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IMPROVEMENTS IN AERODYNAMIC PERFORMANCE AND NOISE?DUE TO LOW SOLIDITY CASCADE DIFFUSER IN A CENTRIFUGAL BLOWER

机译:由于离心式风机中的固溶级联扩散器低,从而改善了气动性能和噪音

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A high efficiency and a wide operating range are required in recent centrifugal compressors and blowers. Low solidity circular cascade diffuser (LSD) was proposed in place of vaned diffuser and channel diffuser for achieving both higher pressure ratio and wider operating range. In the present study, aerodynamic performance and noise characteristics of LSD were investigated changing a radial location of LSD leading-edge. It is known that an interaction occurs between jet-wake flow discharged from the rotating impeller and the LSD leading edge, however jet-wake flow pattern is almost uniformalized until the radial position of R=1.20 in the vaneless diffuser. Aiming at reducing the noise generated by the interaction mentioned above, the LSD leading edge was moved from R_(LSD)=1.10 to 1.15 and 1.20 in a centrifugal blower with low specific speed. The frequency spectra of noise were analyzed and the noise due to LSD were discussed from the view point of overall noise, discrete frequency noise and broadband noise. In order to clarify the relationship between the flow field and the noise, flow behavior in the impeller as well as in the diffuser was simulated using a Navier-Stokes solver ANSYS-CFX. According to the present experimental results, about 40% improvement in diffuser performance and about 11% improvement in unstable flow range were achieved in small flow rates by the LSD compared with the vaneless diffuser except for a small deterioration in diffuser performance at the large flow rate. On the other hand, the noise increased clearly in the case of R_(LSD)=1.10 at the large flow rate and the small flow rates as well. By locating the LSD blade leading edge downstream farther from the impeller exit, a remarkable reduction in overall noise was achieved without deterioration of diffuser performance. It is found that the noise increase due to LSD is mainly dependent on the broadband noise based on the jet-wake flow, the interaction between the reverse flow and the impeller blades results in the discrete frequency noise defined by the frequency of cross product of the rotational speed of the impeller and the number of LSD blade, and a significant reduction in noise is achieved by uniformalization of the jet-wake flow.
机译:在最近的离心压缩机和鼓风机中需要高效率和宽范围的工作范围。为了实现更高的压力比和更宽的工作范围,人们提出了低密度圆形叶栅式扩压器(LSD)来代替叶片扩压器和通道扩压器。在本研究中,对LSD的空气动力学性能和噪声特性进行了研究,以改变LSD前沿的径向位置。已知在从旋转叶轮排出的喷气-尾流与LSD前缘之间会发生相互作用,但是,喷气-尾流模式几乎均匀化,直到无叶扩压器中的R = 1.20的径向位置为止。为了降低上述相互作用产生的噪声,在低比转速的离心风机中,LSD的前缘从R_(LSD)= 1.10移至1.15和1.20。从整体噪声,离散频率噪声和宽带噪声的角度分析了噪声的频谱,并讨论了由LSD引起的噪声。为了阐明流场与噪声之间的关系,使用Navier-Stokes求解器ANSYS-CFX对叶轮以及扩散器中的流动行为进行了模拟。根据目前的实验结果,与无叶扩散器相比,LSD在小流量情况下,LSD的扩散器性能提高了约40%,不稳定流量范围的改善约11%,但大流量时扩散器性能的下降很小。另一方面,在大流量和小流量的R_(LSD)= 1.10的情况下,噪声也明显增加。通过将LSD叶片前缘放置在距叶轮出口较远的下游,可显着降低总体噪音,而不会降低扩压器的性能。已经发现,由于LSD引起的噪声增加主要取决于基于喷气尾流的宽带噪声,反向流和叶轮叶片之间的相互作用导致了离散的频率噪声,该离散的频率噪声由发动机的叉积的频率定义。叶轮的旋转速度和LSD叶片的数量,以及通过使尾流/尾流均匀化,可显着降低噪声。

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