Abstract

In the present paper the attention is focused on correlation between fan noise and velocity fluctuations of tip leakage vortex around rotor blade of a low pressure axial flow fan at the maximum pressure operating point. We measured time fluctuating velocity near the rotor tip around the rotor blades by using a hot-wire sensor from a relative flame of refer- ence fixed to the rotor blades. As the results, it is clear that the velocity fluctuation due to tip leakage vortex has weak periodicity and the hump portion appeared in its spectrum. If the flow rate was lower than the design condition, the tip leakage flow became to attach to the following blade and the sound pressure level at frequency of velocity fluctuation of this flow was increased. The correlation measurements between the velocity fluctuation of tip leakage flow and the aerodynamic noise were made using a rotating hot-wire sensor near the rotor tip in the rotating frame. The correlation between the velocity fluctuation due to tip leakage flow and acoustic pressure were increased due to generation of weak acoustic resonance at the maximum pressure operating point.

Highlights

  • Low noise level is an important sales point of the various kinds of machines as well as high performance and miniaturization

  • The correlation measurements between the velocity fluctuation of tip leakage flow and the aerodynamic noise were made using a rotating hot-wire sensor near the rotor tip in the rotating frame

  • The correlation measurements between the velocity fluctuation of tip leakage flow and the aerodynamic noise are made using a rotating hot-wire sensor near the rotor tip in the rotating frame

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Summary

Introduction

Low noise level is an important sales point of the various kinds of machines as well as high performance and miniaturization This situation is applied to axial flow fans used, for example, in air conditioners. Fukano and Jang [7] reported that the noise increase due to tip clearance flow at low flow rate condition was analyzed with relation to the distribution of velocity fluctuation due to the interference between the tip leakage vortex and the adjacent pressure surface of the blade. The purpose of the present study is to clarify the relation between fan noise and velocity fluctuations of tip leakage flow around rotor blade of a low pressure axial flow fan in the cases of the design and off design point. The correlation measurements between the velocity fluctuation of tip leakage flow and the aerodynamic noise are made using a rotating hot-wire sensor near the rotor tip in the rotating frame

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