• 제목/요약/키워드: Turbulent flow region

검색결과 498건 처리시간 0.034초

He-Ne 레이저를 이용한 표면전단응력 측정에 관한 연구 (Skin friction measurements using He-Ne laser)

  • 최승호;이열
    • 대한기계학회논문집B
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    • 제21권7호
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    • pp.939-947
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    • 1997
  • An experimental study of the skin friction measurement in a turbulent boundary-layer has been carried out. The skin friction measurements are made using the laser interferometer skin friction (LISF) meter, which optically detects the rate of thinning of an oil applied to the test surface. This technique produces reliable skin friction data over a wide range of flow situations up to 3-dimensional complicated flows with separation, where traditional skin friction measurement techniques are not applicable. The present measured data in a turbulent boundary-layer on a flat plate using the LISF technique shows a good comparison with the result from the previous velocity profile techniques, which proves the validity of the present technique. An extensive error analysis is carried out for the present technique yielding an uncertainty of about .+-.8%, which makes them suitable for CFD code validation purposes. Finally the measurements of the skin friction in a separated region after a surface-mounted obstacle are also presented.

동축공기 수소확산화염에서 화염-와류 상호작용 및 혼합 (Flame-Vortex Interaction and Mixing in Turbulent Hydrogen Diffusion Flames with Coaxial Air)

  • 김문기;오정석;최영일;윤영빈
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2007년도 추계학술대회
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    • pp.149-154
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    • 2007
  • This study examines the effect of acoustic excitation using forced coaxial air on the flame characteristics of turbulent hydrogen nonpremixed flames. A resonance frequency was selected to acoustically excite the coaxial air jet due to its ability to effectively amplify the acoustic amplitude and reduce flame length and NOx emissions. Acoustic excitation causes the flame length to decrease by 15 % and consequently, a 25 % reduction in EINOx is achieved, compared to a flame without acoustic excitation. Moreover, acoustic excitation induces periodical fluctuation of the coaxial air velocity, thus resulting in slight fluctuation of the fuel velocity. From phase-lock PIV and OH PLIF measurement, the local flow properties at the flame surface were investigated under acoustic forcing. During flame-vortex interaction in the near field region, the entrainment velocity and the flame surface area increased locally near the vortex. This increase in flame surface area and entrainment velocity is believed to be a crucial factor in reducing flame length and NOx emission in coaxial jet flames with acoustic excitation. Local flame extinction occurred frequently when subjected to an excessive strain rate, indicating that intense mass transfer of fuel and air occurs radially inward at the flame surface.

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Analysis of Aerodynamic Noise at Inter-coach Space of High Speed Trains

  • Kim, Tae-Min;Kim, Jung-Soo
    • International Journal of Railway
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    • 제7권4호
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    • pp.100-108
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    • 2014
  • A numerical analysis method for predicting aerodynamic noise at inter-coach space of high-speed trains, validated by wind-tunnel experiments for limited speed range, is proposed. The wind-tunnel testing measurements of the train aerodynamic sound pressure level for the new generation Korean high-speed train have suggested that the inter-coach space aerodynamic noise varies approximately to the 7.7th power of the train speed. The observed high sensitivity serves as a motivation for the present investigation on elucidating the characteristics of noise emission at inter-coach space. As train speed increases, the effect of turbulent flows and vortex shedding is amplified, with concomitant increase in the aerodynamic noise. The turbulent flow field analysis demonstrates that vortex formation indeed causes generation of aerodynamic sound. For validation, numerical simulation and wind tunnel measurements are performed under identical conditions. The results show close correlation between the numerically derived and measured values, and with some adjustment, the results are found to be in good agreement. Thus validated, the numerical analysis procedure is applied to predict the aerodynamic noise level at inter-coach space. As the train gains speed, numerical simulation predicts increase in the overall aerodynamic sound emission level accompanied by an upward shift in the main frequency components of the sound. A contour mapping of the aerodynamic sound for the region enclosing the inter-coach space is presented.

Fluid-Structure Interaction Study on Diffuser Pump With a Two-Way Coupling Method

  • Xu, Huan;Liu, Houlin;Tan, Minggao;Cui, Jianbao
    • International Journal of Fluid Machinery and Systems
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    • 제6권2호
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    • pp.87-93
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    • 2013
  • In order to study the effect of the fluid-structure interaction (FSI) on the simulation results, the external characteristics and internal flow features of a diffuser pump were analyzed with a two-way flow solid coupling method. And the static and dynamic structure analysis of the blade was also caculated with the FEA method. The steady flow field is based on Reynolds Averaged N-S equations with standard $k-{\varepsilon}$ turbulent model, the unsteady flow field is based on the large eddy simulation, and the structure response is based on elastic transient structural dynamic equation. The results showed that the effect of FSI on the head prediction based on CFD really exists. At the same radius, the van mises stress on the nodes closed shroud and hub was larger than other nodes. A large deformation region existed near inlet side at the middle of blades. The strength of impeller satisfied the strength requirement with static stress analysis based on the fourth strength theory. The dynamic stress varied periodically with the impeller rotating. It was also found that the fundamental frequency of the dynamic stress is the rotating frequency and its harmonic frequency. The frequency of maximum stress amplitude at node 1626 was 7 times of the rotating frequency. The frequency of maximum stress amplitude at node 2328 was 14 times of the rotating frequency. No matter strength failure or fatigue failure, the root of blades near shroud is the key region to analyse.

수직벽 하부에 있는 틈새 후방의 유동특성에 관한 실험적 연구 (An Experimental Study of Flow Characteristics Past vortical wall with Bottom Gap)

  • 조대환;이경우;오경근
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2005년도 추계학술대회지
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    • pp.153-158
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    • 2005
  • 표면에 부착된 수직벽 후방의 난류전단흐름을 입자영상유속계를 이용하여 조사하였다. 하부 틈새를 갖는 수직벽 후류영역에서는 박리 후 비정상적인(unsteady) 재순환 영역이 형성되었으며, 약 x=3H위치에서 전단층의 재부착 및 난류경계층으로의 재발달 과정이 나타났다. 수직벽 직전의 오목한(concave) 유선곡률과 수직벽 후방의 볼록한(convex)유선곡률의 영향은 수직벽 주위에서 가장 크게 나타나고, 하류로 나아감에 따라 전단층 주위 유체의 유입 등으로 그 영향이 박리 전단층 내에서 커다란 와구조가 연속적으로 발생하였다.

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CFD 모델을 이용한 건물군 주변의 흐름 특성 연구 (A Study on the Characteristics of Flows around Building Groups Using a CFD Model)

  • 이한경;김재진;이영곤
    • 대기
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    • 제25권3호
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    • pp.501-510
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    • 2015
  • In this study, the characteristics of flows around building groups are investigated using a computational fluid dynamics (CFD) model. For this, building groups with different volumetric ratios in a fixed area are considered. As the volumetric ratio of the building group increases, the region affected by the building group is widened. However, the wind-speed reduced area rather decreases with the volumetric ratio near the ground bottom (z ${\lesssim}$ 0.7H, here, H is the height of the building group) and, above 0.7H, it increases. As the volumetric ratio decreases (that is, space between buildings was widened), the size of recirculation region decreases but flow recovery is delayed, resulting in the wider wind-speed reduced area. The increase in the volumetric ratio results in larger drag force on the flow above the roof level, consequently reducing wind speed above the roof level. However, above z ${\gtrsim}$ 1.7H, wind speed increases with the volumetric ratio for satisfying mass conservation, resultantly increasing turbulent kinetic energy there. Inside the building groups, wind speed decreased with the volumetric ratio and averaged wind speed is parameterized in terms of the volumetric ratio and background flow speed. The parameterization method is applied to producing averaged wind speed for 80 urban areas in 7 cities in Korea, showing relatively good performance.

초음속 유동에서 기저유동의 Detached Eddy Simulation (Detached Eddy Simulation of Base Flow in Supersonic Mainstream)

  • 신재렬;문성영;원수희;최정열
    • 한국항공우주학회지
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    • 제37권10호
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    • pp.955-966
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    • 2009
  • 초음속 유동장 내의 축대칭 기저유동에 DES 기법을 적용하였다. 이 기법은 RANS 모드에서는 Spalart-Allmaras (S-A) 난류 모델을 사용하고, Large-eddy simulation (LES) 모드에서는 부격자 모델을 기반으로 하고 있다. LES 보다 비교적 적은 비용을 갖는 DES 기법을 사용하여 기저 유동장과 기저 압력을 정교게 예측할 수 있었다. 기저유동의 정확한 예측을 위해 경계층 두께, 운동량 두께, 표면마찰과 같은 기저 가장자리 유동 물성치를 Dutton 등의 실험과 비교하였다. DES는 하류영역에서의 전단층 말림, 큰 에디 운동, 재순환영역 내의 작은 에디 운동 같은 비정상 난류 운동의 물리적 현상을 잘 모사 하였다. 또한, 경험상수 $C_{DES}$ 1.2를 사용한 현재 결과가 일반적인 경험상수 $C_{DES}$ 0.65에 비해 실험과 잘 일치함을 보여준다.

LES를 이용한 침수식생을 통과하는 난류흐름 수치모의 (Numerical simulations of turbulent flow through submerged vegetation using LES)

  • 김형석
    • 한국산학기술학회논문지
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    • 제16권9호
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    • pp.6305-6314
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    • 2015
  • 본 논문에서는 침수조건의 식생이 식재된 개수로의 흐름 및 난류특성을 수치모의하였다. 이를 위해 여과된 Navier-Stokes 방정식을 수치해석 하였고 난류 모형으로 LES 모형을 이용하였다. 식생을 계산격자로 직접 고려하였고 이를 위해 직교격자 기반에 가상경계기법을 적용하였다. 수치모형을 이용하여 계산한 평균흐름을 Liu et al. (2008)의 수리실험데이터와 비교하였고 평균오차 10%내에서 일치하는 것으로 나타났다. 식생영역과 비식생영역 사이에서 강한 와가 생성되는 것을 확인하였고 이는 횡방향에 걸쳐 발생하는 것으로 나타났다. 경계면에서 전단에 의해 유발된 난류는 후류에 의해 발생한 난류성분과 상호작용하여 최대값을 보였다. 전단에 의한 난류는 식생영역 흐름에 영향을 미쳤고 침투깊이는 식생 침수비가 커질수록 증가하였다. 이러한 난류흐름 특성은 식생영역에서 유사거동 메커니즘을 파악하는데 중요한 자료로 활용될 수 있다.

파랑관통형 선형의 선체유기 유동소음특성에 관한 연구 (Analysis of Hull-Induced Flow Noise Characteristics for Wave-Piercing Hull forms)

  • 최원석;홍석윤;송지훈;권현웅;서정화;이신형
    • 해양환경안전학회지
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    • 제24권5호
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    • pp.619-627
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    • 2018
  • 선박의 고속, 대형화 및 규제강화의 추세에 따라 유동소음의 중요성이 강조되고 있다. 그러나 항공, 철도 등의 공력소음 분야에서 유동소음을 설계에 반영하고 있는 것에 반해 조선해양분야에서는 고려되지 않고 있다. 본 연구에서는, 선체유기 유동소음의 해석절차를 정립하고 쇄파의 영향이 작고 선체선형에 의한 유기소음의 특성이 뚜렷한 파랑관통형 선형에 대해 소음특성을 분석하였다. 선체유기 유동소음의 주요 메커니즘인 난류경계층 내부의 복잡한 난류유동과 구조물의 유체-구조 연성적 소음원은 벽면변동압력을 이용하여 가진력을 모델링하고 파워흐름해석법을 이용하여 진동음향 응답해석을 수행하였다. 주파수 영역 및 선체부위에 따라 상의한 소음특성을 가지며 저주파수 영역에서 선형의 영향이 상대적으로 크고 유속에 비례하는 경향을 확인할 수 있었다.

곡관부 열전달 성능 강화를 위한 에어포일형 가이드 베인의 형상 최적설계 (SHAPE OPTIMIZATION OF THE AIRFOIL-GUIDE VANES IN THE TURNING REGION FOR A ROTATING TWO-PASS CHANNEL)

  • 문미애;김광용
    • 한국전산유체공학회지
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    • 제17권2호
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    • pp.1-10
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    • 2012
  • This paper presents the numerical simulation results of heat transfer and friction loss for a rotating two-pass duct with the airfoil-guide vanes in the turning region. The Kriging model is used as an optimization technique with Reynolds-averaged Navier-Stokes analysis of flow field and heat transfer with shear stress transport turbulent model. To improve the heat transfer performance, angle and location of the airfoil-guide vanes have been selected as design variables. The optimization problem has been defined as a minimization of the objective function, which is defined as a linear combination of heat transfer related term and friction loss related term with a weight factor. The airfoil-guide vanes in the turning region keep the high level of heat transfer while the friction loss has a low value. By comparing the presence or absence of airfoil-guide vanes, it is shown that the airfoil-guide vanes exhibited the best heat transfer performance to improve the blade cooling except the first passage.