• 제목/요약/키워드: Magneto-flow-thermal

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145kV 40kA 3상 GIS 모선의 온도상승 예측 (Temperature Rise Prediction of 145kV 40kA Three-phase GIS Bus Bar)

  • 김중경;이지연;정상용;한성진
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 제39회 하계학술대회
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    • pp.842-843
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    • 2008
  • Many works on the temperature prediction of power apparatus have usually done by coupled magneto-thermal analysis. However, this method can not consider the internal gas or oil flow in the power apparatus. This paper proposes a new coupled magneto-thermal-flow analysis considering Navier-Stokes equations. The convection heat transfer coefficient is calculated analytically and is applied to the boundary condition to the proposed method. Temperature distribution of 145kV 40kA three-phase GIS bus bar model is obtained by coupled magneto-thermal-flow analysis and shows good agreement with the experimental data.

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열유동을 고려한 GIS 모선의 온도상승 예측 (Temperature Rise Prediction of GIS Bus Bar Considering Thermal Flow)

  • 김중경;오년호;이지연;한성진
    • 전기학회논문지
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    • 제58권4호
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    • pp.742-747
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    • 2009
  • Many works on the temperature distribution of power apparatus have usually done by coupled magneto-thermal analysis. Such a method can not consider the internal gas or oil flow in the power apparatus such as gas insulated switchgear, GIS bus bar, and power transformer. Moreover it can not show the internal temperature distribution of the power apparatus exactly. This paper proposes a coupled magneto-thermal-flow analysis considering Navier-Stokes equations. The convection heat transfer coefficient is calculated analytically by applying Nusselt number for natural convection and is applied to the boundary condition of proposed method. Temperature distribution of the GIS bus bar model considering thermal flow is obtained by the proposed method and shows good agreement with the experimental data.

A 3-D Steady-State Analysis of Thermal Behavior in EHV GIS Busbar

  • Lei, Jin;Zhong, Jian-ying;Wu, Shi-jin;Wang, Zhen;Guo, Yu-jing;Qin, Xin-yan
    • Journal of Electrical Engineering and Technology
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    • 제11권3호
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    • pp.781-789
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    • 2016
  • Busbar has been used as electric conductor within extra high voltage (EHV) gas insulated switchgear (GIS), which makes EHV GIS higher security, smaller size and lower cost. However, the main fault of GIS is overheating of busbar connection parts, circuit breaker and isolating switch contact parts, which has been already restricting development of GIS to a large extent. In this study, a coupled magneto-flow-thermal analysis is used to investigate the thermal properties of GIS busbar in steady-state. A three-dimensional (3-D) finite element model (FEM) is built to calculate multiphysics fields including electromagnetic field, flow field and thermal field in steady-state. The influences of current on the magnetic flux density, flow velocity and heat distribution has been investigated. Temperature differences of inner wall and outer wall are investigated for busbar tank and conducting rod. Considering the end effect in the busbar, temperature rise difference is compared between end sections and the middle section. In order to obtain better heat dissipation effect, diameters of conductor and tank are optimized based on temperature rise simulation results. Temperature rise tests have been done to validate the 3-D simulation model, which is observed a good correlation with the simulation results. This study provides technical support for optimized structure of the EHV GIS busbar.

와전류를 열원으로 고려한 자계-열계 위상최적설계 (Topology Optimization of Magneto-thermal Systems Considering Eddy Current as Joule Heat)

  • 심호경;왕세명
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 B
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    • pp.651-652
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    • 2006
  • This research presents a topology optimization for manipulating the main heat flow in coupled magneto-thermal systems. The heat generated by eddy currents is considered in the design domain assuming an adiabatic boundary. For a practical optimization, the convection condition is considered in the topological process of the thermal field. Topology design sensitivity is derived by employing the discrete system equations combined with the adjoint variable method. As numerical examples, a simple iron and a C-core design heated-up by eddy currents demonstrate the strength of the proposed approach to solve the coupled problem.

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열 유입률을 고려한 자계-열계 다목적 위상최적설계 (Multi-objective Topology Optimization of Magneto-Thermal Problem considering Heat Flow Rate)

  • 심호경;왕세명;문희곤
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.138-139
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    • 2007
  • This research provides machine designers with some intuition to consider both, magnetic and heat transfer effects. A topological multi-objective function includes magnetic energy and heat inflow rate to the system, which equals to the total heat dissipation by conduction and convection. For the thermal field regarding the heat inflow, introduced as a reaction force, topology design sensitivity is derived by employing discrete equations. The adjoint variable method is used to avoid numerous sensitivity evaluations. As a numerical example, a C-core design excited by winding current demonstrates the strength of the multi-physical approach.

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Thermal-magneto-mechanical stability analysis of single-walled carbon nanotube conveying pulsating viscous fluid

  • R. Selvamani;M. Mahaveer Sree Jayan;Marin Marin
    • Coupled systems mechanics
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    • 제12권1호
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    • pp.21-40
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    • 2023
  • In thisstudy, the vibration problem ofthermo elastic carbon nanotubes conveying pulsating viscous nano fluid subjected to a longitudinal magnetic field is investigated via Euler-Bernoulli beam model. The controlling partial differential equation of motion is arrived by adopting Eringen's non local theory. The instability domain and pulsation frequency of the CNT is obtained through the Galerkin's method. The numerical evaluation of thisstudy is devised by Haar wavelet method (HWM). Then, the proposed model is validated by analyzing the critical buckling load computed in presentstudy with the literature. Finally, the numerical calculation ofsystem parameters are shown as dispersion graphs and tables over non local parameter, magnetic flux, temperature difference, Knudsen number and viscous parameter.

고엔탈피 열유동 발생용 고주파 유도결합 플라즈마 토치의 최적 설계변수 해석 (Optimum design analysis of ICP(Inductively Coupled Plasma) torch for high enthalpy thermal plasma flow)

  • 서준호
    • 한국항공우주학회지
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    • 제40권4호
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    • pp.316-329
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    • 2012
  • 초음속 플라즈마 풍동 등, 항공우주 응용을 위한 고순도, 고엔탈피 열유동 발생 장치로서 널리 쓰이고 있는 유도결합 플라즈마 토치에 대해, 전기회로 이론과 결합된 해석적 및 수치해석적 자기유체역학 모델을 이용하여 토치 설계변수(주파수 $f$, 가둠관 반지름 $R$ 및 코일 감은수 $N$) 변화에 따른 전기적 특성 변수(등가 저항, 등가 인덕턴스 및 결합효율)의 거동을 추적함으로써 최적 설계 변수해석을 수행하였다. 계산 결과, 등가저항은 $f$, $R$$N$이 증가함에 따라 커지는 반면, 등가 인덕턴스는 $f$가 증가할수록 작아지지만 $R$$N$의 증가에 대해서는 커지는 경향이 있음을 파악하였다. 이로부터, 10 kW 급 고주파 유도결합 플라즈마 토치의 경우, 결합효율을 극대화시키는 최적의 주파수, 가둠관 반지름 및 코일 감은수의 범위를 각각 $f$=4~6 MHz, $R$=17~25 mm 및 $N$=3~4 로 추정하였다.