• Title/Summary/Keyword: Unsteady Thermal Analysis

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Assessment of Voigt and LRVE models for thermal shock analysis of thin FGM blade: A neutral surface approach

  • Ankit Kumar;Shashank Pandey
    • Structural Engineering and Mechanics
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    • 제85권1호
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    • pp.105-118
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    • 2023
  • The present work is an attempt to develop a simple and accurate finite element formulation for the assessment of thermal shock/thermally induced vibrations in pretwisted and tapered functionally graded material thin (FGM) blades obtained from Voigt and local representative volume elements (LRVE) homogenization models, based on neutral surface approach. The neutral surface of the FGM blade does not coincide with its mid-surface. A finite element model (FEM) is developed using first-order shear deformation theory (FSDT) and the FGM turbine blade is modelled according to the shallow shell theory. The top and the bottom layers of the FGM blade are made of pure ceramic and pure metal, respectively and temperature-dependent material properties are functionally graded in the thickness direction, the position of the neutral surface also depends on the temperature. The material properties are estimated according to two different homogenization models viz., Voigt or LRVE. The top layer of the FGM blade is subjected to high temperature and the bottom surface is either thermally insulated or kept at room temperature. The solution of the nonlinear profile of the temperature in the thickness direction is obtained from the Fourier law of heat conduction in the unsteady state. The results obtained from the present FEM are compared with the benchmark examples. Next, the effect of angle of twist, intensity of thermal shock, variable chord and span and volume fraction index on the transient response due to thermal shock obtained from the two homogenization models viz., Voigt and LRVE scheme is investigated. It is shown that there can be a significant difference in the transient response calculated by the two homogenization models for a particular set of material and geometric parameters.

루츠식 진공 펌프의 유동 및 부산물 입자 궤적에 대한 해석 (Analysis on the Flow and the Byproduct Particle Trajectory of Roots Type Vacuum Pump)

  • 이찬;길현권;노명근
    • 한국유체기계학회 논문집
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    • 제14권5호
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    • pp.18-23
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    • 2011
  • A CFD analysis method is developed and applied for investigating the gas flow and the byproduct particle trajectory in Roots type vacuum pump. The internal fluid flow and thermal fields between the rotors and the housing of vacuum pump are analyzed by using the dynamic mesh, the numerical methods for unsteady 2-D Navier-Stokes equation and the standard k-$\varepsilon$ turbulence model of the Fluent code. Coupled with the flow simulation results, the particle trajectory of the byproduct flowing into the pump with gas stream is analyzed by using discrete phase modeling technique. The CFD analysis results show the pressure, the velocity and the temperature distributions in pump change abruptly due to the rotation of rotors, and back flows are produced due to the strong reverse pressure gradients at rotor/rotor and rotor/housing clearances. The predicted byproduct particle trajectory results also show the particles impinge on the clearance surfaces between the housing and the rotor of pump and then may form the deposit layer causing the failure of pump.

열 유동 현상을 고려한 마그네슘 용탕 직접 압연공정 해석 (Analysis of the Molten Metal Direct Rolling for Magnesium Considering Thermal Flow Phenomena)

  • 배정운;강충길;강석봉
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.786-789
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    • 2005
  • The proper parameters in a twin roll strip casting are important to obtain the stabilization of the Mg sheet. What is examined in this paper is the quantitative relationships of the important control parameters such as the roll speed, height of pool region, outlet size of nozzle, solidification profile and the final point of solidification in a twin roll strip casting Unsteady conservation equations were used for transport phenomena in the pool region of a twin roll strip casting in order to predict a velocity, temperature distributions of fields and a solidification process of molten magnesium. The energy equation of cooling roll Is solved simultaneously with the conservation equations of molten magnesium In order to consider the heat transfer through the cooling roil. The finite difference method (2-D) and the finite element method (2-D) are used in the analysis of pool region and cooling roil to reduce computing time and to improve the accuracy of calculation respectively.

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돌출높이와 초기온도 변화에 따른 연소실 벽면에서의 열유속에 관한 연구 (A Study of Heat Flux According to the Initial Temperature of Combustion Chamber and Blight of Probe in a Constant Volume Combustion Chamber)

  • 이치우
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권7호
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    • pp.1055-1062
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    • 2004
  • As for the Production of internal combustion engines there has been further movement toward development of high Performance engines with improved fuel efficiency as well as a lightweight and a small size. These tendencies help to solve the problems in engines for example, such as thermal load. abnormal combustion and so on. In order to investigate these Problems, a thin film-type probe for measuring instantaneous temperature has been suggested. A method for manufacturing such a probe was established in this study The instantaneous surface temperature of a constant volume combustion chamber was measured by using this probe and the heat flux was obtained through Fourier analysis In order to thoroughly understand the characteristics of combustion. authors measured wall temperature of combustion chamber and calculated heat flux through a cylinder wall while varying the protrusion height of probe. For these Purposes, the instantaneous surface temperature probe was developed. thereby making possible the analysis of instantaneous temperature of wall surface and the detection of unsteady heat flux in the constant volume combustion chamber.

정적 연소기에서 순간온도 프로브의 돌출높이에 따른 열유속에 관한 연구 (A Study of Heat Flux on the Height of an Instantaneous Temperature Probe in a Constant Volume Combustion Chamber)

  • 이치우
    • 열처리공학회지
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    • 제16권4호
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    • pp.216-223
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    • 2003
  • In the production of internal combustion engines, there have been trends to develop the high performance engines with improved fuel efficiency, lighter weights and smaller sizes. This trends help to answer problems related to thermal load and abnormal combustion, etc. in these engines. In order to investigate these problems, a thin film-type probe and its manufacturing method for instantaneously measuring surface-temperatures have been proposed in this study, Instantaneous surface temperature of a constant volume combustion chamber was measured by this probe and heat flux was obtained by Fourier analysis. In order to thoroughly understand the characteristics of combustion, the authors measured the wall temperature of the combustion chamber and computed heat flux through a cylinder wall while varying the protrusion height of the probe have been measured. To achieve the above goals, a instantaneous temperature probe was developed, thereby making possible the analysis of the instantaneous temperature of wall surface and the detection of unsteady heat flux in the constant volume combustion chamber.

Energy effects on MHD flow of Eyring's nanofluid containing motile microorganism

  • Sharif, Humaira;Naeem, Muhammad N.;Khadimallah, Mohamed A.;Ayed, Hamdi;Bouzgarrou, Souhail Mohamed;Al Naim, Abdullah F.;Hussain, Sajjad;Hussain, Muzamal;Iqbal, Zafar;Tounsi, Abdelouahed
    • Advances in concrete construction
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    • 제10권4호
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    • pp.357-367
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    • 2020
  • The impulse of this paper is to examine the influence of unsteady flow comprising of Eyring-Powell nanofluid over a stretched surface. This work aims to explore efficient transfer of heat in Eyring-Powell nanofluid with bio-convection. Nanofluids possess significant features that have aroused various investigators because of their utilization in industrial and nanotechnology. The influence of including motile microorganism is to stabilize the nanoparticle suspensions develop by the mixed influence of magnetic field and buoyancy force. This research paper reveals the detailed information about the linearly compressed Magnetohydrodynamics boundary layer flux of two dimensional Eyring-Powell nanofluid through disposed surface area due to the existence of microorganism with inclusion the influence of non- linear thermal radiation, energy activation and bio-convection. The liquid is likely to allow conduction and thickness of the liquid is supposed to show variation exponentially. By using appropriate similarity type transforms, the nonlinear PDE's are converted into dimensionless ODE's. The results of ODE's are finally concluded by employing (HAM) Homotopy Analysis approach. The influence of relevant parameters on concentration, temperature, velocity and motile microorganism density are studied by the use of graphs and tables. We acquire skin friction, local Nusselt and motil microorganism number for various parameters.

전기전도성 이방성 복합재료 방전가공의 수치 해석 (Numerical Analysis of the Electro-discharge Machining Process of a Conductive Anisotropic Composite)

  • 안영철;천갑제
    • Korean Chemical Engineering Research
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    • 제47권1호
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    • pp.72-78
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    • 2009
  • 전기전도성 이방성 복합재료의 방전가공에 대하여 비정상상태 수식모델을 세우고 갤러킨의 유한요소법으로 해를 구하였다. 피삭재의 온도 분포와 분화구의 모양 및 공작물 제거 속도를 공정 매개변수에 관하여 구득하였다. 계산의 정확도와 효율을 위하여 앞선 연구에서 최적치로 선정된 $12{\times}12$ 요소의 비규칙 체눈을 사용하였다. 알루미나/티타늄 카바이드 복합재료의 물성을 재료의 물성으로 선정하였고 51.4 V의 전압과 7 A의 전류를 갖는 전력을 적용하였으며 제거 효율을 10%로 전열 이방성 계수를 2와 3으로 가정하였다. 불꽃이 일어나면서 피삭재는 즉시 녹기 시작하였고 열적 손상 영역이 형성되었다. 또한 시간이 흘러감에 따라서 분화구의 경계가 이동하는 것이 확인되었다. 반경 방향과 축 방향의 열전도도가 독립적으로 커지면 온도분포와 분화구의 모양이 각각 반경 방향과 축 방향으로 이동하였다. 공작물 제거 속도는 축 방향의 열전도도보다 반경 방향의 열전도도가 증가할 때 더욱 커지는 것으로 나타났다.

가스차단기 최적설계를 위한 $SF_6$ 아크 플라즈마 CAE 해석 (CAE Analysis of $SF_6$ Arc Plasma for a Gas Circuit Breaker Design)

  • 이종철;안희섭;김윤제
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.365-368
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    • 2002
  • The design of industrial arc plasma systems is still largely based on trial and error although the situation is rapidly improving because of the available computational power at a cost which is still fast coming down. The desire to predict the behavior of arc plasma system, thus reducing the development cost, has been the motivation of arc research. To interrupt fault current, the most enormous duty of a circuit breaker, is achieved by separating two contacts in a interruption medium, $SF_{6}$ gas or air etc., and arc plasma is inevitably established between the contacts. The arc must be controlled and interrupted at an appropriate current zero. In order to analyze arc behavior in $SF_{6}$ gas circuit breakers, a numerical calculation method combined with flow field and electromagnetic field has been developed. The method has been applied to model arc generated in the Aachen nozzle and compared the results with the experimental results. Next, we have simulated the unsteady flow characteristics to be induced by arcing of AC cycle, and conformed that the method can predict arc behavior in account of thermal transport to $SF_{6}$ gas around the arc, such as increase of arc voltage near current zero and dependency of arc radius on arc current to maintain constant arc current density.

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냉.온열의 반복 자극이 전립선 내부의 온도 분포에 미치는 영향 (The Effects of Warm and Cold Stimulations on the Temperature Distribution in the Prostate)

  • 문우석;백병준;박복춘;김철생
    • 대한의용생체공학회:의공학회지
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    • 제23권6호
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    • pp.467-475
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    • 2002
  • 가온 프로브를 사용하여 직장을 통한 온열치교법이 비침습적 전립선치료의 한 방법으로 사용되고 있으나 직장벽 내에서의 과도한 온도에 의한 가열은 장점막의 손상을 입힐 뿐만 아니라 전립선 전체를 적절한 온도까지 가열하기가 어렵다고 알려져 있다. 따라서 전립선과 온열치료 시스템 사이에서 일어나는 열전달 메카니즘에 관한 보다 정확한 이해가 요구된다. 본 연구에서는 전립선 표면에 가해진 냉.온 자극이 전립선 내부의 온도 분포에 미치는 영향을 수치해석을 이용하여 검토하였다. 유한체적 프로그램인 "FLUENT"를 사용하여 비정상상태의 열전도방정식을 해석하여 전립선 내의 시간에 따른 온도분포를 고찰하고, 가열 및 냉각시간, 가열 및 냉각온도 등이 전립선 내부의 온도분포와 온열효과가 전달되는 영역을 규명하였다. 온열 치료법(40~45$^{\circ}C$)에 의해 온열효과가 나타나는 전립선의 내부 영역을 가시화하고, 가열/냉각의 반복 자극이 전립선의 온도분포에 미치는 영향을 조사한 결과 통상적인 온열 치료법에 의한 온열효과는 전립선의 낮은 열전도도의 영향에 의해 전립선의 일부 영역에만 도달되는 한계를 보였다. 가열/냉각의 냉.온 자극을 반복하면서 열적 자극효과를 고려한 냉.온 치료시스템을 개발하기 위하여 냉.온 자극 온도와 시간이 전립선 내부에 미치는 열전달 메카니즘을 고찰하여 원하는 자극주기와 전립선 내부 온도자극 정도를 설정하기 위한 유효한 자극패턴을 제시할 수 있는 기초자료를 획득하였다. 또한, 전립선 조직내부를 통과하는 혈액의 유동이 조직의 온도분포 및 열전달에 미치는 영향을 검토한 결과 냉온 자극 강도에 큰 영향을 미치지 않을 것으로 확인되었다. 이러한 결과는 냉온자극에 의한 전립선치료기의 자극프로브의 형상 설계와 가열에 의한 온열 효과 및 가열/냉각의 반복에 의한 열자극 효과를 동시에 얻을 수 있는 자극시스템을 개발하는 데에 유용하게 사용할 수 있으리라 사료된다.

단열 파우더를 채용한 LNGCC의 BOR예측에 관한 연구 (A Study on the Boil-Off Rate Prediction of LNG Cargo Containment Filled with Insulation Powders)

  • 한기철;황순욱;조진래;김준수;윤종원;임오강;이시복
    • 한국전산구조공학회논문집
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    • 제24권2호
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    • pp.193-200
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    • 2011
  • 본 연구를 통해 superlite라 불리는 단열 파우더를 채용한 NO96 멤브레인 타입 LNG선 단열 화물창의 만선항해 시 LNG의 BOR(Boil-Off Rate) 예측모델을 제시하였다. LNGCC(LNG Cargo Containment)의 비정상상태 열전달 FEM모델은 만선항해 시 대기 및 해수 조건을 반영하고 복잡한 화물창 단열구조에 균질화 기법을 적용하여 구축하였다. BOR은 만선항해중 LNGCC 내부로 침입하는 총 열량을 이용하여 평가되었으며, 주요 변수에 따른 BOR의 변화는 파라메트릭 열전달해석을 통하여 분석하였다. 그리고 파라메트릭 BOR 특성해석 결과를 토대로 LNG선의 탱크 크기, 단열층의 두께 그리고 superlite의 열전도율을 함수로 하는 BOR 예측모델을 유도하였다. 비선형 과도 열전달해석을 통해 직접 구한 BOR과의 비교를 통해 유도한 예측모델은 최대 1% 이내의 상대오차를 나타내었다.