• 제목/요약/키워드: RANS turbulence model

검색결과 220건 처리시간 0.024초

Study on Surface Vortices in Pump Sump

  • Long, Ngo Ich;Shin, Byeong Rog;Doh, Deog-Hee
    • 한국유체기계학회 논문집
    • /
    • 제15권5호
    • /
    • pp.60-66
    • /
    • 2012
  • One of commonly physical phenomena encountered in pump sump systems in which its significant influence to the hydraulic performance of pump system plays an important role in the field of fluid engineering, is the appearance of free surface and submerged vortices. In this paper, a study of the vortices behavior and their formative mechanism of asymmetry is considered in this paper by using numerical approach. The Reynolds-Averaged Navier-Stokes (RANS) equations and k-omega Shear Stress Transport turbulence model used to describe the properties of turbulent flows, in company with VOF multiphase model, are implemented by Fluent code with multi-block structured grid system. In the numerical simulation, the calculated elevation of air-water interface and vortex core contours are used to classify visually surface vortices as well as submerged vortices. It is shown that the free surface vortex is identified by the concavity of liquid region from the free surface and swirling flow at that own plane. To investigate the distinctive behavior of these vortices corresponding to each given flow rate at the same water level, some numerical testing of them are considered here in such a manner that the flow pattern of surface vortex are obtained similarly to the obtained results from experiment. Furthermore, the influence due to the change of grid refinement and the variation of depth of the concavity are also considered in this paper. From that, these influential factors will be implemented to design a good pump sump with higher performance in the future.

전진비가 추진기 후류에 미치는 영향 (Effect of the Advance Ratio on the Evolution of Propeller Wake)

  • 백동근;윤현식;정재환;김기섭;백부근
    • 대한조선학회논문집
    • /
    • 제51권1호
    • /
    • pp.1-7
    • /
    • 2014
  • The present study numerically investigated the effect of the advance ratio on the wake characteristics of the marine propeller in the propeller open water test. Therefore, a wide range of the advance ratio(0.2${\kappa}-{\omega}$SST Model are considered. The three-dimensional vortical structures of tip vortices are visualized by the swirl strength, resulting in fast decay of the tip vortices with increasing the advance ratio. Furthermore, to better understanding of the wake evolution, the contraction ratio of the slip stream for different advance ratios is extracted from the velocity fields. Consequently, the slip stream contraction ratio decreases with increasing the advance ratio and successively the difference of the slip stream contraction ratio between J=0.2 and J=0.8 is about 0.1R.

Numerical analysis of unsteady hydrodynamic performance of pump-jet propulsor in oblique flow

  • Qiu, Chengcheng;Pan, Guang;Huang, Qiaogao;Shi, Yao
    • International Journal of Naval Architecture and Ocean Engineering
    • /
    • 제12권1호
    • /
    • pp.102-115
    • /
    • 2020
  • In this study, the SST k - ω turbulence model and the sliding mesh technology based on RANS method have been adopted to simulate the exciting force and hydrodynamic of a pump-jet propulsor in different oblique inflow angle (0°, 10°, 20°, 30°) and different advance ratio (J = 0.95, J = 1.18, J = 1.58).The fully structured grid and full channel model have been adopted to improved computational accuracy. The classical skewed marine propeller E779A with different advance ratio was carried out to verify the accuracy of the numerical simulation method. The grid independence was verified. The time-domain data of pump-jet propulsor exciting force including bearing force and fluctuating pressure in different working conditions was monitored, and then which was converted to frequency domain data by fast Fourier transform (FFT). The variation laws of bearing force and fluctuating pressure in different advance ratio and different oblique flow angle has been presented. The influence of the peak of pulsation pressure in different oblique flow angle and different advance ratio has been presented. The results show that the exciting force increases with the increase of the advance ratio, the closer which is to the rotor domain and the closer to the blades tip, the greater the variation of the pulsating pressure. At the same time, the exciting force decrease with the oblique flow angle increases. And the vertical and transverse forces will change more obviously, which is the main cause of the exciting force. In addition, the pressure distribution and the velocity distribution of rotor blades tip in different oblique flow angles has been investigated.

전산 유체 역학을 이용한 선박 방향타 주변의 항력 및 양력 계수에 대한 수치 시뮬레이션 (Numerical Simulation on Drag and Lift Coefficient around Ship Rudder using Computational Fluid Dynamics)

  • 구본국
    • 융합신호처리학회논문지
    • /
    • 제24권2호
    • /
    • pp.97-102
    • /
    • 2023
  • 방향타는 조선 분야에서 중요한 역할을 하기 때문에 방향타의 유체역학적 특성을 조사하기 위해 수치 시뮬레이션이 수행되었다. 유체역학적 힘과 같은 일부 값은 예인 탱크에서 쉽게 측정할 수 있지만, 실험을 통해 압력 분포, 속도 분포, 와류 발생과 같은 유동장에 대한 자세한 정보를 얻기는 어렵다. 본 연구에서는 전산유체역학(CFD)을 이용하여 방향타에 작용하는 유체역학 계수와 레이놀즈수가 미치는 영향을 연구하였다. 상용 전산유체역학 프로그램 Ansys Fluent를 이용하여 방향타 주위의 유동 특성을 연구하였고, 이때 k-epsilon 난류 모델이 사용되었다. 먼저 CFD 상용코드를 이용하여 KCS 방향타의 받음각에 따른 항력계수와 양력계수를 구하였다. 둘째, 동일한 조건에서 2차원 양력계수와 항력계수를 3차원 계수와 비교되었다. 셋째, 레이놀즈수가 유체역학적 힘에 미치는 영향이 연구되었다.

Heat transfer characteristics of an internal cooling channel with pin-fins and ribbed endwalls in gas turbine blade

  • Vu T.A. Co;Hung C. Hoang;Duy C.K. Do;Son H. Truong;Diem G. Pham;Nhung T.T. Le;Truong C. Dinh;Linh T. Nha
    • Advances in aircraft and spacecraft science
    • /
    • 제11권2호
    • /
    • pp.153-175
    • /
    • 2024
  • In jet engines, turbine blade cooling has an extremely important role. The pin-fin array, which is situated close to the trailing edge of the blade, aids in internal cooling of the gas turbine blades and preserves the structural integrity of the blade. Previous studies often focused on pin-fin configurations, but the current research focuses on improving the geometry at the endwalls to reduce wake vortices behind the pin-fins and enhance heat transfer at the endwalls location. Using the k-ω turbulence model, a numerical study was conducted on a ribbed shape situated on the walls between pin-fin arrays, spanning a Reynolds number range of 7400 to 36000, in order to determine the heat transport characteristics. The heat transfer efficiency coefficient and Nusselt number increase dramatically with the revised wall configuration, according to the numerical data. The channel's heat transfer efficiency is increased by enlarging the heat transfer areas near the pin-fins and by the interaction of the flow with the endwalls. The addition of ribs causes the Nusselt number of the new model to climb from 78% to 96% at the previously given Reynolds numbers, and the heat transfer efficiency index to rise from 60% to 73%. The height (Hr), position (Lr), forward width (Wf), and backward width (Wb) of the ribs are among the geometric elements that were looked at in order to determine how they affected the performance of heat transmission. In comparison to the reference design, the parametric study results demonstrate that the best forward width (Wf/R=18.75%) and backward width (Wb/R=31.25%) increase the heat transfer efficiency index by 0.4% and 1.3%, respectively.

헬리컬 터빈의 설계인자에 따른 성능 연구 (Parametric Numerical Study on the Performance of Helical Tidal Stream Turbines)

  • 한준선;최다혜;현범수;김문찬;이신형;송무석
    • 한국해양환경ㆍ에너지학회지
    • /
    • 제14권2호
    • /
    • pp.114-120
    • /
    • 2011
  • 조류발전용 다리우스 터빈의 변형된 형태인 헬리컬 터빈의 설계 인자 변화에 따른 성능을 수치해석으로 살펴보았다. 헬리컬 터빈은 수직축 다리우스 터빈을 회전축을 중심으로 상부와 하부를 비틀리게 함으로써 다리우스 터빈의 일반적인 취약점인 초기구동불량과 진동문제를 개선하기 위해 고안된 형태이다. 본 논문에서는 헬리컬 터빈의 비틀림각(Twisting Angle)과 직경대비 높이를 변화시키며 수치해석을 수행하였고, 결과를 바탕으로 최적의 구조를 제안하였다. 3차원 비정상 난류유동해석을 위하여 FLUENT의 RANS방정식과 k-${\omega}$ SST 난류모델을, 격자계 모델링을 위하여 GAMBIT을 이용하였다. 헬리컬 터빈은 적절한 비틀림각에서 양호한 발전효율을 보장하면서 진동을 유발하는 회전력 변화의 진폭을 최소화 할 수 있음을 확인하였고, 효율의 최대가 확보되는 터빈의 최소 높이를 발견하였다.

Large eddy simulation of wind loads on a long-span spatial lattice roof

  • Li, Chao;Li, Q.S.;Huang, S.H.;Fu, J.Y.;Xiao, Y.Q.
    • Wind and Structures
    • /
    • 제13권1호
    • /
    • pp.57-82
    • /
    • 2010
  • The 486m-long roof of Shenzhen Citizens Centre is one of the world's longest spatial lattice roof structures. A comprehensive numerical study of wind effects on the long-span structure is presented in this paper. The discretizing and synthesizing of random flow generation technique (DSRFG) recently proposed by two of the authors (Huang and Li 2008) was adopted to produce a spatially correlated turbulent inflow field for the simulation study. The distributions and characteristics of wind loads on the roof were numerically evaluated by Computational Fluid Dynamics (CFD) methods, in which Large Eddy Simulation (LES) and Reynolds Averaged Navier-Stokes Equations (RANS) Model were employed. The main objective of this study is to explore a useful approach for estimations of wind effects on complex curved roof by CFD techniques. In parallel with the numerical investigation, simultaneous pressure measurements on the entire roof were made in a boundary layer wind tunnel to determine mean, fluctuating and peak pressure coefficient distributions, and spectra, spatial correlation coefficients and probability characteristics of pressure fluctuations. Numerical results were then compared with these experimentally determined data for validating the numerical methods. The comparative study demonstrated that the LES integrated with the DSRFG technique could provide satisfactory prediction of wind effects on the long-span roof with complex shape, especially on separation zones along leading eaves where the worst negative wind-induced pressures commonly occur. The recommended LES and inflow turbulence generation technique as well as associated numerical treatments are useful for structural engineers to assess wind effects on a long-span roof at its design stage.

Numerical investigation on VIV suppression of marine riser with triangle groove strips attached on its surface

  • Wang, Wei;Song, Baowei;Mao, Zhaoyong;Tian, Wenlong;Zhang, Tingying
    • International Journal of Naval Architecture and Ocean Engineering
    • /
    • 제11권2호
    • /
    • pp.875-882
    • /
    • 2019
  • The effects of Triangle Groove Strips (TGS) on Vortex-induced Vibration (VIV) suppression of marine riser are numerically investigated using Computational Fluid Dynamics (CFD) method. The range of Reynolds number in simulations is 4.0 × 104 < Re < 1.2 × 105. The two-dimensional unsteady Reynolds-Averaged Navier-Stokes (RANS) equations and Shear Stress Transport (SST) k-ω turbulence model are used to calculate the flow around marine riser. The Newmark-β method is employed for evaluating the structure dynamics of marine riser. The effect of the height ratio (ε) of TGS on VIV suppression is evaluated. The amplitude responses, frequency responses, vortex patterns and the flow around the structures are discussed in detail. With the increase of the height ratio of TGS, the suppression effect of TGS on VIV suppression is improved firstly and then weakened. When ε=0.04, the suppression effect of TGS is the best. Compared with the VIV responses of smooth marine riser, the amplitude ratio is reduced by 38.9%, the peak of the lift coefficient is reduced by 69% and the peak of the drag coefficient is reduced by 40% when Re=6.0 × 104. With the increase of Reynolds number, the suppression effect of TGS on VIV suppression is improved firstly and then weakened. When the Reynolds number is 7.0 × 104, the amplitude ratio can be reduced by 40.1%. As to the large-amplitude vibration cases, the TGS show nice suppression effect on VIV.

극 초음속 경계층 해석을 위한 γ-Reθt모델 개선 연구 (A Study on Improvement γ-Reθt Model for Hypersonic Boundary Layer Analysis)

  • 강선오;오세종;박동훈
    • 한국항공우주학회지
    • /
    • 제48권5호
    • /
    • pp.323-334
    • /
    • 2020
  • 경계층 천이는 극초음속 비행체의 열공력 성능에 직접적인 영향을 미치기 때문에, 성능 해석과 설계를 위해 천이지점의 정확한 예측 능력이 필수적으로 요구된다. 본 연구에서는 극초음속 경계층 천이 예측을 위한 γ-Reθt 모델을 개선하고 검증하였다. 천이 시작 위치 결정에 영향을 주는 간헐도 수송방정식 생성항의 계수를 압축성 경계층 상사해를 기반으로 마하수와 벽면온도, 자유류 정체온도 등에 대한 함수 형태로 구성하고 적용하였다. 기본 모델의 Reθc와 Flength 상관관계식에 마하수에 따른 천이 시작 운동량두께 레이놀즈수와 천이구간의 길이 변화를 반영할 수 있도록 마하수에 대한 관계식을 추가로 결정하여 적용하였다. 실용적인 사용을 고려하여 제안 모델을 상용 CFD 코드에 적용하였으며, 검증을 위해 모델을 사용하여 극초음속 평판과 원뿔 경계층 해석을 수행하였다. 실험 결과와의 비교를 통해 마하수와 단위 레이놀즈수 변화에 대한 개선된 예측성능을 확인하였다.

함정 적외선 신호저감 장치의 열 유동해석 연구 (A Study on the Heat Flow Analysis of Infra-Red Signature Suppression System for Naval Ship)

  • 윤석태;조용진;고대은
    • 한국산학기술학회논문지
    • /
    • 제18권11호
    • /
    • pp.740-746
    • /
    • 2017
  • 함정의 추진기와 발전기에 의해 발생하는 고온의 폐기가스와 연돌 주변 금속표면에서 방사되는 적외선 신호는 적 위협 무기체계의 표적이 되어 함의 생존성을 감소시키는 주 원인이 된다. 폐기가스와 연돌의 적외선 신호는 함정에 적외선 신호저감 장치(Infra-Red Signature Suppression system, IRSS)를 설치하여 감소시키고 있다. IRSS는 폐기가스에 난류 유동을 형성하는 이덕터, 폐기가스와 주변 공기가 혼합되는 믹싱 튜브, 외기와의 압력차를 이용하여 공기 필름을 형성하는 디퓨져 세 부분으로 구성된다. 본 연구는 적외선 신호저감 장치를 국내 독자기술로 개발하기 위한 기초 연구로 국외 선진 기술사에서 개발하여 국내 함정에 설치된 IRSS의 모형시험 조건을 분석하고 이를 기반으로 열 유동해석 연구를 수행하였다. 열 유동해석에서는 상용 수치해석 프로그램을 사용하였으며, 다양한 난류 이론 모델을 고려하여 결과를 비교 분석하였다. 해석의 주요 결과로는 이덕터 입구와 디퓨져 출구에서의 폐기가스 온도 및 속도, 그리고 디퓨져의 금속표면 온도를 구하였으며 모형시험의 계측 결과와 잘 부합함을 확인하였다.