계식 (2 Dimensional Correlations of Heat Transfer of Oil Flows over Offset Strip Fins)

  • 강덕종;신성학;정형호
    • 설비공학논문집
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    • 제14권9호
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    • pp.734-740
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    • 2002
  • In the present study, heat transfer characteristics of oil flow over offset strip fins are predicted by the numerical methods. Oil flow in the plate-fin passage is idealized by 2 dimensions. Inlet velocity, Prandtl number and fin pitch ratio are chosen as parameters which affect the heat transfer of offset strip fins. The effect of parameters on pressure drops and convective heat transfer coefficients are described. Characteristic length is derived in case of 2 dimensional flow situation. Correlations for friction factor and convective heat transfer coefficient are derived.

평판핀이 부착된 공냉형 암모니아 응축기의 열전달 성능에 대한 수치적 연구 (Numerical analysis of an air-cooled ammonia condenser with plate fins)

  • 김영일;강병하
    • 설비공학논문집
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    • 제9권3호
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    • pp.292-299
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    • 1997
  • Ammonia has been used as refrigerant for more than 100 years in absorption as well as in compression systems. Due to its poisonous and inflammable properties, however, its use has been mainly on heavy industrial plants in which regular maintenance are available. For these systems, condensers are generally water-cooled. This is suitable for large systems over 20 RT but is not suitable for small systems. In order to apply ammonia for a small system, it is important to adopt an air-cooled condenser. In this study, simple numerical analysis of an air-cooled condenser for an ammonia refrigeration system has been carried out. The condenser is designed as horizontal tubes with plate fins attached at the outer surface to enhance the air-side heat transfer rate. Effects of fin shape and arrangement are studied in detail. Since the local heat transfer coefficient is highest at the leading edge, heat flux is highest at the edge and decreases along the distance. Conditions of inlet air are also varied in the study and condenser length that is required for full condensation is calculated. The results show that it is important to enhance both the air-side and internal heat transfer coefficients.

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