• 제목/요약/키워드: 와법

검색결과 23건 처리시간 0.019초

입자와법에 의한 급 출발하는 타원형 실린더 주위 유동해석 (Numerical Study of Flow Around Impulsively Started Elliptic Cylinder Using Vortex Particle Method)

  • 이상환;주남수
    • 대한기계학회논문집B
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    • 제28권7호
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    • pp.809-817
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    • 2004
  • In this paper, the unsteady behavior of the viscous flow field past an impulsively started elliptic cylinder is studied numerically. In order to analyze flow field, we introduce vortex particle method. The vorticity transport equation is solved by fractional step algorithm which splits into convection term and diffusion term. The convection term is calculated with Biot-Savart law, the no-through boundary condition is employed on solid boundaries. The diffusion term is modified based on the scheme of particle strength exchange. The particle redistributed scheme for general geometry is adapted. The flows around an elliptic cylinder are investigated for various attack angles at Reynolds number 200. The comparison between numerical results of present study and experimental data shows good agreements.

와법을 이용한 원주군을 지나는 후류의 특성 계산 (The Characteristic Calculation of the Wake through Cylinders by Vortex Method)

  • 노기덕;오세경;변용수
    • Journal of Advanced Marine Engineering and Technology
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    • 제34권1호
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    • pp.76-83
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    • 2010
  • 본 연구는 정렬배열 및 엇갈림배열 상태에 놓인 원주군 주위의 유동장 특성을 와법으로 수치계산한 것이다. 계산은 피치 비 Pt/D=1.25~2.0, 레이놀즈 수 Re=$4.0{\times}10^1{\sim}4.0{\times}10^4$의 범위 내에서 각 유동장의 순간 볼텍스 분포, 순간 속도분포를 계산하였다. 정렬배열 및 엇갈림 배열 모두 각 원주의 상방에서는 시계방향의, 하방에서는 반시계방향의 볼텍스가 발생하였다. 각 배열 모두 원주군 후방에서 역류의 발생여부는 피치 비와 레이놀즈 수에 기인하며, 같은 레이놀즈 수에서는 피치 비가 작을수록, 그리고 같은 피치 비에서는 레이놀즈 수가 클수록 원주군 후방에서 역류발생이 쉽게 일어났다. 그리고 그 경계영역은 정렬배열의 경우 피치 비 Pt/D=1.5, 레이놀즈 수 Re=400~4,000, 엇갈림 배열의 경우 피치 비 Pt/D=1.4, 레이놀즈 수 Re=40~400에 존재했다.

와법을 이용한 분리된 분할판을 가진 정방형주의 유동장 특성계산 (Characteristic calculations of flowfield around a square prism having a detached splitter plate using vortex method)

  • 노기덕
    • Journal of Advanced Marine Engineering and Technology
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    • 제37권2호
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    • pp.156-162
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    • 2013
  • 본 연구는 정방형주의 후류측 중심에 분리된 분할판(Detached splitter plate)을 설치한 경우 정방형주의 주위의 유동장을 최신와법으로 파악한 것이다. 레이놀즈 수 $Re=1.0{\times}10^4$ 및 분할판의 폭을 정방형주 한변의 길이(B)로 고정시키고, 특히 항력감소율이 최대인 간격비에 촛점을 맞추어 분할판 유, 무에 따른 정방형주에 주위의 순간 및 평균 속도장 및 압력장을 시뮬레이션하였고, 양, 항력계수의 시간변화도 계산하였다. 계산결과는 측정된 항력계수 및 압력분포와 잘 일치하였다. 분할판 설치에 의해 분할판의 상하부에 서로 반대방향의 볼텍스가 발생했고, 이 볼텍스가 정방형주 뒷면의 압력을 상승시켜 항력을 감소시켰음을 명확하게 나타냈다.

개선된 입자와법을 이용한 급 출발하는 실린더 주위의 비정상 점성 유동 시뮬레이션 (Simulations of the Unsteady Viscous Flow Around an Impulsively Started Cylinder Using Improved Vortex Particle Method)

  • 진동식;이상환;이주희
    • 대한기계학회논문집B
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    • 제24권5호
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    • pp.733-743
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    • 2000
  • We solve the integral representation of the Navier-Stokes equations in a lagrangian view by tracking the particles, which have vortex strengths. We simulate the unsteady viscous flow around an impulsively started cylinder using the vortex particle method. Particles are advanced via the Biot-Savart law for a lagrangian evolution of particles. The particle strength is modified based on the scheme of particle strength exchange. The solid boundary satisfies the no-slip boundary condition by the vorticity generation algorithm. We newly modify the diffusion scheme and the boundary condition for simulating an unsteady flow efficiently. To save the computation time, we propose the mixed scheme of particle strength exchange and core expansion. We also use a lot of panels to ignore the curvature of the cylinder, and not to solve the evaluation of the surface density. Results are compared to those from other theoretical and experimental works.

2단 직렬 Weis-Fogh형 수차의 유체역학적 특성계산 (Hydrodynamic Calculation of Two-stage Weis-Fogh Type Water Turbine)

  • 노기덕
    • 대한기계학회논문집B
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    • 제41권11호
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    • pp.709-717
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    • 2017
  • 연구는 직렬 2단 Weis-Fogh형 수차모델을 제안하고, 이 수차모델의 유체역학적 특성을 개선 와법으로 수치계산한 것이다. 기본조건 및 각 날개의 움직임은 이전에 저자가 제안한 단단 수차모델에서와 같게 했다. 두 날개(NACA0010 airfoils) 및 양쪽 수로벽은 소스 및 볼텍스 판넬로 근사하였고, 자유볼텍스는 각 물체 표면 전체에서 도입하였다. 계산변수로는 앞날개와 뒷날개의 날개 축 사이의 거리 및 두 날개 운동의 위상차 즉 동위상과 역위상으로 했다. 각 경우에 대해 비정상 유동장 및 압력장 그리고 두 날개에 작용하는 힘의 계수 및 효율을 계산하였고, 이 수차모델의 유체역학적 특성을 논의하였다.

Weis-Fogh형 선박추진기구의 유체역학적 특성계산 (CALCULATION OF HYDRODYNAMIC CHARACTERISTICS FOR SHIP'S PROPULSION MECHANISM OF WEIS-FOGH TYPE)

  • 노기덕;강명훈
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2005년도 추계 학술대회논문집
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    • pp.305-310
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    • 2005
  • The velocity and pressure fields of a ship's propulsion mechanism of the Weis-Fogh type, in which a airfoil moves reciprocally in a channel, are studied in this paper using the advanced vortex method. The airfoil and the channel are approximated by a finite number of source and vortex panels, and the free vortices are introduced from the body surfaces. The viscous diffusion of fluid is represented using the core-spreading model to the discrete vortices. The velocity is calculated on the basis of the generalized Biot-Savart low and the pressure field is calculated from integrating the equation given by the instantaneous velocity and vorticity fields. Two-dimensional unsteady viscose flows of this propulsion mechanism are numerically clarified, and the calculated results agree well with the experimental ones.

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2단식 Weis-Foghg형 선박 추진기구의 유동장 특성계산 (Flowfield Calculation for Ship's Propulsion Mechanism of Two-Stage Weis-Fogy Type)

  • 노기덕
    • Journal of Advanced Marine Engineering and Technology
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    • 제22권3호
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    • pp.371-380
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    • 1998
  • The flow patterns and dynamic properties of ship's propulsion mechanism of two-stage Weis-Fogh type are studied by the discrete vortex method. In order to study the effects of the interaction of the two wings two cases of the phase differences of the wing's motion are considered the same phase and the reverse phase. The flow patterns by simulations correspond to the photographs obtained by flow visualization and flowfield of the propulsion mechanism which is unsteady and complex is clearly visualized by numerical simulations. The time histories of the thrust an the drag coefficients on the wings are also calculated and the effects of the interaction of the two wings are numerically clarified.

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Weis-Fogh형 선박 추진기구의 개발 유동장의 가시화 및 수치해석 (Development of Weis-Fogh Type Ship's Propulsion Mechanism Visualization and Numerical Analysis of Flowfield;)

  • 노기덕
    • 대한기계학회논문집
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    • 제17권2호
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    • pp.426-437
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    • 1993
  • The flowfield of Weis-Fogh type ship's Propulsion is visualized by numerical simulations using the discrete vortex method and by the hydrogen bubble technique. The simulations are performed by assuming that the separations occur at the trailing edge of the wing. The streak lines and time lines are calculated by introducing the tracers at adequate intervals. They agree well with experimental results. The flowfield is unsteady and complex, but the properties of the flow are clarified by numerical and experimental visualization.

급 출발하는 반원형 실린더에 의한 초기 후류거동의 시뮬레이션 (Simulations of the early wake behavior induced by an impulsively started a semicircualr cylinder)

  • 조지영;이상환;진동식
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.349-352
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    • 2002
  • The time-development of the wake vortices of the unsteady viscous flow past a semicircular cylinder is simulated using the vortex particle methods for direct numerical simulations(DNS). The early wake behaviour of the flow behind an impulsively started a semicircualr cylinder is evaluated for a range of Reynolds numbers between 60 and 200 with opposite body configurations respectively. The diffusion scheme based on the particle strength exchange(PSE) is used to account far the viscous effect accurately. And the vorticity generation algorithm to enforce the no-slip boundary conditions is employed. In order to redistribute particles efficiently on the distorted Lagrangian grid the particle distribution technique is adaptively revised, while maintaining the uniform resolution. The results of the simulations are compared to other experimental results.

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Weis-Fogh형 선박 추진기구의 역학적 특성계산 (Numerical calculation of the dynamic properties of Weis-Fogh type ship's propulsion mechanism)

  • 노기덕
    • 대한기계학회논문집B
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    • 제21권11호
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    • pp.1518-1526
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    • 1997
  • The dynamic properties of a ship's propulsion mechanism of Weis-Fogh type are studied by the discrete vortex method. The wing in the channel is approximated by a finite number of bound vortices and free vortices representing the separated flow are introduced from the trailing edge of the wing. The time histories of the thrust, the drag, and the moment acting on the wing are calculated, including the unsteady force due to the change of strength of the bound vortices. These calculated results show a similar tendency to the experimental ones qualitatively and the dynamic properties of this propulsion mechanism are numerically clarified.