• 제목/요약/키워드: Turbulent Round Jet Flow

검색결과 30건 처리시간 0.021초

$45^{\circ}$ 원형충돌분류의 난류혼합유동장에 대한 수치해석 (Numerical Analysis on the Turbulent Mixing Flow Field of $45^{\circ}$ Impinging Round Jet)

  • 김장권;오석형
    • 동력기계공학회지
    • /
    • 제15권3호
    • /
    • pp.38-45
    • /
    • 2011
  • The computational flow numerical analysis was introduced to predict thc turbulent characteristics in the mixing flow structure of $45^{\circ}$ impinging round jet. This analysis has been carried out through the commercial fluent software. Realizable(RLZ) k-${\varepsilon}$ was used as a turbulent model. It can be known that mean velocities analysed through RLZ k-${\varepsilon}$ turbulent model comparatively predict well the experiments and show well the elliptic shape of mixing flow structure in the Y-Z plane, but analysed turbulent kinetic energies show somewhat differently from the experiments in certain regions.

OpenFOAM의 비압축성 유동 해석정밀도 평가 (EVALUATION OF OPENFAOM IN TERMS OF THE NUMERICAL PRECISION OF INCOMPRESSIBLE FLOW ANALYSIS)

  • 김형민;윤동혁;설광원
    • 한국전산유체공학회지
    • /
    • 제18권2호
    • /
    • pp.49-55
    • /
    • 2013
  • The goal of the research is to evaluate the open source code of OpenFOAM for the use of nuclear plant flow simulation objectively. Of the various incompressible flow solvers, simpleFoam, pimpelFoam are then tested under three validated cases (backward facing step, flow over circular cylinder and turbulent round jet flow). For the evaluation of steady state incompressible laminar flow simulation, low reynolds number of backward facing step flow was solved by simpleFoam. The resultant of the reattached lengths turned out to be similar with the other experimental and simulation results. For transient flow simulation, flow over circular cylinder and turbulent round jet flow were solved by pimpleFoam. The simulation accuracy was evaluated by comparing the resultant flow patterns with the description of the characteristics of the flow over the circular cylinder. The quantitative accuracy was evaluated for no more than 85% by comparing it to the decaying constants of the turbulent round jet velocity.

두 원형분류에 의한 $45^{\circ}$ 충돌분류의 흔합유동구조에 대한 난류모델 평가 (Evaluation of Turbulent Models on the Mixing Flow Structure of $45^{\circ}$ Impinging Jet by Two Round Jets)

  • 김장권;오석형
    • 동력기계공학회지
    • /
    • 제13권5호
    • /
    • pp.34-39
    • /
    • 2009
  • In this paper, the CFD analysis using various turbulent models has been performed to evaluate which type of turbulent models can predict well the mixing flow structure of $45^{\circ}$ impinging round jet. This CFD analysis has been carried out through the commercial Fluent software. As a result, any of turbulent models cannot predict the experimental results definitely all over the flow range. However, as compared with the experimental results, the turbulent model of realizable(RLZ) k-$\varepsilon$ only predicts well in the limited range between X/$X_0=1.1$ and X/$X_0=2.0$.

  • PDF

초기조건의 변형에 따른 축대칭 충돌분사류의 난류특성에 대한 연구 (Experimental Study on Turbulent Characteristics of Axisymmetric Impinging Jet with a Modified Initial Condition)

  • 한용운;이근상
    • 대한기계학회논문집
    • /
    • 제17권12호
    • /
    • pp.3166-3178
    • /
    • 1993
  • The turbulent flow characteristics of impinging jet have been investigated by the hot wire anemometry with a movable impinging wall. Turbulences were generated by the meshed jet as well as the typical round jet and their characteristics were compared, of mean velocity profiles, turbulent intensities. Reynolds stresses, similarities and their centerline flow behaviors. The meshed jet tends to make shear layer wider than the normal one in the initial region and the velocity profiles of the normal jet is rather contractive being compared with those of the meshed one near the wall. The effect of meshed exit appears only within 4D at the begining of jets and the cascading process of the meshed one marches more rapidly than that of the normal jet. The wall effects appear in the downstream of about 0.85 H to the impinging wall for every case of wall positions in both nozzles.

450自由衝突 噴射 의 亂流流動 에 관한 實驗的 硏究 (An Experimental Study on the Turbulent Flow of a 45$^{\circ}C$ Free Cross Jet)

  • 노병준;김장권
    • 대한기계학회논문집
    • /
    • 제8권5호
    • /
    • pp.442-449
    • /
    • 1984
  • 본 연구에서는 두 분류가 교우되어 배합이 이루어지는 유동역에서 3차원 방향 에 대하여 평균속도분포, 난류강도분포, 난류전단응력분포, 상관계수의 분포 및 난류 운동에너지와 운동량의 변화 등을 측정 분석하였다.

온도구배를 갖는 평판에 대한 원형 충돌제트의 열전달 및 난류유동에 관한 실험적 연구 (An experimental study on the heat transfer and turbulent flow of round jet impinging the plate with temperature gradient)

  • 한충호;이계복;이충구
    • 설비공학논문집
    • /
    • 제11권6호
    • /
    • pp.855-860
    • /
    • 1999
  • An experimental study of jet impingement on the surface with linear temperature gradient is conducted with the presentation of the turbulent characteristics and the heat transfer rates measured when this jet impinges normally to a flat plate. The jet Reynolds number ranges from 30,000 to 90,000, the temperature gradient of the plate is 2~$4.2^{\circ}C$/cm and the dimensionless nozzle to plate distance(H/D) is from 6 to 10. The results show that the peak of heat transfer rate occurs at the stagnation point, and the heat transfer rate decreases as the radial distance from the stagnation point increases. A remarkable feature of the heat transfer rate is the existence of the second peak. This is due to the turbulent development of the wall jet. Maximum heat transfer rate occurs when the axial distance from the nozzle to nozzle diameter(H/D) is 8. The heat transfer rate can be correlated as a power function of Prandtl number, Reynolds number and the dimensionless nozzle to plate distance(H/D). It has been found that the heat transfer rate increases with increasing turbulent intensity.

  • PDF

발달하는 원형제트의 간헐적 유동에 관한 실험적 연구 (An Experimental Study About The Intermittent Flow Field in The Transition Region of a Turbulent Round Jet)

  • 김숭기;조지룡;정명균
    • 대한기계학회논문집
    • /
    • 제14권1호
    • /
    • pp.230-240
    • /
    • 1990
  • 본 연구에서는 원형제트의 천이영역에서 속도신호를 측정하고 이로부터 간헐 도와 간헐주파수를 구하며 이를 사용한 지역평균법으로 난류특성량들을 구하여 천이영 역에서의 난류구조를 해석하고 난류 모델링을 위해 필요한 기초자료를 제공하고자 한 다. 난류강도, 레이놀즈응력, 속도성분의 3차상관 관계등의 레이놀즈평균과 지역평 균들을 제시하였고, 편평도, 비대칭도등의 통계학적인 해석과 확산항에 대한 검토도 행하였다.

회전전열평판과 충돌수분류간의 열전달특성에 관한 실험적 연구 (Heat transfer characteristics between a rotating flat plate and an impinging water jet)

  • 전성택;이종수;최국광
    • 설비공학논문집
    • /
    • 제10권5호
    • /
    • pp.509-522
    • /
    • 1998
  • An experimental investigation is reported on the heat transfer coefficient from a rotating flat plate in a round turbulent normally impinging water jet. Tests were conducted over a range of jet flow rates, rotational speeds, jet radial posetions with various combinations of three jet nozzle diameter. Dimensionless correlation of average Nusselt number for laminar and turbulent flow is given in terms of jet and rotational Reynolds numbers, dimensionless jet radial position. We suggested various effective promotion methods according to heat transfer characteristics and aspects. The data presented herein will serve as a first step toward providing the information necessary to optimize in rational manner the cooling requirement of impingement cooled rotating machine components.

  • PDF

횡단류 제트의 유동 및 난류특성치에 대한 PIV 측정 (PIV Measurements of Flow and Turbulence Characteristics of Round Jet in Crossflow)

  • 김경천;김상기;윤상열
    • 대한기계학회논문집B
    • /
    • 제24권3호
    • /
    • pp.382-389
    • /
    • 2000
  • The instantaneous and ensemble averaged flow characteristics of a round jet issuing normally into a crossflow was studied using a flow visualization technique and Particle Image Velocimetry measurements. Experiments were performed at a jet-to-crossflow velocity ratio, 3.3, and two Reynolds numbers, 1050 and 2100, based on crossflow velocity and jet diameter. Instantaneous laser tomographic images of the vertical center plane of the crossflow jet showed that there exist very different natures in the flow structures of the near field jet even though the velocity ratio is the same. It was found that the shear layer becomes much thicker when the Reynolds number is 2100 due to the strong entrainment of the inviscid fluid by turbulent interaction between the jet and crossflow. The mean and second order statistics were calculated by ensemble averaging over 1000 realizations of instantaneous velocity fields. The detail characteristics of mean flow field, stream wise and vertical r.m.s. velocity fluctuations, and Reynolds shear stress distributions were presented. The new PlV results were compared with those from previous experimental and LES studies.

열적으로 성충화된 횡단류에 분류된 제트의 난류확산 거동 (II) (Turbulent Dispersion Behavior of a Jet issued into Thermally Stratified Cross Flows (II))

  • 김상기;김경천
    • 대한기계학회논문집B
    • /
    • 제23권11호
    • /
    • pp.1434-1443
    • /
    • 1999
  • The turbulent fluctuations of temperature and two components of velocity have been measured with hot- and cold-wires in the Thermally Stratified Wind Tunnel(TSWT). Using the fin-tube heat exchanger type heaters and the neural network control algorithm, both stable ($dT/dz=109.4^{\circ}C$) and unstable ($dT/dz=-49.1^{\circ}C$) stratifications were realized. An ambient air jet was issued normally into the cross flow($U_{\infty}=1.0 m/s$) from a round nozzle(d = 6 mm) flushed at the bottom waII of the wind tunnel with the velocity ratio of $5.8(U_{jet}/U_{\infty})$. The characteristics of turbulent dispersion in the cross flow jet are found to change drastically depending on the thermal stratification. Especially, in the unstable condition, the vertical velocity fluctuation increases very rapidly at downstream of jet. The fluctuation velocity spectra and velocity-temperature cospectra along the jet centerline were obtained and compared. In the case of stable stratification, the heat flux cospectra changes Its sign from a certain point at the far field because of the restratification phenomenon. It is inferred that the main reason in the difference between the vertical heat fluxes is caused by the different length scales of the large eddy motions. The turbulent kinetic energy and scalar dissipation rates were estimated using partially non-isotropic and isotropic turbulent approximation. In the unstable case, the turbulent energy dissipation decreases more rapidly with the downstream distance than in the stable case.