• 제목/요약/키워드: Thermal convection

검색결과 717건 처리시간 0.026초

자연대류상의 LED 모듈의 경량열관리를 위한 하이브리드 휜 히트싱크의 수치적으로 조사된 열성능 (Numerically-Investigated Thermal Performances of Hybrid Fin Heat Sinks for Lightweight Thermal Management of LED Modules Under Natural Convection)

  • 김경준
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권6호
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    • pp.586-591
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    • 2015
  • 본 연구는 자연대류상의 LED 모듈의 경량열관리를 위한 하이브리드 휜 히트싱크(HF HS)의 열성능을 수치적으로 조사한 결과에 대해 논하였다. 할로우 하이브리드 휜 히트싱크(HHF HS)와 솔리드 하이브리드 휜 히트싱크(SHF HS)가 HF HS로 제안되고, 신뢰성있는 수치결과를 획득하기 위하여 3차원 CFD 해석이 수행되었다. 3차원 CFD 연구는 HHF HS와 SHF HS의 성능에 대한 휜 공간과 내부유로직경의 영향을 조사하였다. 연구결과는 HHF HS의 질량기반 열저항이 핀휜 히트싱크(PF HS) 보다 20~32% 작음을 보여주고, 유로직경의 증가에 따라 HHF HS의 질량기반 열저항이 감소함을 보인다. 이 결과는 주로 질량감소와 내부유로를 통한 열방출의 결합효과에 기인한다. 고전적인 PF HS 대비 상당히 우월한 HHF HS의 질량기반 열성능은 자연대류상의 LED 모듈의 경량열관리 적용 가능성을 제시한다.

뉴 디자인된 히트싱크의 열 유동 현상 컴퓨터 시뮬레이션 (Computational Simulation of Heat flow phenomena in Newly Designed Heat Sinks)

  • 임송철;최종운;강계명
    • 한국재료학회지
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    • 제14권11호
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    • pp.775-779
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    • 2004
  • For improvement of heat dissipation performance, heat analysis is conducted on the newly designed heat sinks under two convection conditions by using computational fluid dynamics(CFD). Three types of heat sink, plate, wave and top vented wave, are used, and convection conditions are the variations of gravity direction at natural convection and of fan location at forced convection. The results of analysis showed that the heat resistances of top vented wave heat sink were $0.17^{\circ}C$/W(forced convection) and $0.48^{\circ}C$/W(natural convection). In the case of natural convection, gravity direction affected heat flow change, and protection against heat performance was superior in case of z-axis gravity direction. Under the forced convection, all the heat sinks revealed superior thermal characteristics in the fan position of z-axis rather than y-axis. In this study, it was observed that the top vented wave type heat sink showed the best ability of heat radiation comparing with the others.

OPTIMZATION OF A PIN FIN BASED ON THE INCREASING RATE OF HEAT LOSS

  • Kang, Hyung-Suk
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제12권1호
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    • pp.25-32
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    • 2008
  • A pin fin is optimized based on the increasing rate of heat loss by using a two-dimensional analytic method. The optimum heat loss, corresponding optimum thermal resistance and fin length are presented as a function of the fin base thickness, convection characteristic numbers ratio, fin outer radius and ambient convection characteristic number. One of the results shows that both the optimum heat loss and fin length decrease linearly whereas the optimum thermal resistance increases very slightly with increase of the fin base thickness.

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자계-열계 시스템의 3차원 위상최적설계 (3-D Topology Optimization of Magneto-Thermal Systems)

  • 심호경;왕세명
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2005년도 제36회 하계학술대회 논문집 B
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    • pp.939-941
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    • 2005
  • This research presents a 3D multi-objective approach regarding both magnetic and thermal characteristics associated with design of C-core actuator. The adjoint variable topology sensitivity equations are derived using the continuum method for three dimension. The sensitivity is verified using the Finite Difference Method(FDM). Convection interpolation function is proposed for density method of topologies such that convection term can be taken into consideration for practical design in the process of the optimization.

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용접코팅된 연속주조 몰드의 열해석 (Thermal Analysis of Continuous Casting Welding-Coated Mold)

  • 이종선;김세환
    • 한국산학기술학회논문지
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    • 제2권1호
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    • pp.7-12
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    • 2001
  • 본 연구에서는 제철소에서 활발히 사용되고 있는 연속주조 몰드에 대하여 용접코팅을 실시한 후 주조시 열적거동을 규명하는 열해석을 수행하였다. 열해석을 수행하기 위하여 상용 유한요소해석 코드인 ANSYS를 활용하였으며 주조속도, 냉각조건, 막 열전도계수, 대류열복사, 하중조건 등을 고려하여 몰드 표면의 온도분포를 구하였다.

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난방방식에 따른 거실의 열환경 특성에 관한 연구 (A Study on the Characteristic of the Thermal Environment in the Heating System at a Living Room)

  • 이무진;이승수;진영언
    • 한국주거학회논문집
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    • 제12권1호
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    • pp.85-92
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    • 2001
  • The purpose of this study is to investigate the characteristic of the thermal environment at a living room by the heating system(floor radiation heating, forced convection heating, combined heating, radiation convection heating), and to compares the change of the thermal environment after operating the heating with after the operation stopped based on the floor radiation heating. This study proposes the basic data for the design and the development of the thermal storage structure heating system which not only utilizes fully the characteristic of the comfortable thermal environment but also reduces the preheating period and be able to use the off-peak electricity.

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Comparative study of CFD and 3D thermal-hydraulic system codes in predicting natural convection and thermal stratification phenomena in an experimental facility

  • Audrius Grazevicius;Anis Bousbia-Salah
    • Nuclear Engineering and Technology
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    • 제55권4호
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    • pp.1555-1562
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    • 2023
  • Natural circulation phenomena have been nowadays largely revisited aiming to investigate the performances of passive safety systems in carrying-out heat removal under accidental conditions. For this purpose, assessment studies using CFD (Computational Fluid Dynamics) and also 3D thermal-hydraulic system codes are considered at different levels of the design and safety demonstration issues. However, these tools have not being extensively validated for specific natural circulation flow regimes involving flow mixing, temperature stratification, flow recirculation and instabilities. In the present study, an experimental test case based on a small-scale pool test rig experiment performed by Korea Atomic Energy Research Institute, is considered for code-to-code and code-to-experimental data comparison. The test simulation is carried out using the FLUENT and the 3D thermal-hydraulic system CATHARE-2 codes. The objective is to evaluate and compare their prediction capabilities with respect to the test conditions of the experiment. It was observed that, notwithstanding their numerical and modelling differences, similar agreement results are obtained. Nevertheless, additional investigations efforts are still needed for a better representation of the considered phenomena.

Thermal diffusion and diffusion thermo effects on an unsteady heat and mass transfer magnetohydrodynamic natural convection Couette flow using FEM

  • Raju, R. Srinivasa;Reddy, G. Jithender;Rao, J. Anand;Rashidi, M.M.
    • Journal of Computational Design and Engineering
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    • 제3권4호
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    • pp.349-362
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    • 2016
  • The numerical solutions of unsteady hydromagnetic natural convection Couette flow of a viscous, incompressible and electrically conducting fluid between the two vertical parallel plates in the presence of thermal radiation, thermal diffusion and diffusion thermo are obtained here. The fundamental dimensionless governing coupled linear partial differential equations for impulsive movement and uniformly accelerated movement of the plate were solved by an efficient Finite Element Method. Computations were performed for a wide range of the governing flow parameters, viz., Thermal diffusion (Soret) and Diffusion thermo (Dufour) parameters, Magnetic field parameter, Prandtl number, Thermal radiation and Schmidt number. The effects of these flow parameters on the velocity (u), temperature (${\theta}$) and Concentration (${\phi}$) are shown graphically. Also the effects of these pertinent parameters on the skin-friction, the rate of heat and mass transfer are obtained and discussed numerically through tabular forms. These are in good agreement with earlier reported studies. Analysis indicates that the fluid velocity is an increasing function of Grashof numbers for heat and mass transfer, Soret and Dufour numbers whereas the Magnetic parameter, Thermal radiation parameter, Prandtl number and Schmidt number lead to reduction of the velocity profiles. Also, it is noticed that the rate of heat transfer coefficient and temperature profiles increase with decrease in the thermal radiation parameter and Prandtl number, whereas the reverse effect is observed with increase of Dufour number. Further, the concentration profiles increase with increase in the Soret number whereas reverse effect is seen by increasing the values of the Schmidt number.

비정상열선법을 이용한 나노유체 열전도도 측정 시 자연대류 개시점에 대한 연구 (Onset of Natural Convection in Transient Hot Wire Device for Measuring Thermal Conductivity of Nanofluids)

  • 이승현;김현진;장석필
    • 대한기계학회논문집B
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    • 제35권3호
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    • pp.279-285
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    • 2011
  • 본 논문에서는 비정상열선법을 이용한 나노유체의 열전도도 측정시, 자연대류 개시점을 수치적 방법을 통하여 파악해 보았다. 측정 유체는 부피비 1, 4, 10% 를 갖는 물-기반 알루미나 나노유체이고, 이에 대한 물성치는 기존 이론모델 및 실험적 상관관계식을 이용하여 계산하였다. 비정상열선법 장치는 FDM 방식으로 모델링 되었으며, 자연대류의 개시점은 중력장하의 열선의 온도변화를 관찰함으로써 파악하였다. 자연대류의 개시점은 물의 경우 11.5 초이고, 10% 부피비에서 Maxwell 모델로 열전도도를 예측한 알루미나 나노유체인 경우 41.6 초로 계산되었다. 특히 부피비가 증가할수록 자연대류가 늦게 발생함을 확인하였으며, 계산된 결과를 이용하여 비정상열선법의 실린더 내부에서 나노유체의 자연대류 개시점을 예측할 수 있는 관계식을 제시하였다. 또한 비정상열선법으로 열전도도를 측정할 때, 기본유체의 자연대류 발생시점 이전에 측정이 이루어진다면 나노유체의 열전도도 측정시 자연대류에 의한 측정오차는 무시할 수 있음을 확인하였다.

Influence of thermo-physical properties on solutal convection by physical vapor transport of Hg2Cl2-N2 system: Part I - solutal convection

  • Kim, Geug-Tae;Kim, Young-Joo
    • 한국결정성장학회지
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    • 제20권3호
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    • pp.125-132
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    • 2010
  • For typical governing dimensionless parameters of Ar = 5, Pr = 1.16, Le = 0.14, Pe = 3.57, Cv = 1.02, $Gr_s=2.65{\times}10^6$, the effects of thermo physical properties such as a molecular weight, a binary diffusivity coefficient, a partial pressure of component B on solutally buoyancy-driven convection (solutal Grashof number $Gr_s=2.65{\times}10^6$) are theoretically investigated for further understanding and insight into an essence of solutal convection occurring in the vapor phase during the physical vapor transport of a $Hg_2Cl_2-N_2$ system. The solutally buoyancy-driven convection is significantly affected by any significant disparity in the molecular weight of the crystal components and the impurity gas of nitrogen. The solutal convection in a vertical orientation is found to be more suppressed than a tenth reduction of gravitational accelerations in a horizontal orientation. For crystal growth parameters under consideration, the greater uniformity in the growth rate is obtained for either solutal convection mode in a vertical orientation or thermal convection mode in horizontal geometry. The growth rate is also found to be first order exponentially decayed for $10{\leq}P_B{\leq}200$ Torr.