• 제목/요약/키워드: Fluid dynamics

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용융탄산염 연료전지용 평판형 개질기 열유동 전산유체역학 해석 (Computational Fluid Dynamics Analysis of Plate Type Reformer for MCFC)

  • 신동훈;서혜경;임희천;이상득
    • 한국수소및신에너지학회논문집
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    • 제17권4호
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    • pp.403-408
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    • 2006
  • The plate reformer consisting of combustion chamber and reforming chamber for 25 kW MCFC stack has been operated and computational fluid dynamics was applied to estimate reactions and thermal fluid behavior in the reformer. The methane air 2-stage reaction was assumed in the combustion chamber, and three step steam reforming reactions were included in the calculation. Flow uniformity, reaction rate and species distribution, and temperature distribution were analyzed. In particular, temperature distribution was compared with the measurements to show good agreement in the combustion chamber, however, inappropriate agreement in the reformer chamber.

전산유체역학을 이용한 교반탱크 내 유체흐름 해석 (Analysis of Fluid Flows in a Stirred Tank Using Computational Fluid Dynamics)

  • 김미진;이경미;박균영
    • Korean Chemical Engineering Research
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    • 제48권3호
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    • pp.337-341
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    • 2010
  • 직경 1 m, 높이 1 m의 교반탱크 내 유체흐름 패턴을 상용 전산유체역학 프로그램의 하나인 CFX를 사용하여 해석함으로써 교반속도, 임펠러 회전날개의 경사각, 방해판의 존재 유무, 탱크바닥 형태가 흐름패턴에 미치는 영향을 알아보았다. 방해판이 없을 경우 탱크 중심에서 와류가 관찰되었으며 교반속도가 증가함에 따라 탱크 중심의 와류 현상이 증가하였으나, 방해판 설치에 의해 와류가 감소하였다. 임펠러 날개의 경사각을 증가시킴으로써 교반탱크 상하로의 유체흐름이 증가하였고 와류도 감소하였다. 탱크바닥을 수평으로 하는 것 보다 둥글게 함으로써 탱크 바닥 구석에서 유체흐름이 원활하게 변화하였다.

스퀴즈필름효과를 고려한 인공심장밸브의 닫힘시 동적거동 해석 (Dynamic Behavior Analysis of the Heart Valve Prostheses Considering Squeeze Film Effect During Closing Phase)

  • 천길정
    • 대한기계학회논문집
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    • 제19권2호
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    • pp.443-450
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    • 1995
  • An analysis of the dynamics of a mechanical monoleaflet heart valve prosthesis in the closing phase is presented. Employing the moment equilibrium principles on the occluder motion and the squeeze film dynamics of the fluid between the occluder and the guiding strut at the instant of impact, the velocity of the occluder tip and the impact force were computed. The dynamics of fluid being squeezed between the occluder and the guiding struts is accounted for by Reynold's equation. The effect of the fluid being squeezed between the occluder and the guiding strut was to reduce the velocity of the occluder tip at the instant of valve closure as well as dampen the fluttering of the occluder before coming to rest in the fully closed position. The squeeze film fluid pressure changed rapidly from a high positive value to a relatively large negative value in less than 1 msec. The results of this study may be extended for the analysis of cavitation inception, mechanical stresses on the formed elements and valve components as well as to estimate the endurance limits of the prosthetic valves.

CFD-FSI simulation of vortex-induced vibrations of a circular cylinder with low mass-damping

  • Borna, Amir;Habashi, Wagdi G.;McClure, Ghyslaine;Nadarajah, Siva K.
    • Wind and Structures
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    • 제16권5호
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    • pp.411-431
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    • 2013
  • A computational study of vortex-induced transverse vibrations of a cylinder with low mass-damping is presented. An Arbitrary Lagrangian-Eulerian (ALE) formulation of the Unsteady Reynolds-Averaged Navier-Stokes equations (URANS), along with the Spalart-Allmaras (SA) one-equation turbulence model, are coupled conservatively with rigid body motion equations of the cylinder mounted on elastic supports in order to study the amplitude and frequency response of a freely vibrating cylinder, its flow-induced motion, Vortex Street, near-wake flow structure, and unsteady loading in a moderate range of Reynolds numbers. The time accurate response of the cylinder from rest to its limit cycle is studied to explore the effects of Reynolds number on the start of large displacements, motion amplitude, and frequency. The computational results are compared with published physical experiments and numerical studies. The maximum amplitudes of displacements computed for various Reynolds numbers are smaller than the experimental values; however, the overall agreement of the results is quite satisfactory, and the upper branch of the limit-cycle displacement amplitude vs. reduced velocity response is captured, a feature that was missed by other studies. Vortex shedding modes, lock-in phenomena, frequency response, and phase angles are also in agreement with experiments.

A Flow Analysis of Small Craft by Using CFD

  • Park, Ji-Yong;Jeong, Jin-Hee;Hwang, Tea-Wook;Lee, Sol-Ah;Kim, Kyung-Sung
    • Journal of Multimedia Information System
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    • 제7권4호
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    • pp.269-276
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    • 2020
  • The small craft including jet-board for leisure are commonly smaller than the general commercial vessels. For the floating vessel, the motion analysis is significantly important component to design the shape. It is, however, hardly predicting its behavior by using conventional boundary element method due to violating small amplitude assumption for potential theory. The computational fluid dynamics method can afford to simulate such small craft, but its grid system was not able to calculate motion, because movable body disturbs the grid system by confliction. The dynamics fluid body interaction model with over-set mesh system can be dealt with movable floating body under irregular ocean wave. In this study, several cases were considered to reveal that DFBI is essential method to predict floating body motion. The single phase simulate was conducted to establish the shape perfection, and then the validated vessel was simulated with ocean waves weather DFBI option on or off. Through the comparison, the results between the cases of DFBI on and off shows significantly difference. It was claimed that the DFBI was necessary not only to calculation body motion, but also to predict accurate drag and lift force on the floating body for small size craft.

전산유동해석을 이용한 컨테이너 크레인의 유동 분석 (A Fluid Analysis of a Container Crane using the Computation Fluid Dynamics)

  • 권순규;이성욱;한동섭;한근조
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 춘계학술대회 및 창립 30주년 심포지엄(논문집)
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    • pp.349-354
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    • 2006
  • 본 연구는 풍하중이 컨테이너 크레인에 작용할 때, 풍향에 따라서 컨테이너 크레인의 유동장을 분석하였다. 본 연구를 위해 사용된 모델은 50ton급 컨테이너 크레인으로 현재 항만시설에 가장 많이 사용되는 모델이다. 유동장은 원통으로 모델링하였으며, 직경, 300m 높이 200m로 설정하였다. 본 연구는 멱급수를 적용하여 풍속 50m/s의 설계 기준에서 고도에 따라 풍속을 고려하였다. 또한 풍향은 $0^{\circ}{\sim}180^{\circ}$$30^{\circ}$ 간격으로 적용하였으며, CFX-10을 사용하여 전산유동해석을 수행하였다. 본 연구에서는 풍향에 따른 풍압력을 분석하였으며, 향후 유동 연성 해석을 통한 컨테이너 크레인의 구조 안정성 평가를 할 것이다.

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Analysis of Blood Flow Interacted with Leaflets in MHV in View of Fluid-Structure Interaction

  • Park, Choeng-Ryul;Kim, Chang-Nyung
    • Journal of Mechanical Science and Technology
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    • 제15권5호
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    • pp.613-622
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    • 2001
  • Interaction of blood flow and leaflet behavior in a bileaflet mechanical heart valve was investigated using computational analysis. Blood flows of a Newtonian fluid and a non-Newtonian fluid with Carreau model were modeled as pulsatile, laminar, and incompressible. A finite volume computational fluid dynamics code and a finite element structure dynamics code were used concurrently to solve the flow and structure equations, respectively, where the two equations were strongly coupled. Physiologic ventricular and aortic pressure waveforms were used as flow boundary conditions. Flow fields, leaflet behaviors, and shear stresses with time were obtained for Newtonian and non-Newtonian fluid cases. At the fully opened phase three jets through the leaflets were found and large vortices were present in the sinus area. At the very final stage of the closing phase, the angular velocity of the leaflet was enormously large. Large shear stress was found on leaflet tips and in the orifice region between two leaflets at the final stage of closing phase. This method using fluid-structure interaction turned out to be a useful tool to analyze the different designs of existing and future bileaflet valves.

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나노 채널에서의 표면 거칠기와 경계 습윤의 효과 (Effects of Surface Roughness and Interface Wettability in a Nanochannel)

  • 추연식;서인수;이상환
    • 한국유체기계학회 논문집
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    • 제13권2호
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    • pp.5-11
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    • 2010
  • The nanofluidics is characterized by a large surface-to-volume ratio, so that the surface properties strongly affect the flow resistance. We present here the results showing that the effect of wetting properties and the surface roughness may considerably reduce the friction of fluid past the boundaries. For a simple fluid flowing over hydrophilic and hydrophobic surfaces, the influences of surface roughness are investigated by the nonequilibrium molecular dynamics (NEMD) simulations. The fluid slip at near a solid surface highly depends on the wall-fluid interaction. For hydrophobic surfaces, apparent fluid slips are observed on smooth and rough surfaces. The solid wall is modeled as a rough atomic sinusoidal wall. The effects on the boundary condition of the roughness characteristics are given by the period and amplitude of the sinusoidal wall. It was found that the slip velocity for wetting conditions at interface decreases with increasing effects of surface roughness. The results show the surface rougheness and wettability determines the slip or no-slip boundary conditions. The surface roughness geometry shows significant effects on the boundary conditions at the interface.

대형 차량용 유압식 리타더의 유동 특성에 관한 수치해석적 연구 (Numerical Analysis Study on the Fluid Flow Characteristics of Hydraulic Retarder for Heavy Vehicles)

  • 박인성;장현;서정세
    • 한국생산제조학회지
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    • 제24권1호
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    • pp.69-74
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    • 2015
  • This study examined the fluid flow characteristics of a hydraulic retarder adapted as an auxiliary brake for heavy vehicles. The commercial computational fluid dynamics (CFD) software STAR-CCM+ was used to investigate the torque performance and flow characteristics of the hydraulic retarder. The numerical results showed that the pressure distribution was higher near the inner wall surface of the rotor and stator. The pressure of the working fluid increased in the radial direction of the rotor and stator. The variation in the fluid velocity intensity showed a similar trend to that of the fluid pressure, but the maximum velocity appeared near the outer wall surface of the rotor and stator interface. The numerical results showed that increasing the revolution speed of the retarder greatly increased the rate of torque generation.

유체 시뮬레이션 기술을 이용한 비유체 표현기법 (Non-fluid representation technique using fluid simulation)

  • 이성준;허연진;신병석
    • 한국차세대컴퓨팅학회논문지
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    • 제15권4호
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    • pp.51-61
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    • 2019
  • 이 논문에서는 유체 시뮬레이션 기술을 사용해서 비유체인 토사를 시뮬레이션하는 방법을 구현했다. 굴착 작업 등에 의해 생성되는 토사를 표현하기 위해 널리 사용되는 NVIDIA 사의 FleX를 사용하였다. FleX는 SPH(Smoothed-particle hydrodynamics) 기법과 위치 기반 동역학 (Position Based Dynamics) 기법을 결합한 입자 기반 물리 시뮬레이션 라이브러리로서 이를 이용하면 유체를 실감 있게 표현할 수 있다. 그러나 토사는 유체의 성질뿐만 아니라 비유체의 성질도 가지고 있기 때문에 기존의 FleX가 제공하는 기능만으로 시뮬레이션하기 어렵다. 본 연구에서는 기존 Flex를 이용하여 비유체의 행태를 시뮬레이션하기 위한 기법을 추가하였다. 이를 통해 적은 비용으로 효과적인 결과 개선이 이루어질 수 있다.