• 제목/요약/키워드: Well-to-wake

검색결과 200건 처리시간 0.031초

비대칭 후류를 고려한 경사축 추진기의 유동해석 (The Effect of Trailing Wake Asymmetry on a Propeller Blade Forces in Inclined Inflow)

  • 표상우
    • 대한조선학회논문집
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    • 제35권1호
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    • pp.24-31
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    • 1998
  • 본 논문에서는 경사축에 의해 추진기의 후면에 형성되는 비대칭 후류를 모델링하였고 이를 사용하여 추진기에 발생하는 비정상력과 모멘트를 계산하였다. 또한 공동발생시 비대칭후류가 공동 형상에 미치는 영향을 계산, 검토하였다. 추진기의 비대칭 후류위치를 계산하기 위해 유입유동을 축방향, 접선방향 그리고 반경방향으로 나누고 축방향 유동만을 이용, 후류면에서 zero pressure jump 조건을 만족하는 대칭후류 위치를 계산한 후, 접선방향 및 반경방향의 유동을 추진기의 매회전 위치에서 계산하여 대칭 후류와의 선형 합을 통해 비대칭 후류위치를 계산하였다. 새로운 비대칭 후류모델을 비정상 공동중의 추진기에 적용하여 대칭후류모델의 결과 및 실험 결과와 비교하였다. 비교결과 비대칭 후류모델로부터 계산된 비정상력 및 모멘트가 대칭 후류모델로부터의 결과들 보다 실험치와 좋은 일치를 보임을 확인하였다.

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삼상 슬러리 기포탑의 세 기능영역 체류량 특성 (Holdup Characteristics of Three Functional Regions in a Slurry Bubble Column)

  • 장지화;임대호;강용;전기원
    • Korean Chemical Engineering Research
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    • 제48권3호
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    • pp.359-364
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    • 2010
  • 직경이 0.152 m인 삼상슬러리 기포탑에서 연속 슬러리상 영역(${\varepsilon}_f$), 기포영역(${\varepsilon}_b$) 그리고 기포의 후면에서 기포와 같이 상승하는 소용돌이 영역인 wake 영역(${\varepsilon}_w$)의 세 종류의 기능영역을 분류하여 이들 각 영역의 체류량을 구하였다. 기포탑에서 기포영역과 wake 영역의 체류량은 전기저항 탐침법에 의해 결정하였다. 기체유속($U_G$)과 슬러리상에서 고체입자의 농도($S_c$)가 삼상슬러리 기포탑에서 각 기능영역의 체류량에 미치는 영향을 검토하였다. 슬러리 기포탑에서 기체유속이 증가하면 연속 슬러리상의 체류량은 감소하였으나, 기포와 wake의 체류량은 증가하였다. 슬러리상에서 고체입자의 농도가 증가함에 따라 연속 슬러리상 영역의 체류량은 증가하였으나, 기포와 wake 영역의 체류량은 감소하는 경향을 나타내었다. wake 영역의 체류량은 기포영역 체류량의 15~40% 정도를 나타났으며, 기체유속이 증가함에 따라 wake 영역의 기포영역에 대한 분율은 감소하였다. 본 연구의 범위에서 세 기능영역의 체류량은 각각 실험 변수의 상관식으로 나타낼 수 있었다.

이산와류법을 이용한 비정상 후류의 수치적 모사 (Numerical Simulations of Unsteady Wakes Using a Discrete Vortex Method)

  • 한철희;최근형;조진수
    • 대한기계학회논문집B
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    • 제25권3호
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    • pp.397-404
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    • 2001
  • The behavior of unsteady wake vortices for the two-dimensional flat plate is simulated by a discrete vortex method. The flat plates and their wakes are represented by vortex sheets. The vortex sheets are replaced with discrete vortices. The freely deforming wake sheets are computed as a part of solution and the ground effect is included by a image method. In order to predict wake shapes accurately and to model closely coupled aerodynamic interference, a vortex core model and a vortex core addition scheme are used. The simulated wake shapes convecting behind the plates in unsteady motion are compared to a flow visualization result and other numerical results. The present results agree well with them. The present method is also applied to the aerodynamic analysis of flat plates in tandem configuration in ground effect.

T형 볼밸브 내의 유동특성 해석 및 압력변동의 FFT 분석 (Study on the flow characteristics and FFT analysis to the pressure fluctuation in a T-type ball valve)

  • 여창호;허형석;서용권
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2003년도 춘계학술대회 논문집
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    • pp.240-244
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    • 2003
  • In this paper, we present the CFD and experimental results for flow characteristics as well as pressure fluctuation in a T-type ball valve. In the experiment, flow visualization for the wake is performed with a fluorescent dye. In CFD, the valve flow is simulated three-dimensionally using a commercial fluid analysis code, FLUENT 6.0. FFT analysis to the pressure fluctuation in the wake region is also calculated Analysis results show that the characteristic frequency of the wake flow is strongly dependent on the Reynolds number.

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Optimization of the Propeller Steady Performance Behind Wake Field

  • Lee, Wang-Soo;Choi, Young-Dal;Kim, Gun-Do;Moon, Il-Sung;Lee, Chang-Sup
    • Journal of Ship and Ocean Technology
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    • 제11권2호
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    • pp.10-25
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    • 2007
  • With the sharp increase of the oil price, the issue of the energy saving requires even higher propulsive efficiency of the propellers. Traditionally the propellers have been designed with the criteria such as that of Lerbs optimum based on the lifting line theory and the empirical formulae of Lerbs and van Manen giving relations of the wake pitch with the wake non-uniformity. With the aid of the high speed computer, it is now possible to apply the time-consuming iterative approaches for the solution of the lifting surface problems. In this paper we formulate the variational problem to optimize the efficiency of the propeller operating in the given ship wake using the lifting surface method. The variational formulation relating the spanwise circulation distribution with the propulsive efficiency to be maximized is however non-linear in circulation distribution functions, thus the iterative method is applied to the quasi-linearized equations. The blade shape design also requires the iterative procedures, because the shape of the blade which is represented by the lifting surface is unknown a priori. The numerical code was validated with the DTNSRDC propeller 4119 which is well-known to be optimum in uniform inflow condition. In addition existing (well-designed) commercial propellers were selected and compared with the results of the open water tests and the self-propulsion tests.

Loose Coupling Approach of CFD with a Free-Wake Panel Method for Rotorcraft Applications

  • Lee, Jae-Won;Oh, Se-Jong;Yee, Kwan-Jung;Kim, Sang-Hun;Lee, Dong-Ho
    • International Journal of Aeronautical and Space Sciences
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    • 제8권1호
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    • pp.1-9
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    • 2007
  • As a first step toward a complete CFD-CSD coupling for helicopter rotor load analysis, the present study attempts to loosely couple a CFD code with a source-double panel method. The far-field wake effects were calculated by a time-marching free vortex wake method and were implemented into the CFD module via field velocity approach. Unlike the lifting line method, the air loads correction process is not trivial for the source-doublet panel method. The air loads correction process between the source-doublet method and CFD is newly suggested in this work and the computation results are validated against available data for well-known hovering flight conditions.

Fault Response of a DFIG-based Offshore Wind Power Plant Taking into Account the Wake Effect

  • Kim, Jinho;Lee, Jinsik;Suh, Yongsug;Lee, Byongjun;Kang, Yong Cheol
    • Journal of Electrical Engineering and Technology
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    • 제9권3호
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    • pp.827-834
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    • 2014
  • In order to meet the low voltage ride-through requirement in a grid code, a wind power plant (WPP) has to stay connected to a grid, supporting the voltage recovery for a grid fault. To do this, a plant-level controller as well as a wind generator (WG) controller is essential. The dynamic response of a WPP should be analyzed in order to design a plant-level controller. The dynamic response of a WPP for a grid fault is the collective response of all WGs, which depends on the wind speed approaching the WG. Thus, the dynamic response of a WPP should be analyzed by taking the wake effect into consideration, because different wind speeds at WGs will result in different responses of the WPP. This paper analyzes the response of a doubly fed induction generator (DFIG)-based offshore WPP with a grid fault taking into account the wake effect. To obtain the approaching wind speed of a WG in a WPP, we considered the cumulative impact of multiple shadowing and the effect of the wind direction. The voltage, reactive power, and active power at the point of common coupling of a 100 MW DFIG-based offshore WPP were analyzed during and after a grid fault under various wind and fault conditions using an EMTP-RV simulator. The results clearly demonstrate that not considering the wake effect leads to significantly different results, particularly for the reactive power and active power, which could potentially lead to incorrect conclusions and / or control schemes for a WPP.

Wake effects of an upstream bridge on aerodynamic characteristics of a downstream bridge

  • Chen, Zhenhua;Lin, Zhenyun;Tang, Haojun;Li, Yongle;Wang, Bin
    • Wind and Structures
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    • 제29권6호
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    • pp.417-430
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    • 2019
  • To study the wake influence of an upstream bridge on the wind-resistance performance of a downstream bridge, two adjacent long-span cable-stayed bridges are taken as examples. Based on wind tunnel tests, the static aerodynamic coefficients and the dynamic response of the downstream bridge are measured in the wake of the upstream one. Considering different horizontal and vertical distances, the flutter derivatives of the downstream bridge at different angles of attack are extracted by Computational Fluid Dynamics (CFD) simulations and discussed, and the change in critical flutter state is further studied. The results show that a train passing through the downstream bridge could significantly increase the lift coefficient of the bridge which has the same direction with the gravity of the train, leading to possible vertical deformation and vibration. In the wake of the upstream bridge, the change in lift coefficient of the downstream bridge is reduced, but the dynamic response seems to be strong. The effect of aerodynamic interference on flutter stability is related to the horizontal and vertical distances between the two adjacent bridges as well as the attack angle of incoming flow. At large angles of attack, the aerodynamic condition around the downstream girder which may drive the bridge to torsional flutter instability is weakened by the wake of the upstream bridge, and the critical flutter wind speed increases at this situation.

Effect of lock-on frequency on vortex shedding in the cylinder wake

  • Yoo Jung Yul;Sung Jaeyong;Kim Wontae
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2001년도 Proceedings of 2001 Korea-Japan Joint Seminar on Particle Image Velocimetry
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    • pp.86-99
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    • 2001
  • Vortex lock-on or resonance in the flow behind a circular cylinder is investigated from a time-resolved PIV when a single frequency oscillation is superimposed on the mean incident velocity. Measurements are made of the $K\acute{a}rm\acute{a}n$ and streamwise vortices in the wake-transition regime at the Reynolds number 360. Streamwise vortices at the lock-on and natural shedding states are observed, as well as the changes in the wake region with the change of the shedding frequency of lock-on state. When lock-on occurs, the vortex shedding frequency is found to be half the oscillation frequency as expected from previous experiments. At the lock-on state, the $K\acute{a}rm\acute{a}n$ vortices are observed to be more disordered by the increased strength and spanwise wavelength of the streamwise vortices, which leads to a strong three-dimensional motion. Recirculation and vortex formation region at the lock-on state is reduced as the oscillating frequency is increased. By comparing the Reynolds stresses at the lock-on and natural shedding states, $\bar{u'u'}\;and \;\bar{u'u'}$ at the lock-on state are concentrated on the shear layer around the cylinder. The $\bar{u'u'}\;at\;f_o/f_n=2.0$ has a large value near the centerline, compared with that of other cases. Considering the traces of maximum of u', in the wake region near the cylinder, wake width at the lock-on state is wider than that at the natural shedding state.

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PIV를 이용한 수중익 주위 복잡유동장의 정량적 계측 (Quantitative Measurements of Complex Flow Field Around a Hydrofoil Using Particle Image Velocimetry)

  • 현범수;최경신;도덕희
    • 대한조선학회논문집
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    • 제37권3호
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    • pp.37-44
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    • 2000
  • 수면 하에서 정속으로 움직이는 MACA0012 수중익에 의하여 생성되는 정상파 및 쇄파에 대한 실험적 연구를 회류수조에서 수행하였다. 실린더의 몰수깊이에 따른 자유표면 파형을 관측하였고, PIV를 이용하여 수중익과 자유표면 사이 유동장의 순간속도와 평균속도를 계측한 후 와도분포를 구하였다. 쇄파의 발생, 전개 그리고 소멸과정을 조사하였고, 특히 자유표면 부근의 와류 구조와 같은 복잡 순간유동장의 가시화를 통하여 수중익과 쇄파 간의 상호작용을 해석하고자 하였다. 본 실험으로 PIV 계측기법은 조선해양공학의 다양한 연구분야에 훌륭히 적용될 수 있음을 보았고 더욱이 정량적인 해석이 필요한 실험에도 사용이 가능함을 확인하였다.

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