To find the influence of rotor clearance on internal mixer's capacity,3D finite element method(FEM)models were built and pressure field,viscosity field,velocity field,and temperature field were simulated.In additi...To find the influence of rotor clearance on internal mixer's capacity,3D finite element method(FEM)models were built and pressure field,viscosity field,velocity field,and temperature field were simulated.In addition,the experiment was also conducted on the X(S)M-1.7L laboratory mixer.The simulation shows that rotor clearance brings some effect on internal mixer's capacity such as the pressure,temperature,viscosity,velocity,and shear stress,etc.The experimental result indicates that rotor clearance affected the maximum power,consumption of unit energy,production capability,mixing time,and dumping temperature and so on.展开更多
In the past decade, the tidal energies have caused worldwide concern as it can provide regular and predictable re- newable energy resource for power generation. The majority of technologies for exploiting the tidal st...In the past decade, the tidal energies have caused worldwide concern as it can provide regular and predictable re- newable energy resource for power generation. The majority of technologies for exploiting the tidal stream energy are based on the concept of the horizontal axis propellers, which can be derived from the design and operation of wind turbines. However, there are some peculiar features such as the propeller working in the seawater with free surface and the possible occurrence of cavitation as compared with wind turbines. Especially, for a coun- ter-rotating type tidal stream power turbine, it is difficult to accurately predict the interaction between the front and rear blades at the design stage by blade element momentum theory. As a result, CFD shows its advantage to predict the performance of counter-rotating type propellers of the tidal stream turbi^le. In order to improve the accuracy of CFD predictions, the predicted results must be verified with experimental values. In this paper, a CFD model using block-structured grid was set up and experimental test was performed in a water tunnel for a tidal stream turbine with counter-rotating type propellers. The comparison between CFD predictions and experimental data shows quite good agreement on the power coefficients, which provides an evidence of validation of the CFD model. Such results offer the necessary confidence in the accuracy of the set up CFD model for the coun- ter-rotating type tidal stream turbine.展开更多
基金National Key Technological Equipment Programof China duringthe 10th Five-Year Plan Period(No.ZZ01-20-01-03-02)
文摘To find the influence of rotor clearance on internal mixer's capacity,3D finite element method(FEM)models were built and pressure field,viscosity field,velocity field,and temperature field were simulated.In addition,the experiment was also conducted on the X(S)M-1.7L laboratory mixer.The simulation shows that rotor clearance brings some effect on internal mixer's capacity such as the pressure,temperature,viscosity,velocity,and shear stress,etc.The experimental result indicates that rotor clearance affected the maximum power,consumption of unit energy,production capability,mixing time,and dumping temperature and so on.
基金cosponsored by the New Energy and Industrial Technology Development Organization in JapanResearch Project: Grant-in-aid for Science Research C in Japan (2012-2014)
文摘In the past decade, the tidal energies have caused worldwide concern as it can provide regular and predictable re- newable energy resource for power generation. The majority of technologies for exploiting the tidal stream energy are based on the concept of the horizontal axis propellers, which can be derived from the design and operation of wind turbines. However, there are some peculiar features such as the propeller working in the seawater with free surface and the possible occurrence of cavitation as compared with wind turbines. Especially, for a coun- ter-rotating type tidal stream power turbine, it is difficult to accurately predict the interaction between the front and rear blades at the design stage by blade element momentum theory. As a result, CFD shows its advantage to predict the performance of counter-rotating type propellers of the tidal stream turbi^le. In order to improve the accuracy of CFD predictions, the predicted results must be verified with experimental values. In this paper, a CFD model using block-structured grid was set up and experimental test was performed in a water tunnel for a tidal stream turbine with counter-rotating type propellers. The comparison between CFD predictions and experimental data shows quite good agreement on the power coefficients, which provides an evidence of validation of the CFD model. Such results offer the necessary confidence in the accuracy of the set up CFD model for the coun- ter-rotating type tidal stream turbine.