• 제목/요약/키워드: Wake pattern

검색결과 98건 처리시간 0.023초

편대비행 하는 항공기 날개들에서 발생하는 후류말림 연구 (Study on the Wake Roll-up Behind Multiple Wings in Formation Flight)

  • 한철희
    • 융복합기술연구소 논문집
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    • 제10권1호
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    • pp.1-5
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    • 2020
  • The wake shapes behind wings in formation flight are very important to the aerodynamics and performances of aircrafts. In the present study, a discrete vortex methood is extended to handle the wake rollups behind multiple wings. It was found that the relative distance between the wings and the rotational direction of the wingtip vortices have significant effect on the movement of the wingtip vortices. When the wings are close to each other, the wingtip vortices moved faster than the wings of large relative distances. The vortex pair of opposite signs generated from each wingtip has an effect of moving the wingtip vortices upward. The relative height between the wings has an effect of moving the wingtips along the centerline of each vortex. The wakeshape behind multiple wings is a function of the relative distances and thus is dependent on the configuration of the formation flight. In the futhre, a study on the vortex movement pattern will be studied.

KRISO 300K VLCC 이중모형선의 유동특성에 대한 풍동실험 연구 (Wind Tunnel Study on Flow Characteristics around KRISO 300K VLCC Double-body Model)

  • 김학록;이상준
    • 대한조선학회논문집
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    • 제36권3호
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    • pp.15-21
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    • 1999
  • KRISO 300K VLCC 이중모형선 주위의 유동특성을 풍동실험을 통해 연구하였다. 선체 선미 주위유동과 후류유동의 평균속도 성분, 난류강도, 레이놀즈 전단응력 및 난류 운동에너지 분포를 열선풍속계를 이용하여 측정하였다. 실험은 선미와 후류의 횡단면에서 수행하였으며, 선체 표면에서의 유동 패턴을 정성적으로 조사하기 위하여 유막법을 이용한 유동가시화도 수행하였다. 선미와 근접 후류영역은 매우 복잡한 3차원의 유동특성을 가지고 있으며, 특히 종방향 와류영역에서 고리 모양의 후류 구조를 볼 수 있었다. 그리고 중앙평행부에서의 얇은 경계층은 선미 영역을 지나며 점차 두꺼워지고 복잡한 3차원 난류후류로 발전하였다.

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Experimental study on wake-induced vibrations of two circular cylinders with two degrees of freedom

  • Du, Xiaoqing;Jiang, Benjian;Dai, Chin;Wang, Guoyan;Chen, Suren
    • Wind and Structures
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    • 제26권2호
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    • pp.57-68
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    • 2018
  • Wind tunnel tests are conducted to investigate wake-induced vibrations of two circular cylinders with a center-to-center spacing of 4 diameters and attack angle varying from $0^{\circ}$ to $20^{\circ}$ for Reynolds numbers between 18,000 and 168,800. Effects of structural damping, Reynolds number, attack angle and reduced velocity on dynamic responses are examined. Results show that wake-induced vortex vibrations of the downstream cylinder occur in a wider range of the reduced velocity and have higher amplitudes in comparison to the vortex-induced vibration of a single circular cylinder. Two types of wake-induced instability phenomena with distinct dynamic characteristics are observed, which may be due to different generation mechanisms. For small attack angles like $5^{\circ}$ and $10^{\circ}$, the instability of the downstream cylinder characterizes a one-degree-of-freedom (1-DOF) oscillation moving in the across-wind direction. For a large attack angle like $20^{\circ}$, the instability characterizes a two-degree-of-freedom (2-DOF) oscillation with elliptical trajectories. For an attack angle of $15^{\circ}$, the instability can transform from the 1-DOF pattern to the 2-DOF one with the increase of the Reynolds number. Furthermore, the two instabilities show different sensitivity to the structural damping. The 1-DOF instability can be either completely suppressed or reduced to an unsteady oscillation, while the 2-DOF one is relatively less sensitive to the damping level. Reynolds number has important effects on the wake-induced instabilities.

Vortex-induced vibration of a long flexible cylinder in uniform cross-flow

  • Ji, Chunning;Peng, Ziteng;Alam, Md. Mahbub;Chen, Weilin;Xu, Dong
    • Wind and Structures
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    • 제26권5호
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    • pp.267-277
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    • 2018
  • Numerical simulations are performed of a long flexible cylinder undergoing vortex-induced vibration at a Reynolds number of 500. The cylinder is pinned at both ends, having an aspect ratio of 100 (cylinder length to cylinder diameter) and a mass ratio of 4.2 (structural mass to displaced fluid mass). Temporal and spatial information on the cross-flow (CF) and in-line (IL) vibrations is extracted. High modal vibrations up to the $6^{th}$ in the CF direction and the $11^{th}$ in the IL direction are observed. Both the CF and IL vibrations feature a multi-mode mixed pattern. Mode competition is observed. The $2^{nd}$ mode with a low frequency dominates the IL vibration and its existence is attributed to a wave group propagating back and forth along the span. Distributions of fluid force coefficients are correlated to those of the CF and IL vibrations along the span. Histograms of the x'-y motion phase difference are evaluated from the total simulation time and a complete vibration cycle representing the standing or travelling wave pattern. Correlations between the phase difference and the vibrations are discussed. Vortex structures behind the cylinder show an interwoven near-wake pattern when the standing wave pattern dominates, but an oblique near-wake pattern when the travelling wave pattern prevails.

전산유체역학 후류모델 특성에 따른 산악지형 풍력발전단지 후류확산 형태 민감도 분석 (Sensitivity Analysis of Wake Diffusion Patterns in Mountainous Wind Farms according to Wake Model Characteristics on Computational Fluid Dynamics)

  • 김성균;류건화;김영곤;문채주
    • 한국전자통신학회논문지
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    • 제17권2호
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    • pp.265-278
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    • 2022
  • 육·해상 풍력 프로젝트 성공여부는 사업의 경제성 확보에 중점을 두고 있으며, 이는 양질의 풍력자원 확보와 풍력단지 최적배치에 의해 좌우된다. 풍력단지를 배치하는 과정에서 주풍향을 고려한 풍력터빈들의 최적배치 방법이 중요하며, 이는 풍상측에 위치한 구조물을 통과하는 유체가 발생시키는 후류영향을 최소화시키는 것과 연관이 있다. 후류효과 예측성의 정확도는 이를 적절히 모의할 수 있는 후류모델과 모델링 기법에 의해 결정되어지며, 특히 산악 및 다도해지역과 같은 복잡지형에서는 고해상도 기반의 정확한 후류예측이 필수적으로 요구된다. 이에 본 논문에서는 상용 CFD 모델인 WindSim을 활용하여 국내 산악 복잡지형에 위치한 육상풍력단지 예정지의 후류모델별 민감도 분석을 통해 후류확산 형태를 분석하고 향후 복잡지형 풍력발전 프로젝트의 기초연구 자료로 활용하고자 한다.

멀티로터형 비행체의 후류 상호작용을 고려한 공력 및 공력소음 해석 연구 (Study for Aerodynamic and Aeroacoustic Characteristics of Multirotor Configurations Considering the Wake Interaction Effect)

  • 고정우;김동욱;이수갑
    • 한국항공우주학회지
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    • 제47권7호
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    • pp.469-478
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    • 2019
  • 수직이착륙기(VTOL) 및 도심 항공 모빌리티와 같은 멀티로터형 비행체는 높은 기동성을 바탕으로 오늘날 널리 활용되고 있다. 멀티로터는 다수의 로터로 구성되어 후류 상호작용이 활발히 발생하고, 이로 인해 멀티로터의 공기역학 및 공력음향학적 특성이 단일 로터와 큰 차이를 보인다. 본 연구에서는 자유 후류 격자 기법 해석자를 활용하여 멀티로터의 후류 상호작용 효과를 규명하고자 하였다. 다양한 비행체와 운용조건의 비교를 위하여, 제자리 비행에서 로터 간격에 따른 효과와 전진 비행에서 전진비 및 전진 방향에 따른 효과를 확인하였다. 제자리 비행 시 후류 및 로터 사이의 상호작용으로 비정상 하중이 발생하였으며, 로터 사이 간격이 줄어들수록 하중 변화폭이 증가하였다. 이는 비정상 하중 소음을 발생시키고 소음 지향성에 변화를 가져온다. 전진 비행 시, 비행 방향에 따라서 비정상 하중 및 소음 특성에서 차이를 보인다. 단일 로터 해석 결과와 비교하였을 때, 멀티로터의 각각의 로터는 상대적 위치에 따라서 하중 소음의 크기와 지향성이 다르다. 결론적으로 후류 상호작용 효과에 대한 분석은 다양한 멀티로터 형상과 운용조건의 공력 및 공력소음 해석에 필수적이다.

정지 비행에서의 곤충 날개 궤적에 따른 공기역학적 특성 (The Aerodynamic Characteristics by the Insect Wing Tip Trajectory in Hovering Flight)

  • 조헌기;주원구
    • 대한기계학회논문집B
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    • 제33권7호
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    • pp.506-511
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    • 2009
  • Insect flight is adapted to cope with each circumstance by controlling a variety of the parameters of wing motion in nature. Many researchers have struggled to solve the fundamental concept of insect flight, but it has not been solved yet clearly. In this study, to find the most effective flapping wing dynamics, we conducted to analyze CFD data on fixing some of the optimal parameters of wing motion such as stoke amplitude, flip duration and wing rotation type and then controlled the deviation angle by fabricating wing tip motion. Although all patterns have the similar value of lift coefficient and drag coefficient, pattern A(pear-shape type) indicates the highest lift coefficient and pattern H(pear-shape type) has the lowest lift coefficient among four wing tip motions and three deviation angles. This result suggest that the lift and drag coefficient depends on the angle of attack and the deviation angle combined, and it could be explained by delayed stall and wake capture effect.

두 개의 3차원 지형물 주위의 성층 유동 해석 - 주 유동방향으로 정렬된 경우 - (Numerical Study of Density-stratified Flow Past Two 3D Hills - Aligned in Tandem -)

  • 최춘범;양경수
    • 대한기계학회논문집B
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    • 제30권12호
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    • pp.1218-1227
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    • 2006
  • In this paper a parametric study using an immersed boundary method has been carried out to investigate the effects of stable density stratification on the wakes past two identical three-dimensional hills aligned in tandem. The Reynolds number based on the uniform inlet velocity and twice the hill height was fixed at Re=300 while the Froude number based on the inlet velocity and the hill height was retained at Fr=0.2. Neutral flow without density stratification was also computed for comparison. Under a strong stratification, vertical motion of fluid particles over the three-dimensional hills is suppressed and the wake structures behind the hills become planar. Depending on the distance between the two hills, the flow pattern of each wake is significantly affected by the stratification. There is a critical hill distance at which flow characteristics drastically change. Qualitative and quantitative features of the wake interaction are reported.

사각형 둔각물체 주위의 유동장 특성에 관한 수치적 연구 (Numerical Study on the Isothermal Flow Field abound Rectangular Cross Section Bluff Body)

  • 이정란;이의주
    • 한국안전학회지
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    • 제27권5호
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    • pp.35-41
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    • 2012
  • The Numerical simulation was performed on the flow field around the two-dimensional rectangular bluff body in order to complement the previous experimental results of the bluff body stabilized flames [1]. For both fuel ejection configurations against an oxidizer stream, the flame stability was affected mainly by vortex structure and mixing field near bluff body. FDS(Fire Dynamic Simulator) based on the LES(Large Eddy Simulation) was employed to clarify the isothermal mixing characteristic and wake flow pattern around bluff body. The air used atmosphere and the fuel used methane. The result of counter flow configuration shows that the flow field depends on air velocity but the mixing field is influenced on the fuel velocity. At low fuel velocity the fuel mole fraction is below the flammable limit and hence the mixing is insufficient to react. Therefore, as the result, the flame formed at low fuel velocity is characterized by non-premixed flames. For the flow field of co-flow configuration, flame stability was affected by fuel velocity as well as air velocity. the vortex generated by fuel stream has counter rotating direction against the air stream. Therefore, the momentum ratio between air and fuel stream was important to decide the flame blow out limit, which is result in the characteristic of the partially premixed reacting wake near extinction.

Measurement of Turbulent Intensity Distributions of a Cylinder Wake

  • Doh, Deog Hee;Cho, Gyeong Rae;Moon, Kyeong Rok;Cho, Yong Beom
    • 한국가시화정보학회지
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    • 제11권1호
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    • pp.41-47
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    • 2013
  • Turbulence properties of a cylinder wake (d=10 mm) have been investigated with a new volume PTV algorithm. The measurement system consists of two-high-cameras(1 $k{\times}1$ k), a Nd-Yag laser and a host computer. A fitness function representing three-dimensional coherency has been adopted to sort out spurious vectors. A hybrid fitness function representing the relations between the fitness and the three-dimensional shortest distances constructed by the two collinears of the two cameras has been also adopted. The constructed algorithm has been employed for the measurements of the cylinder wakes. The Reynolds numbers tested in this paper are 360, 540, 720, 900, 1080 and 1260. More than 10,000 instantaneous 3D vectors have been obtained by the constructed system. The volumetric distributions of the turbulence intensities (for u', v', w') indicate that clearly different patterns for all Reynolds numbers and imply that a regular pattern (like a similarity rule) for the turbulent properties exists.