• 제목/요약/키워드: Pseudocritical Point

검색결과 6건 처리시간 0.019초

수직관 내 초임계상태 물의 천이상태 대류열전달현상에 관한 연구 (A Study on the Transient Convective Heat Transfer for Supercritical Water in a Vertical Tube)

  • 이상호
    • 설비공학논문집
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    • 제17권12호
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    • pp.1095-1105
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    • 2005
  • Numerical analysis has been carried out to investigate transient turbulent convective heat transfer in a vertical tube for supercritical water near the thermodynamic critical point. Heat transfer and fluid flow in the tube we strongly coupled due to the large variations of thermodynamic and transport properties such as density, specific heat, and turbulent viscosity. As pressure in the tube approaches to the critical pressure, the properties variation with time becomes larger. Heat transfer coefficient rapidly decreases along the tube near the pseudocritical temperature at the tube wall for $P_R<1.2$. Stanton number variation with time is largely reduced in the region of gas-like phase in comparison with Nusselt number. Turbulent viscosity ratio close to the wall increases near the pseudocritical temperature and it gradually decreases with time.

초임계상태의 물에 대한 관 내 층류유동장 및 열전달계수 분포특성에 관한 연구 (A Study on the Laminar Flow Field and Heat Transfer Coefficient Distribution for Supercritical Water in a Tube)

  • 이상호
    • 설비공학논문집
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    • 제15권9호
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    • pp.768-778
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    • 2003
  • Numerical analysis has been carried out to investigate laminar convective heat transfer in a tube for supercritical water near the thermodynamic critical point. Fluid flow and heat transfer are strongly coupled due to large variations of thermodynamic and transport properties such as density, specific heat, viscosity, and thermal conductivity near the critical point. Heat transfer characteristics in the developing region of the tube show transition behavior between liquid-like and gas-like phases with a peak in heat transfer coefficient distribution near the pseudocritical point. The peak of the heat transfer coefficient depends on pressure and wall heat flux rather than inlet temperature and Reynolds number, Results of the modeling provide convective heat transfer characteristics including velocity vectors, temperature, and the properties as well as the heat transfer coefficient. The effect of proximity to the critical point is considered and a heat transfer correlation is suggested for the peak of Nusselt number in the tube.

Laminar Forced Convective Heat Transfer to Near-Critical Water in a Tube

  • Lee, Sang-Ho
    • Journal of Mechanical Science and Technology
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    • 제17권11호
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    • pp.1756-1766
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    • 2003
  • Numerical modeling is carried out to investigate forced convective heat transfer to near-critical water in developing laminar flow through a circular tube. Due to large variations of thermo-physical properties such as density, specific heat, viscosity, and thermal conductivity near thermodynamic critical point, heat transfer characteristics show quite different behavior compared with pure forced convection. With flow acceleration along the tube unusual behavior of heat transfer coefficient and friction factor occurs when the fluid enthalpy passes through pseudocritical point of pressure in the tube. There is also a transition behavior from liquid-like phase to gas-like phase in the developing region. Numerical results with constant heat flux boundary conditions are obtained for reduced pressures from 1.09 to 1.99. Graphical results for velocity, temperature, and heat transfer coefficient with Stanton number are presented and analyzed.

A Numerical Study on the Laminar Flow Field and Heat Transfer Coefficient Distribution for Supercritical Water in a Tube

  • Lee Sang-Ho
    • International Journal of Air-Conditioning and Refrigeration
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    • 제13권4호
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    • pp.206-216
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    • 2005
  • Numerical analysis has been carried out to investigate laminar convective heat transfer at zero gravity in a tube for supercritical water near the thermodynamic critical point. Fluid flow and heat transfer are strongly coupled due to large variation of thermodynamic and transport properties such as density, specific heat, viscosity, and thermal conductivity near the critical point. Heat transfer characteristics in the developing region of the tube show transition behavior between liquid-like and gas-like phases with a peak in heat transfer coefficient distribution near the pseudo critical point. The peak of the heat transfer coefficient depends on pressure and wall heat flux rather than inlet temperature and Reynolds number. Results of the modeling provide convective heat transfer characteristics including velocity vectors, temperature, and the properties as well as the heat transfer coefficient. The effect of proximity on the critical point is considered and a heat transfer correlation is suggested for the peak of Nusselt number in the tube.

초임계 환경으로 분사되는 액체 연료 제트의 분사 거동 특성 (Characteristics of Liquid Fuel Jet Injected into Supercritical Environment)

  • 안정우;최명환;이준;구자예
    • 한국항공우주학회지
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    • 제50권5호
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    • pp.333-338
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    • 2022
  • 쉐도우그래프(Shadowgraph) 기법을 통해 케로신의 대체 물질인 데칸/메틸사이클로헥산 혼합연료를 사용하는 단일 제트(jet)를 초임계 환경으로 분사하여 제트의 거동을 가시화하였다. Tr = 0.484인 연료 제트의 분사 차압 ∆P는 0.5 MPa로 일정하게 유지하였고 혼합연료의 임계점 이상에서 실험을 진행하였으며 챔버 내부 환산온도 Tr(=T/Tc)를 1.00~1.23, 환산압력 Pr(=P/Pc)을 1.00, 1.38로 변화하여 실험결과를 분석하였다. 초임계 환경으로 분사되는 제트의 밀도감소 지표로써 후처리 된 제트 이미지의 밝기 강도를 챔버 내부 온도와 압력을 변화시켜 관찰하였다. 챔버 내부 온도가 상승할 때 제트의 밝기 강도 감소 폭이 커지는 것을 확인하였으며, 동일 온도일 때 챔버 내부 압력이 높을 경우 제트의 밝기 강도 감소가 지연되는 것을 확인하였다. 챔버 내부 압력이 높을 경우 연료의 유사 임계온도(pseudocritical temperature)가 증가하고 연료 제트의 밀도감소에 필요한 온도가 상승하여 밝기 강도 변화가 지연되는 근거로 판단하였다.

수평 직사각 덕트 내 임계점 부근 물의 대류열전달 특성 (Convective Heat Transfer to Water near the Critical Region in Horizontal Rectangular Ducts)

  • 이상호
    • 대한기계학회논문집B
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    • 제36권5호
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    • pp.477-485
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    • 2012
  • 수평 덕트 내 임계점부근의 유체 유동 및 열전달특성은 중력과 함께 임계영역에서의 열역학 및 전달 물성치의 많은 변화와 직접적으로 연관되어 있다. 본 연구에서는 수평 직사각 덕트 내 임계점부근의 물에 대한 대류열전달특성을 전산해석을 통하여 분석하였다. 이를 통해 국부적인 열전달계수와 유속, 온도, 그리고 물성치분포를 포함한 대류열전달특성에 대해 임계점 근접효과와 함께 비교하였다. 벽으로부터의 열전달에 따른 유체 밀도감소로 덕트 내 유동방향으로의 유속증가와 함께 유체가 액체에서 기체 같은 상태로 천이하는 형태의 유동장특성을 보여준다. 덕트의 윗면, 옆면, 그리고 아래면 각각의 국부적인 열전달계수분포에 큰 차이가 있으며 준임계점 온도부근에서 난류전달특성의 향상으로 열전달계수의 최대치에 이르게 된다. Nu 수는 덕트 내 압력과 종횡비에 영향을 받으며 임계압에 가까워질수록 최대 Nu 수는 급격히 증가하게 된다. 이와 함께 기존의 열전달상관식을 통한 결과와 예측된 Nu 수 분포를 비교하였다.