• 제목/요약/키워드: continuous turbulence

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유한요소법을 이용한 연속주조공정의 연계해석 (Coupled Analysis of Continuous Casting by FEM)

  • 문창호;황상무
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2001년도 추계학술대회 논문집
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    • pp.181-185
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    • 2001
  • Three-dimensional finite-element-based numerical model of turbulent flow, heat transfer, macroscopic solidification and inclusion trajectory in a continuos steel slab caster was developed Turbulence was incorporated using the Improved Low-Re turbulence model with positive preserving approach. The mushy region was modeled as the porous media with average effective viscosity. A series of simulations was carried out to investigate the effects of the casting speed, the slab size, the delivered superheat the immersion depth of the SEN on the transport phenomena. In the absence of any known experimental data related to velocity profiles, the numerical predictions of the solidified profile on a caster was compared with breakouts data and a good agreement was found.

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연속류도로 합류영향구간 교통류 난류현상 분석 (Analysis of Turbulence on a Merge Influence Section in Uninterrupted Facility)

  • 김현상;도철웅
    • 한국도로학회논문집
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    • 제11권2호
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    • pp.217-228
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    • 2009
  • 연속류도로 합류영향구간에서는 본선과 다른 교통특성을 가진 연결로교통류의 합류로 차로변경 및 가감속과 같은 차량간의 불규칙한 상호작용이 발생하여 교통류의 난류현상을 야기한다. 따라서, 난류현상은 운행상태를 고려하여 연속된 지점간의 불안정한 교통특성으로 판단하여야 한다. 본 연구에서는 합류영향구간에 차로-지점별 검지기를 설치하여 시공간적으로 연속된 교통자료를 구축하였으며, 지점간에 유의한 속도변화를 판단하는 기준으로 최소유의차(LSD) 통계값을 산정하여 난류현상을 분석하였다. 분석결과, 합류영향구간 난류현상은 운행상태에 따라 발생권역 및 심각도가 변화되는 것으로 나타났다. 이에 따라 난류현상에 의한 최대 합류영향권역은 교통량이 증가하는 혼잡전 운행상태에서 보여지며, 속도변화특성에 따라 상류 100m$\sim$하류 100m의 "감속구간"과 하류 100m$\sim$하류 400m의 "감속속도유지 및 가속구간"으로 구분할 수 있었다.

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EMBR이 적용된 연속주조 몰드 내부에서의 유동장 해석 (A Numerical Study on the Flow Fields in the Continuous Casting Mold with Electromagnetic Brake)

  • 하만영;이현구
    • 한국전산유체공학회지
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    • 제4권2호
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    • pp.47-56
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    • 1999
  • We developed a computer program to simulate the flow field in the presence of electro-magnetic fields. The steady, two-dimensional conservation equations for mass and momentum were solved simultaneously with Maxwell equations for electro-magnetic fields. Using this program, a numerical analysis was carried out to analyze the fluid flow in the continuous casting mold with electromagnetic brake. The effects of magnetic fields size, nozzle angle and EMBR yoke position on the flow fields in the continuous casting were investigated in the present study. The flow fields with EMBR were compared with those without EMBR. We also investigated the distribution of tracer concentration as a function of time in order to calculate their residence time in the mold with EMBR. By controlling the flow fields properly using EMBR, we can prevent the direct flow impaction on the wall which can give a damage on the mold surface and reduce surface defects of stainless steel sheet products.

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원형관-평판휜 형상의 밀집형 열교환기 내 공기 측대류열전달특성에 대한 수치해석 (Numerical Analysis for the Air-Side Convective Heat Transfer Characteristics in a Compact Heat Exchanger with Circular Tubes and Continuous Plate Fins)

  • 모정하;이상호
    • 대한기계학회논문집B
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    • 제31권12호
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    • pp.994-1001
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    • 2007
  • Numerical analysis has been carried out to investigate air-side convective heat transfer characteristics in a compact heat exchanger with circular tubes and continuous plate fins. Simulation results such as air velocity and temperature distributions are presented, and heat transfer coefficients are compared with previous experimental correlations. Three models of standard and RNG $k-{\varepsilon}$, and Reynolds stress are applied for turbulence model applicability. Predicted heat transfer coefficient from the models of standard and RNG $k-{\varepsilon}$ are very close to those of the heat transfer correlations while there are relatively large difference, more than 17 percentage in the result from the Reynolds stress model. From the calculated results a correlation for Colburn j factor in the compact heat exchanger system is suggested.

Type III 수소 저장 용기에서 난류 모델(Turbulence Model)에 따른 충전(Filling)현상의 수치 해석적 연구 (Numerical Analysis of Fillling Flow in Type III Hydrogen Tank with Different Turbulence Models)

  • 김무선;류준형;이성권;최성웅
    • 한국수소및신에너지학회논문집
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    • 제32권6호
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    • pp.483-488
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    • 2021
  • With continuous emission of environmental pollutants and an increase in greenhouse gases such as carbon dioxide, demand to seek other types of energy sources, alternative energy, was needed. Hydrogen, an eco-friendly energy, is attracting attention as the ultimate alternative energy medium. Hydrogen storage technology has been studied diversely to utilize hydrogen energy. In this study, the gas behavior of hydrogen in the storage tank was numerically examined under charge conditions for the Tpe III hydrogen tank. Numerical results were compared with the experimental results to verify the numerical implementation. In the results of pressure and temperature values under charge condition, the Realizable k-ε model and Reynold stress model were quantitatively matched with the smallest error between numerical and experimental results.

EMBR을 이용한 연주공정에서의 난류유동 및 응고에 대한 연구 (A Study on the Turbulent Flow and Solidification in a Continuous Casting Process with Electromagnetic Brake)

  • 김덕수;김우승
    • 대한기계학회논문집B
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    • 제23권3호
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    • pp.374-387
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    • 1999
  • Two-dimensional turbulent fluid flow and solidification were investigated in a continuous casting process of a steel slab with electromagnetic field. The electromagnetic field was described by the Maxwell equations. The enthalpy-porosity relation was employed to suppress the velocity within a mushy region. A revised low-Reynolds number $k-{\varepsilon}$ turbulence model was used to consider the turbulent effects. It is shown that the temperature gradient in the casting direction in the case with EMBR becomes very weak compared to that of the case without EMBR. The results also show that the velocity profiles of the case with solidification are quite different from those of the case without solidification.

열농도대류를 고려한 연속주조공정의 수치해석 (Numerical analysis of the continuous casting process in the presence of thermo-solutal convection)

  • 정재동;유호선;이준식
    • 대한기계학회논문집B
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    • 제21권3호
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    • pp.445-456
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    • 1997
  • Continuous casting process is numerically analyzed using the continuum model in a non-orthogonal coordinate system. Flow damping in the mush is modeled by combining the viscosity dependence on liquid fraction in dilute mush and the permeability dependence on liquid fraction in concentrated mush. The effect of turbulence is indirectly considered by effective diffusivity determined elsewhere by experiment. The main objective is to investigate the effects of casting parameters such as casting speed and tundish superheat on the distribution of surface temperature, shell thickness, metallurgical length and centerline segregation. Some of the computed results are compared with available experiments, and reasonable agreements are obtained.

연속주조공정에서의 유동과 응고에 대한 유한요소 모델링 (A Finite Element Modeling on the Fluid Flow and Solidification in a Continuous Casting Process)

  • 김태헌;김덕수;최형철;김우승;이세균
    • 대한기계학회논문집B
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    • 제23권7호
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    • pp.820-830
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    • 1999
  • The coupled turbulent flow and solidification is considered in a typical slab continuous easting process using commercial program FIDAP. Standard $k-{\varepsilon}$ turbulence model is modified to decay turbulent viscosity in the mushy zone and laminar viscosity is set to a sufficiently large value at the solid region. This coupled turbulent flow and solidification model also contains thermal contact resistance due to the mold powder and air gap between the strand and mold using an effective thermal conductivity. From the computed flow pattern, the trajectory of inclusion particles was calculated. The comparison between the predicted and experimental solidified shell thickness shows a good agreement.

범용 CFD 코드에서 석탄 가스화 및 연소 모델링에 관한 이해 (Understanding Coal Gasification and Combustion Modeling in General Purpose CFD Code)

  • 이후경;최상민;김봉근
    • 한국연소학회지
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    • 제15권3호
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    • pp.15-24
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    • 2010
  • The purpose of this study is to assess approaches to modeling coal gasification and combustion in general purpose CFD codes. Coal gasification and combustion involve complex multiphase flows and chemical reactions with strong influences of turbulence and radiation. CFD codes would treat coal particles as a discrete phase and gas species are considered as a continuous phase. An approach to modeling coal reaction in $FLUENT^{(R)}$, selected in this study as a typical commercial CFD code, was evaluated including its devolatilization, gas phase reactions, and char oxidation, turbulence, and radiation submodels. CFD studies in the literature were reviewed to show the uncertainties and limitations of the results. Therefore, the CFD analysis gives useful information, but the results should be carefully interpreted based on understandings on the uncertainties associated with the modelings of coal gasification and combustion.

Numerical Analysis of Plume Characteristics and Liquid Circulation in Gas Injection Through a Porous Plug

  • Choi, Choeng-Ryul;Kim, Chang-Nyung
    • Journal of Mechanical Science and Technology
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    • 제14권12호
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    • pp.1365-1375
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    • 2000
  • Two phase flows have been numerically calculated to analyze plume characteristics and liquid circulation in gas injection through a porous plug. The Eulerian approach has been for formulation of both the continuous and dispersed phases. The turbulence in the liquid phase has been modeled using the standard $textsc{k}$-$\varepsilon$ turbulence model. The interphase friction coefficient has been calculated using correlations available in the literature. The turbulent dispersion of the phase has been modeled by the "dispersion Prand시 number". The predicted mean flows is compared well with the experimental data. The plume region area and the axial velocities are increased with the gas flow rate and with the decrease in the inlet area. The turbulent intensity also shows the same trend. Also, the space-averaged turbulent kinetic energy for various gas flow rates and inlet areas has been obtained. The results are of interest in the design and operation of a wide variety of materials and chemical processing operations.

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