• 제목/요약/키워드: Large-Eddy Simulation LES

검색결과 360건 처리시간 0.03초

Effects of different wind deflectors on wind loads for extra-large cooling towers

  • Ke, S.T.;Zhu, P.;Ge, Y.J.
    • Wind and Structures
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    • 제28권5호
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    • pp.299-313
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    • 2019
  • In order to examine the effects of different wind deflectors on the wind load distribution characteristics of extra-large cooling towers, a comparative study of the distribution characteristics of wind pressures on the surface of three large cooling towers with typical wind deflectors and one tower without wind deflector was conducted using wind tunnel tests. These characteristics include aerodynamic parameters such as mean wind pressures, fluctuating wind pressures, peak factors, correlation coefficients, extreme wind pressures, drag coefficients and vorticity distribution. Then distribution regularities of different wind deflectors on global and local wind pressure of extra-large cooling towers was extracted, and finally the fitting formula of extreme wind pressure of the cooling towers with different wind deflectors was provided. The results showed that the large eddy simulation (LES) method used in this article could be used to accurately simulate wind loads of such extra-large cooling towers. The three typical wind deflectors could effectively reduce the average wind pressure of the negative pressure extreme regions in the central part of the tower, and were also effective in reducing the root of the variance of the fluctuating wind pressure in the upper-middle part of the windward side of the tower, with the curved air deflector showing particularly. All the different wind deflectors effectively reduced the wind pressure extremes of the middle and lower regions of the windward side of the tower and of the negative pressure extremes region, with the best effect occurring in the curved wind deflector. After the wind deflectors were installed the drag coefficient values of each layer of the middle and lower parts of the tower were significantly higher than that without wind deflector, but the effect on the drag coefficients of layers above the throat was weak. The peak factors for the windward side, the side and leeward side of the extra-large cooling towers with different wind deflectors were set as 3.29, 3.41 and 3.50, respectively.

대심도 신금호역사의 화재 유동에 대한 고찰 (Investigation for Fire Flow of the Deeply Underground Shin-Gum-Ho Subway Station)

  • 장용준;박일순;김진호;정우성;김학범;이창현
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.110-115
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    • 2010
  • 최근 도심지의 지하철 노선들은 과거에 지어진 지하철 노선들에 비하여 대심도 터널이 증대하고 있다. 신금호 역사(5호선, 깊이 : 46m)는 수도권에 있는 지하철 역사 중에서 3번째로 깊은 역사로서 대심도 역사의 모델로 선정되었으며, 신금호 전체 역사에 대한 화재시뮬레이션을 시도하였다. 신금호 역사는 3개의 출입구, 지하 1층 대합실, 지하 2층 대합실, 지하 2층에서 8층으로의 연결통로, 지하 8층 승강장으로 구성되어 있다. 본 연구에서는 지하 8층 승강장에서 지상 출입구 까지 전체 역사를 대상으로 연기거동을 해석하기 위하여 9,000,000개의 격자를 생성하였으며, 계산 효율을 증대시키기 위하여 19개의 블록으로 나누어서 처리하였다. 화재해석은 화재에 특화된 CFD 코드인 FDS를 사용하였으며 난류해석 기법은 LES가 사용되었다. MPI의 병렬처리기법을 이용하여 19개의 블록을 각각의 CPU에서 분산처리 하였다. 본 전산수치해석에 사용된 CPU 자원은 Intel 3.0 GHz Dual CPU 10개 (Core 20개)이다.

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군말뚝 주변의 세굴 3차원 수치모의 (Three-Dimensional Computational Modeling of Scour around Pile Groups)

  • 김형석;박문형
    • 한국수자원학회논문집
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    • 제47권10호
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    • pp.907-919
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    • 2014
  • 본 연구는 LES와 유사이동 모형을 이용하여 군말뚝 주변 세굴과정 및 특성의 수치모의에 관한 내용이다. 군말뚝 주변에서 세굴 및 퇴적은 말뚝간격에 크게 영향을 받았다. 무차원 말뚝간격이 3.75보다 작은 경우에는 군말뚝 주변 국부세굴 뿐만 아니라 단면축소세굴이 발생하였다. 반면 무차원 말뚝간격이 3.75 이상이면 단면축소세굴은 사라지고 각각의 말뚝에서 국부세굴만발생하였다. 상류에 위치한 말뚝에서 세굴 심변화는 단일 말뚝의 경우와 유사한 경향을 보였지만 하류에 위치한 말뚝근처에서 세굴심은 상류말뚝 존재 때문에 세굴심이 낮게 나타났고 경향성도 상당히 다름을 보였다. 군말뚝 주변의 무차원 최대 세굴심은 말뚝간격이 증가할수록 감소하였다.

피동제어법을 이용한 초음속 공동유동의 진동 제어 (Control of Supersonic Cavity Flow Oscillation Using Passive Means)

  • 이영기;;김희동
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2006년도 제27회 추계학술대회논문집
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    • pp.363-366
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    • 2006
  • 본 연구에서는 초음속 공동유동장에서 발생하는 압력 진동을 완화시키기 위하여 사용된 두 가지 피동제어방법들의 유효성을 수치해석적으로 조사하였다. 사용된 제어 장치들은 삼각돌기와 sub-cavity로, 전단층의 발달 특성을 조절하기 위하여 공동 전단 부근에 설치된다. 공동유동의 압력변동 특성을 조사하기 위하여 3차원 비정상 Navier-Stokes 방정식에 유한체적법을 적용하여 유동장을 모사하였으며, 유동의 난류상태량들은 LES 방법을 사용하여 계산하였다. 그 결과, 공동유동의 진동 특성은 공동의 후단 벽면에서 발생하는 압력 진동에 의해 지배되며, 제시된 방법들의 효과는 공동의 후단에서 가장 크게 나타났다. 특히, sub-cavity는 삼각돌기나 블로잉이 있는 경우에 비하여 압력 진동 저감효과가 상대적으로 크며, sub-cavity가 큰 경우 압력 진동의 저감효과가 더욱 뚜렷하게 나타났다.

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선형적으로 증가하는 벽면교란이 벽 근처 난류 온도장의 특성 변화에 미치는 영향 해석 (Analysis on the Modification of Near-wall Turbulent Characteristics of Temperature Field in a Channel imposed with Linearly Increasing Wall Disturbance)

  • 박수형;변영환;나양
    • 한국추진공학회지
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    • 제17권5호
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    • pp.101-112
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    • 2013
  • 난류 경계층이 형성되어 있는 채널 벽면에 주유동방향을 따라 선형적으로 증가하는 수직방향의 운동량 교란을 도입한 후 발생되는 난류 온도장의 특성 변화를 LES 기법을 사용하여 분석하여 보았다. 벽면교란이 부과된 후, temperature variance의 국부 최대값은 점진적으로 증가하나, 온도 소산량은 급격히 줄어들게 되면서 온도장의 시간스케일 및 Taylor micro length로 판단한 길이스케일이 모두 감소하는 것을 확인하였다. 또한 난류 Prandtl수가 벽면 근방에서 0.25정도까지 급격히 감소되었는데, 이는 벽면에 작용된 운동량 교란에 대한 속도장 및 온도장의 역학적 반응이 전반적으로 다르다는 것을 의미하며, 따라서 속도장과 온도장의 상사성이 급격히 감소된다는 것을 알 수 있었다.

Numerical study on Reynolds number effects on the aerodynamic characteristics of a twin-box girder

  • Laima, Shujin;Wu, Buchen;Jiang, Chao;Chen, Wenli;Li, Hui
    • Wind and Structures
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    • 제28권5호
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    • pp.285-298
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    • 2019
  • For super long-span bridges, the aerodynamic forces induced by the flow passing the box girder should be considered carefully. And the Reynolds number sensitively of aerodynamic characteristics is one of considerable issue. In the study, a numerical study on the Reynolds number sensitivity of aerodynamic characteristic (flow pattern, pressure distribution and aerodynamic forces) of a twin-box girder were carried out using large eddy simulation (LES) with the dynamic Smagorinsky-Lilly subgrid model. The results show that the aerodynamic characteristics have strong correlation with the Reynolds number. At the leading edge, the flow experiences attachment, departure, and reattachment stages accompanying by the laminar transition into turbulence, causing pressure plateaus to form on the surface, and the pressure plateaus gradually shrinks. Around the gap, attributing that the flow experiences stages of laminar cavity flow, the wake with alternate shedding vortices, and turbulent cavity flow in sequence with an increase in the Reynolds number, the pressures around the gap vary greatly with the Reynold number. At the trailing edge, the pressure gradually recovers as the flow transits to turbulence (the flow undergoes wake instability, shear layer transition-reattachment station), In addition, at relative high Reynolds numbers, the drag force almost does not change, however, the lift force coefficient gradually decreases with an increase in Reynolds number.

전산해석을 통한 고속철도 더블암 팬터그래프의 부재별 공력소음특성 연구 (THE AERO-ACOUSTIC ANALYSIS FOR EACH PART OF DOUBLE ARM PANTOGRAPH OF HIGH SPEED TRAIN)

  • 이상아;강형민;이영빈;김철완;김규홍
    • 한국전산유체공학회지
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    • 제20권2호
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    • pp.61-66
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    • 2015
  • In this study, an aero-acoustic analysis around pantograph of a high speed train is performed. Computational technique and grid system is validated with wind tunnel test result and unsteady acoustic pressure data are used for analyzing noise level of each part of pantograph. FLUENT is used for flow analysis and LES(Large Eddy Simulation) is applied for analyzing turbulent flow. For acoustic analysis, Ffowcs Williams-Hawkings(FW-H) acoustics model is used and it bring the aero-acoustic characteristic of pantograph. As the result, contact strip, knee, substructure of pantograph is confirmed as a main source of aero-acoustic noise and it is dealt in various frequencies. The result is expected to help building improved grid system.

양력형 디스크 풍력 발전기의 유동 및 소음 해석 (Noise and flow analysis of lift-type disk wind power System)

  • 고승철;나지성;이준상
    • 한국가시화정보학회지
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    • 제15권3호
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    • pp.52-56
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    • 2017
  • In this study, we investigate the flow characteristics of lift-type disk which behaves the up-down motion using the large eddy simulation (LES) and immersed boundary method (IBM). Also, we perform the noise analysis using pressure field at 1.35 m distance and reveal the cause of noise to observe the vortical structure analysis of flow result. It is observed that vortical structure and wind shear were generated at leading edge and tower with high velocity deficit and flow separation. High magnitude of flow noise was observed in low frequency range which is from 30 Hz to 60 Hz. It was observed that vortical structure at leading edge was generated in frequency range from 33.3 Hz to 41.6 Hz. Temporal characteristic in vortical structure at leading edge was similar to noise characteristics, having the similar frequency ranges.

뒷날이 잘린 2차원 수중익의 와도 흘림 주파수 (Vortex Shedding Frequency for a 2D Hydrofoil with a Truncated Trailing Edge)

  • 이승재;이준혁;서정천
    • 대한조선학회논문집
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    • 제51권6호
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    • pp.480-488
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    • 2014
  • Vortex shedding which is the dominant feature of body wakes and of direct relevance to practical engineering problems, has been intensively studied for flows past a circular cylinder. In contrast, vortex shedding from a hydrofoil trailing edge has been studied to much less extent despite numerous practical applications. The physics of the problem is still poorly understood. The present study deals with $K{\acute{a}}rm{\acute{a}}n$ vortex shedding from a truncated trailing-edge hydrofoil in relatively high Reynolds number flows. The objectives of this paper are twofold. First, we aim to simulate unsteady turbulent flows past a two dimensional hydrofoil through a hybrid particle-mesh method and penalization method. The vortex-in-cell (VIC) method offers a highly efficient particle-mesh algorithm that combines Lagrangian and Eulerian schemes, and the penalization method enables to enforce body boundary conditions by adding a penalty term to the momentum equation. The second purpose is to investigate shedding frequencies of vortices behind a NACA 0009 hydrofoil operating at a zero angle of attack.

안정경계층 난류에서의 터빈 후류 특성 연구 (Investigation of wake characteristics in turbulence of stable atmospheric boundary layer)

  • 나지성;고승철;이준상
    • 한국가시화정보학회지
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    • 제14권3호
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    • pp.28-31
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    • 2016
  • In this study, we investigate the wake characteristics in two cases which are laminar inflow and turbulent inflow. To solve the flow with wind turbines and its wake, we use large eddy simulation (LES) technique with actuator line method (ALM) and turbulent inflow of Turbsim. Turbulent inflow which contains the characteristic of the stable atmospheric boundary layer is used. We perform the quantitative analysis of velocity deficit and turbulence intensity in two cases. Time series of velocity deficit at the first, the second column in two cases are compared to observe the performance of wind turbine. The performance in the first column in laminar inflow is overestimated compared to that in turbulent inflow. And we observe that wake in the case with turbulent inflow drive to the span-wise direction and wake recovery in turbulent inflow is more effective. In quadrant analysis of Reynolds stress, the ejection and the sweep motion in turbulent inflow case are bigger than those in laminar inflow case.