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国家自然科学基金(51079151)

作品数:4 被引量:34H指数:3
相关作者:李瑞明李辰光许建中王福军更多>>
相关机构:中国农业大学中国灌溉排水发展中心更多>>
发文基金:国家自然科学基金国家教育部博士点基金北京市教育委员会科学研究与科研基地建设项目更多>>
相关领域:建筑科学理学交通运输工程动力工程及工程热物理更多>>

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Numerical Simulation of Pressure Fluctuations in a Large Francis Turbine Runner被引量:9
2012年
The pressure fluctuation caused by unsteady flow in runner is one of the main reasons of vibration for a large Francis hydraulic turbine. It directly affects the steady operation of the hydraulic turbine unit. The existing research of the pressure fluctuation in hydraulic turbine mainly focuses on the unsteady flow in draft tube. Accurate distribution of pressure fluctuations inside a runner is not very clear. In this paper, the numerical method for predicting the pressure fluctuations in runner is investigated and the numerical simulation is performed for a large Francis hydraulic turbine. It is proved that the combination of shear-stress transport(SST) k-w turbulence model and pressure-implicit with splitting of operators(PISO) algorithm could give more reliable prediction of pressure fluctuations in runner. The frequencies of pressure fluctuations in runner are affected by the flow in guide vane and the flow in draft tube. The first dominant frequency is significantly determined by the flow in draft tube, especially at part load condition. This frequency is approximately equal to one-third of the runner rotating frequency. The evident second dominant frequency is exactly equal to the guide vane passing frequency. The peak-to-peak amplitudes of pressure fluctuations in runner at small guide vane open angle are larger than that at large open angle at the same operating head. The amplitudes at points on blade pressure surface are generally greater than that on suction surface. The research results could be used to direct the hydraulic design and operation stability improvement of a large Francis hydraulic turbine.
WANG FujunLIAO CuilinTANG Xuelin
关键词:大型混流式水轮机水轮机转轮非定常流动导向叶片水轮机振动
A PARTIALLY-AVERAGED NAVIER-STOKES MODEL FOR HILL AND CURVED DUCT FLOW被引量:2
2011年
Turbulent flows past hill and curved ducts exist in many engineering applications.Simulations of the turbulent flow are carried out based on a newly developed technique, the Partially-Averaged Navier-Stokes (PANS) model, including separation, recirculation, reattachment, turbulent vortex mechanism.The focus is on how to accurately predict typical separating, reattaching and secondary motion at a reasonable computational expense.The effect of the parameter, the unresolved-to-total ratio of kinetic energy (f_k ), is examined with a given unresolved-to-total ratio of dissipation (f_ε ) for the hill flow with a much coarser grid system than required by the LES.An optimal value of f_k can be obtained to predict the separation and reattachment locations and for more accurate simulation of the resolved turbulence.In addition, the turbulent secondary motions are captured by a smaller f_k as compared with the RANS method with the same grid.
MA Jia-mei WANG Fu-jun YU Xin LIU Zhu-qing
关键词:STOKES网格系统运动捕获
Evaluation of Subgrid-scale Models in Large-eddy Simulations of Turbulent Flow in a Centrifugal Pump Impeller被引量:15
2012年
The current research of large eddy simulation (LES) of turbulent flow in pumps mainly concentrates in applying conventional subgrid-scale (SGS) model to simulate turbulent flow, which aims at obtaining the flow field in pump. The selection of SGS model is usually not considered seriously, so the accuracy and efficiency of the simulation cannot be ensured. Three SGS models including Smagorinsky-Lilly model, dynamic Smagorinsky model and dynamic mixed model are comparably studied by using the commercial CFD code Fluent combined with its user define function. The simulations are performed for the turbulent flow in a centrifugal pump impeller. The simulation results indicate that the mean flows predicted by the three SGS models agree well with the experimental data obtained from the test that detailed measurements of the flow inside the rotating passages of a six-bladed shrouded centrifugal pump impeller performed using particle image velocimetry (PIV) and laser Doppler velocimetry (LDV). The comparable results show that dynamic mixed model gives the most accurate results for mean flow in the centrifugal pump impeller. The SGS stress of dynamic mixed model is decompose into the scale similar part and the eddy viscous part. The scale similar part of SGS stress plays a significant role in high curvature regions, such as the leading edge and training edge of pump blade. It is also found that the dynamic mixed model is more adaptive to compute turbulence in the pump impeller. The research results presented is useful to improve the computational accuracy and efficiency of LES for centrifugal pumps, and provide important reference for carrying out simulation in similar fluid machineries.
YANG ZhengjunWANG FujunZHOU Peijian
关键词:亚格子尺度模型离心泵叶轮大涡模拟湍流流动激光多普勒测速仪
两级双吸离心泵压力脉动特性被引量:8
2011年
选用Standard kε和RNG kε湍流模型分别在0.62Qd、0.8Qd、1.0Qd、1.1Qd和1.2Qd工况下对两级双吸离心泵内部流场进行了定常和非定常模拟,分析了泵的能量特性和压力脉动特性。研究发现,吸水室内压力脉动主频约为2倍转频,各监测点的压力脉动幅值分布呈现一定规律但相差不超过1%;叶片区各监测点压力脉动主频为2倍的转频,从进口边到出口边压力脉动幅值呈现出逐渐增大的趋势;压水室内各监测点压力脉动主频为叶片通过频率,远离隔舌方向,压力脉动幅值先增大后减小,幅值最大点出现在第二蜗道远离隔舌一定角度的位置。泵内压力脉动幅值随着偏离设计工况而增大,其中叶片通过频率下的压力脉动随着流量增加而逐渐增大,1.2Qd工况1倍叶片通过频率下的压力脉动幅值是设计工况下的125%;转频下的压力脉动随着流量减小而增大,隔舌处监测点0.62Qd工况1倍转频下的压力脉动幅值是设计工况的142%。在同一工况下,一级和二级对应部件的压力脉动时域及频域特性相似。
李辰光王福军许建中李瑞明王建明
关键词:双蜗壳压力脉动数值模拟
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