• 제목/요약/키워드: Three-dimensional heat transfer

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PHC 에너지 파일의 열교환율 예측에 관한 연구 (Prediction of Heat Exchange Rate in PHC Energy Piles)

  • 윤석;이승래;박현구;박도원;고규현
    • 한국지반공학회논문집
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    • 제29권9호
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    • pp.31-41
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    • 2013
  • 최근 들어 경제적인 지열에너지 활용을 위하여 에너지 파일의 적용이 확대되고 있다. 특히 더 높은 열 교환 효율을 확보하고자 에너지 파일의 경우 보다 높은 열효율을 얻기 위해 통상적인 U자형 지중 열교환기가 아닌 코일형 지중열교환기를 매입하는 경우가 늘어나고 있다. 본 논문에서는 PHC 에너지 파일에 의한 지중 열 전달 거동에 대한 수치해석 및 실험적 연구를 수행하였다. 화강풍화토로 이루어진 현장에 PHC 에너지 파일을 설치하고 W자형과 코일형 지중 열교환기를 설치한 후 이에 대한 현장 열성능 실험을 수행하였다. 또한 3차원 유한요소해석을 수행하여 지중온도 및 지중 열교환기 내 순환수 온도 변화를 예측하였고 이를 실험값과 비교하였다. 냉방 부분 가동 조건 하에서 코일형 열교환기 이용시 W자형을 이용했을 때보다 10~15% 열교환율이 상승되는 것을 알 수 있었다.

발전용 희박예혼합 가스터빈에서 연소모드변환 시기의 연소특성 해석 (Numerical Analysis of Combustion Characteristics during Mode Transfer Period in a Lean Premixed Gas Turbine for Power Generation)

  • 정재화;서석빈;김종진;차동진;안달홍
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.279-282
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    • 2002
  • Recently, gas turbines for power generation adopt multistage DLN(Dry Low NOx) type combustion, where diffusion combustion is applied at low load and, with increase in load, the combustion mode is changed to lean premixed combustion to reduce NOx emissive concentration. However, during the mode changeover from diffusion to premixed flame, unfavorable phenomena, such as flashback, high amplitude combustion oscillations, or thermal damage of combustor parts could frequently occur. In the present study, to apply for the analysis of such unfavorable phenomena, three-dimensional CFD investigations are carried out to compare the detailed flow characteristics and temperature distribution inside the gas turbine combustor before and after combustion mode changeover. The fuel considered here is pure methane gas. A standard $k-{\varepsilon}$ turbulence model with wall function and a P-N type radiation heat transfer model, have been utilized. To analyze the complex geometric effects of combustor parts on combustion characteristics, fuel nozzles, a swirl vane f3r fuel-air mixing, and cooling air holes on the combustor liner wall, are included in this simulation.

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유한요소법에 의한 평면 TV 새도우마스크의 열변형해석 및 전자빔 오착 예측 (Thermal Deformation Analysis of Shadow Mask in a Flat TV and Prediction of Electron Beam Landing Shift by FEM)

  • 김정;박수길;강범수
    • 대한기계학회논문집A
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    • 제26권11호
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    • pp.2297-2304
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    • 2002
  • Two-dimensional and three-dimensional finite element methods have been used to analyze the deformation behavior of a shadow mask due to thermal and tension load. The shadow mask inside the Braun tube of a TV set has numerous slits through which the electron beams are guided to land on the designed phosphor of red, green or blue. Its thermal deformation therefore causes landing shift of the electron beam and results in decolorization of a screen. For the realistic finite element analysis, the effective thermal conductivity and the effective elastic modulus arc calculated, and then the shadow mask is modeled as shell without slits. Next a transient thermal analysis of the shadow mask is performed, wherein thermal radiation is a major heat transfer mechanism. Analysis of the resulting thermal deformation is followed, from which the landing shift of the electron beam is obtained. The present finite element scheme may be efficiently used to reduce thermal deformation of a shadow mask and in developing prototypes of a large screen flat TV.

경사진 평행평판 내 혼합대류 열전달 특성에 관한 수치적 연구 (A Numerical Study on the Characteristic of Mixed Convection Between Inclined Parallel Plates)

  • 박일용;배대석;권오붕
    • 동력기계공학회지
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    • 제10권2호
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    • pp.29-35
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    • 2006
  • Two-dimensional numerical simulation has been performed to investigate mixed convection heat transfer between inclined parallel plates with bottom-heated and top-cooled uniformly. The ratio of parallel plate length to height is 9.33, Prandtl number is 909(that of silicone oil at 298K) and Rayleigh number is 8600. In the ranges of the Reynolds number Re from 0 to 1.8 and the angle of inclination ${\theta}$ from 0 to 90 degree. The governing equations are discretized using the finite volume method. In this study, the effects of the Reynolds number, the angle of inclination, and the local and mean Nusselt numbers are presented and discussed. It is found that the periodic flow of mixed convection between inclined parallel plates is shown at $0^{\circ}{\leq}\;{\theta}<30^{\circ},\;Re<0.063$, and the flow pattern can be classified into three patterns which depend on Reynolds number and the angle of inclination. The minimum average Nusselt numbers occur at Re=0.05 regardless of the angle of inclination.

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OLED 증착을 위한 선형증발원 히터 위치선정 (Selection of Heater Location in Linear Source for OLED Vapor Deposition)

  • 주영철;한충환;엄태준;이상욱;김국원;권계시
    • 제어로봇시스템학회논문지
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    • 제14권6호
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    • pp.515-518
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    • 2008
  • Organic light emitting diode(OLED) is one of the most promising type of future flat panel display. A linear source is used to deposite organic vapor to a large size OLED substrate. An electric heater which is attached on the side of linear source heats the organic powder for the sublimation. The nozzle of heater, which is attached at the top of the linear source has an optimal temperature. An numerical analysis has been performed to find optimal heater position for the optimal nozzle temperature. A commercial CFD program, FLUENT, is used on the analysis. Two-dimensional and three-dimensional analysis have been performed. The analysis showed that the heater should be attached at the outer side of crucible wall rather than inner side of housing, which was original design. Eighteen milimeter from the top of the linear source was suggested as the optimal position of heater. Improving thermal performance of linear source not only helps the uniformity of organic vapor deposition on the substrate but also increase productibity of vapor deposition process.

등축 유로를 가진 이중진공관형 태양열 집열기의 열성능에 관한 시뮬레이션 연구 (The Performance Simulation of All-Glass Vacuum Tubes with Coaxial Fluid Conduit)

  • 이상진;현명택;박윤철;천원기;이정호
    • 한국태양에너지학회 논문집
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    • 제24권3호
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    • pp.27-38
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    • 2004
  • A numerical investigation has been carried out for a solar system, which consists of all glass solar vacuum tubes Water is heated as it flows through the coaxial fluid conduit inserted in each tube. The space between the exterior of the fluid conduit and the glass tube is filled with antifreeze solution. This is to facilitate heat transfer from the solar heated absorber surface to water and to prevent the functional problems due to freezing in frigid weather conditions. A one-dimensional steady state model is fully described which will be used to develop three-dimensional model using STAR-CD. These models could be used efficiently in designing all-glass solar collector tubes with different geometrical parameters other than those considered in the present analysis. Results show good agreement when compared with other experimental data demonstrating the reliability of the present model.

금속수소화물 수소 저장 용기 내부의 수소흡장에 대한 수치해석적 연구 (Numerical Study of Hydrogen Absorption in a Metal Hydride Hydrogen Storage Vessel)

  • 남진무;강경문;주현철
    • 한국수소및신에너지학회논문집
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    • 제21권4호
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    • pp.249-257
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    • 2010
  • In this paper, a three-dimensional hydrogen absorption model is developed to precisely study hydrogen absorption reaction and resultant heat and mass transport phenomena in metal hydride hydrogen storage vessels. The 3D model is first experimentally validated against the temperature evolution data available in the literature. In addition to model validation, the detailed simulation results shows that at the initial absorption stage, the vessel temperature and H/M ratio distributions are uniform throughout the entire vessel, indicating that the hydrogen absorption is so efficient during the early hydriding process and thus local cooling effect is not influential. On the other hand, nonuniform distributions are predicted at the latter absorption stage, which is mainly due to different degrees of cooling between the vessel wall and core regions. This numerical study provides the fundamental understanding of detailed heat and mass transfer phenomena during hydrogen absorption process and further indicates that efficient design of storage vessel and cooling system is critical to achieve fast hydrogen charging and high hydrogen storage efficiency.

터보과급 대형 CNG기관 피스톤의 온도분포와 열응력 해석 (Numerical Analysis for Temperature Distribution and Thermal Stresses in a Turbocharged Large CNG Engine Piston)

  • 김양술;안수철
    • 한국가스학회지
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    • 제12권4호
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    • pp.58-62
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    • 2008
  • 본 연구에서는 직렬 6기통 압축천연가스 엔진의 피스톤에 대한 3차원 모델링을 수행하여 정상상태에서의 온도분포 및 그에 따른 열응력과 변형을 예측하고, 이를 기존의 해석결과와 비교 검토를 통하여 피스톤의 유한요소해석의 기준을 구축하고자 한다. 또한 냉각시스템의 성능이 피스톤의 열부하에 미치는 영향을 평가하기 위하여 냉각수 온도의 변화에 따른 피스톤의 온도분포 및 열응력 분포 그리고 그에 따른 변형을 분석하였다. 분석결과 피스톤의 최고 온도는 크라운부의 중앙에서 나타났고, 피스톤의 크라운 하부에서 최대 열응력이 발생하였다.

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기체확산층의 기공률이 고분자 전해질 연료전지 성능에 미치는 영향에 관한 전산해석 연구 (Numerical Study on the Effects of GDL Porosity on the PEMFC Performance)

  • 김경연;손영준;김민진;이원용
    • 대한기계학회논문집B
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    • 제33권12호
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    • pp.1022-1030
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    • 2009
  • Numerical analysis was carried out to investigate the effect of GDL (Gas diffusion layer) porosity on the performance of PEMFC (proton exchange membrane fuel cell). A complete three-dimensional model was chosen for single straight channel geometry including cooling channel. Main emphasis is placed on the heat and mass transfer through the GDL with different porosity. The present numerical results show that at high current densities, the cell voltage is influenced by the GDL porosity while the cell performance is nearly the same at low current densities. At high current densities, low value of GDL porosity results in decrease of the fuel cell performance since the diffusion of reactant gas through GDL becomes slow with decreasing porosity. On the other hand, for high GDL porosity, the effective thermal conductivity becomes low and the heat generated in the cell is not removed rapidly. This causes the temperature of fuel cell to increase and gives rise to dehydration of the membrane, and ultimately increase of the ohmic loss.

소형 Thermal Conductivity Detector의 입구열전달 거동에 대한 수치해석 (Numerical Study on the Thermal Entrance Effect in Miniature Thermal Conductivity Detectors)

  • 김우승;김영민;;천원기
    • 대한기계학회논문집B
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    • 제26권3호
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    • pp.439-447
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    • 2002
  • The microchannel flow in miniature TCDs (thermal conductivity detectors) is investigated numerically. The solutions based on the boundary layer approximation are not very accurate in the region of the duct inlet for low Reynolds numbers. In this study, two-dimensional Navier-Stokes equations are considered to analyze the gas flow in a miniature TCD. Effects of channel size, inlet and boundary conditions on the heat transfer rate are examined. When the gas stream is not preheated, the distances for a miniature TCD to reach the conduction-dominant region for duct flow are found to be approximately two and three times the thermal entry length for duct flow with constant properties, respectively, leer constant wall temperature and constant wall heat flux boundary conditions. If the gas temperature at the channel inlet is close to the mean gas temperature in the conduction-dominant region, the entrance region is much shorter compared to other cases considered in this study.