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西安建筑科技大学硕士学位论文
西安建筑科技大学硕士学位论文
field in Roots blower could reflect truly the distribution of internal turbulent flow and the characteristic of air flow fluctuation, and the method could provide a scientific basis for the analysis of the characteristic of the inner airflow of the Roots blower.
By selecting circular arc rotor profile and involute rotor profile with same design parameters of three lobe Roots blower as samples to study the effect of rotor profile on the performance of Roots blower. Comparative analysis in circular arc rotor profile and involute rotor profile by the method of the theoretical analysis and the numerical analysis to study the advantages and shortcomings of two various rotor profiles. The results showed that the design of rotor profile played an important part in improvement of the performance of Roots blower. Compared with the circular arc rotor profile, the involute rotor profile has a higher area coefficient, a higher theoretical flow and a higher volumetric efficiency, but the noise would be increased.
The numerical simulation on Roots blower with gradually expanding gap was conducted with FLUENT software in order to investigate the inside flow field under the compressible and unsteady condition, and it reflected truly the distribution of internal turbulent flow and the characteristic of air flow fluctuation. The numerical results showed that the optimization of the casing structure could indeed weaken and even avoid effectively the backflow eddy at the discharge outlet and reduce power aerodynamic noise.
The characteristic of Roots blower with countercurrent cooling was analyzed by the method of the theoretical analysis and the numerical analysis to study the effect of countercurrent cooling technique on the performance of Roots blower. Based on the dynamic mesh techniques, the numerical simulation on three-lobe arc type Roots blower with countercurrent cooling was conducted with FLUENT software in order to investigate the inside flow fi
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