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A STUDY OF IMPELLER-DIFFUSER-VOLUTE INTERACTION IN A CENTRIFUGAL FAN

机译:离心式风扇叶轮 - 扩散器型相互作用的研究

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This paper reports velocity measurement data in the interaction region between the impeller and vaned diffuser and the results of numerical flow simulation of the whole machine (impeller, vaned diffuser and volute) of a single stage centrifugal fan. Two-Dimensional instantaneous velocity measurement is done using particle image velocimetry (PIV). Numerical simulation of impeller-diffuser-volute interaction is performed using CFX-Tascflow commercial code. A frozen rotor simulation model is used for the steady calculation and a rotor-stator simulation model is used for the unsteady calculation using the steady results as an initial guess. The simulation results show that the separated flow regime near the diffuser hub extends to the volute. Comparison between the unsteady computation and those of measurement indicates that the Rotor/Stator Model employed in the simulation predicts essential characteristics of unsteady flow in the centrifugal fan. However, quantitative agreement remains rather poor.
机译:本文报告了叶轮和叶片扩散器之间的相互作用区域中的速度测量数据以及单级离心风扇的整个机器(叶轮,叶片,叶片扩散器和蜗壳)的数值流模拟结果。使用粒子图像VELOCIMETRY(PIV)完成二维瞬时速度测量。使用CFX-Tascflow商业代码进行叶轮漫射型相互作用的数值模拟。冷冻转子仿真模型用于稳定计算,转子定子仿真模型用于使用稳定的结果作为初始猜测的不稳定计算。仿真结果表明,扩散器毂附近的分离的流动状态延伸到蜗壳。不稳定计算与测量之间的比较表明,模拟中采用的转子/定子模型预测了离心式风扇中不稳定流动的基本特征。但是,量化协议仍然相当差。

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