• 제목/요약/키워드: 채널난류

검색결과 74건 처리시간 0.019초

분류유동이 있는 채널 난류유동의 LES 해석 (LES for Turbulent Channel Flow with Blowing Velocity)

  • 나양;이창진
    • 한국항공우주학회지
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    • 제35권8호
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    • pp.699-705
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    • 2007
  • 최근의 실험 결과를 통해 하이브리드 로켓 연료의 표면에 연소가 진행되지 않은 채 남아있는 고립된 부분들이 존재함을 확인하였다. 이러한 불규칙적인 spot은 연료의 기화로 인한 분출유동(blowing velocity)과 산화제의 유동 사이에서 발생하는 경계층 교란에 의한 현상인 것으로 여겨진다. 본 연구에서는 22,500의 높은 Reynolds수와 벽면분출 현상을 효과적으로 처리할 수 있도록 LES 기법을 이용하여, 연료 표면 근처의 난류 유동 및 열전달 특성을 해석하였다. 비록 원형 그레인 아닌 단순채널 형상을 고려하였으며 화학반응이 없는 경우의 난류유동을 해석하였으나, 연료 표면에서 발생하는 불규칙한 spot의 발생은 경계층과 분출되는 유동이 상호 간섭함으로써 난류구조들의 기구학적 특성을 변경시키기 때문인 것으로 추측되는 결과들을 얻을 수 있었다.

벽면난류에 대한 미세와 구조와 입자분산 (Particle Dispersion and Fine Scale Eddies in Wall Turbulence)

  • 강신정;타나하시 마모루;미야우치 토시오
    • 대한기계학회논문집B
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    • 제30권11호
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    • pp.1101-1106
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    • 2006
  • To investigate a relation between fine scale eddies and particle dispersion in a near-wall turbulence, direct numerical simulations of turbulent channel flow laden particle are performed for $Re_{\tau}$=180. The motions of 0,8 million particles are calculated for several particle response times ($t_p$) which is the particle response time based on stokes’ friction law. The number density of particles has a tendency to increase with approaching the near-wall regions ($y^+$<20) except for cases of very small and large particle response times (i.e. $t_p$=0.02 and 15). Near the wall, the behavior and distribution of particles are deeply associated with the fine scale eddies, and are dependent on particle response times and a distance from the wall. The Stokes number that causes preferential distribution in turbulence is changed by a distance from the wall. The influential Stokes number based on the Burgers' vortex model is derived by using the time scale of the fine scale eddies. The influential Stokes number is also dependent on a distance from the wall and shows large value in the buffer layer.

항력저감을 위한 굽은 난류채널 유동제어 (Control of Turbulent Curved Channel Flow for Drag Reduction)

  • 최정일;성형진
    • 대한기계학회논문집B
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    • 제26권9호
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    • pp.1302-1310
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    • 2002
  • A direct numerical simulation in turbulent curved channel flow is performed. The drifting Taylor-Gortler vortices are identified by applying a conditional averaging. A new algorithm is proposed based on the wavelet transform of the wall information. A continuous wavelet transform with Marr wavelets is employed to decompose the flow signals at a chosen length scale. An active cancellation is applied to attenuate the Taylor-Gortler vortices and to reduce the wall skin friction.

2차원 채널에서 사각봉을 이용한 난류열전달 증가에 대한 수치해석 (AUGMENTATION OF TURBULENT HEAT TRANSFER IN A CHANNEL USING A SQUARE ROD)

  • 김희영;박태선
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 학술대회
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    • pp.118-124
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    • 2008
  • The characteristics of heat transfer in a two-dimensional channel obstructed by a square rod is investigated by a turbulence model. The computation is made for the six cases of different rod positions between channel walls. To analyze the wall heat transfer, the heat flux of channel walls is set as a constant value and the $k-{\epsilon}-f_{\mu}$ model is employed. Downstream the square rod, the flow recirculation region appear and they are varied by the rod position. The enhancement of the turbulent heat transfer to the wall is induced by the flow instability using a square rod. The averaged heat transfer rate is maximized at a specific rod position. Finally, the effects of square rod on unsteady flows are scrutinized with the frequency analysis.

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난류채널유동의 라그란지안 해석 (I)- 입자추적 알고리듬 평가 - (Lagrangian Investigation of Turbulent Channel Flow (I) - An Assessment of Particle Tracking Algorithms -)

  • 최정일;이창훈
    • 대한기계학회논문집B
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    • 제27권7호
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    • pp.859-866
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    • 2003
  • The Lagrangian dispserion of fluid particles in inhomogeneous turbulence is investigated by a direct numerical simulation of turbulent channel flow. Fluid particle velocity and acceleration along a particle trajectory are computed by employing several interpolation schemes such as linear interpolation, high-order Lagrange polynomial interpolation and the Hermite interpolation schemes. The performances of the schemes are evaluated through comparison of errors in computed particle positions, velocities and accelerations against spectral interpolation. Adopting the four-point Hermite interpolation in the homogeneous directions and Chebyshev polynomials in the wall-normal direction appears to produce most reliable Lagrangian statistics including acceleration correlations with a reasonable amount of computational overhead.

난류채널유동의 라그란지안 해석 (II) - 라그란지안 통계분석 - (Lagrangian Investigation of Turbulent Channel Flow (II) - Analysis of Lagrangian Statistics -)

  • 최정일;이창훈
    • 대한기계학회논문집B
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    • 제27권7호
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    • pp.867-876
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    • 2003
  • The Lagrangian dispersion of fluid particles in inhomogeneous turbulence is investigated by a direct numerical simulation of turbulent channel flow. Four points Hermite interpolation in the homogeneous direction and Chebyshev polynomials in the inhomogeneous direction is adopted to simulate the fluid particle dispersion. An inhomogeneity of Lagrangian statistics in turbulent boundary layer is investigated by releasing many particles at several different wall-normal locations and tracking those particles. The fluid particle dispersions and Lagrangian structure functions of velocity are scaled by the Kolmogorov similarity. The auto-correlations of velocity and acceleration are shown at the different releasing locations. Effect of initial particle location on the dispersion is analyzed by the probability density function at the several downstreams and time instants.

난류 채널유동에서 생성된 거대 파열 현상에 관해서 (Large Scale Bursting Event in a Channel Flow)

  • Na, Yang
    • 대한기계학회논문집B
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    • 제25권8호
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    • pp.1060-1067
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    • 2001
  • A large-scale bursting event has been analyzed in a turbulent channel flow using a data obtained from a direct numerical simulation (DNS). Large-scale, plume-like structures have been frequently observed in many experimental results, but the origin of those structures is far from being fully understood. It is believed that those large scale events occur occasionally but contribute significantly to the generation of Reynolds shear stress in the outer layer. This paper attempts to give detailed examples of those large-scale motions observed in a turbulent channel flow at relatively low Reynolds number.

난류채널유동에서의 준최적제어 평가 (Evaluation of Suboptimal Control in Turbulent Channel Flow)

  • 성형진;최정일
    • 대한기계학회논문집B
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    • 제25권9호
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    • pp.1227-1236
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    • 2001
  • A systematic analysis is made of suboptimal control for drag reduction. The influence of the amplitude of actuation (A) and the time scale of actuation ($\Delta$t(sub)a(sup)+) is evaluated. Two wall sensing variables are employed (∂w/∂y│(sub)w and ∂p/∂z│(sub)w) with two wall actuations (${\Phi}$$_2$and ${\Phi}$$_3$). To test the suboptimal control, direct numerical simulations of turbulent channel flow at Re(sub)$\tau$=100 are performed in a spectral domain. It is found that the effect of A and $\Delta$t(sub)a(sup)+∼1. The near-wall behaviors of flow structure are analyzed to characterize the drag reduction. The size effect of the sensor/actuator is examined.

블록 크기 및 난류발생기 배치에 따른 수평채널내의 열전달 및 압력강하 특성에 관한 연구 (A Study on Heat Transfer and Pressure Drop Characteristics according to Block Size and Turbulence Generator's Placement in a Horizontal Channel)

  • 서규원;임종한;윤준규
    • 한국산학기술학회논문지
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    • 제20권4호
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    • pp.639-647
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    • 2019
  • 최근 전자장비의 소형화 및, 고밀도화가 되는 반도체 집적기술의 발달로 인해 칩과 모듈에서 발생되는 내부발열량을 외부로 적절히 방출시키기 위해서 열 제어시스템 적용에 대한 연구의 중요성을 인식하고 있다. 본 연구는 SST k-${\omega}$ 난류모델을 적용하여 4개의 블록이 부착한 수평채널내에서 열전달 및 압력강하 특성을 고찰하였다. CFD 해석시 적용한 매개변수는 블록 폭, 블록 높이, 열원 및 난류발생기 배치이고, 해석시 기본 경계조건은 채널 입구의 온도 및 유속은 300 K, 3.84 m/s, 열유속은 $358W/m^2$으로 하였다. 그 결과로 블록 폭비율(w/h)이 증가할수록 열전달성능이 감소하는 반면에 블록 높이비(h/w)이 증가할수록 열전달특성은 증가하는 경향을 나타내었으며, 열원의 크기배열은 낮은 열유속에서 높은 열유속으로 증가시킬수록 열원의 영향을 받아 열전달계수는 증가하는 경향을 나타냈고, 난류발생기는 채널 입구에 가까운 블록 1번 위치의 상단에 설치했을 경우가 4개의 가열블록 전체에 가장 영향을 크게 미치게 되고, 압력강하특성을 고려할 때 가장 적절한 위치로 선정할 수 있었다.

레이놀즈 응력의 난류구배수송을 위한 텐서시간척도 (Tensorial Time Scales for Turbulent Gradient Transport of Reynolds Stresses)

  • 조중원;김경연;성형진;정명균
    • 대한기계학회논문집B
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    • 제29권6호
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    • pp.687-695
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    • 2005
  • On the notion that the Reynolds stresses are transported with different time scale depending on the transport direction, the third order velocity correlations are represented by a new turbulent gradient transport model with tonsorial Lagrangian time scale. In order to verify the proposed model, DNS data are first obtained in a turbulent channel flow at Re = 180 and tonsorial Lagrangian time scales are computed. The present model predictions are compared with DNS data and those predicted by the third-order turbulent transport model of Hanjalic and Launder that uses a scalar time scale. The result demonstrates that the Reynolds stresses are indeed transported with different time scale depending on the transport direction.