首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATION OF THE INCLINED LEADING EDGE DIFFUSER VANE EFFECTS ON THE FLOW UNSTEADINESS AND NOISE CHARACTERISTICS IN A TRANSONIC CENTRIFUGAL COMPRESSOR
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NUMERICAL INVESTIGATION OF THE INCLINED LEADING EDGE DIFFUSER VANE EFFECTS ON THE FLOW UNSTEADINESS AND NOISE CHARACTERISTICS IN A TRANSONIC CENTRIFUGAL COMPRESSOR

机译:跨音速离心压缩机中倾斜前沿扩散器叶片对流动非定常性和噪声特性的数值研究

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The three-dimensional, compressible, unsteady Navier-Stokes equations are solved to investigate the influence of the inclined leading edge diffuser vanes on the flow field and radiated noise from a transonic centrifugal compressor with high compression ratio. The computational domain is consisted of an inlet duct and a rotating impeller with splitter blades followed by a two-dimensional wedge vaned diffuser. The numerical method was validated by comparing the steady computational results with those of experiments in terms of pressure ratio and compressor efficiency at different operating points for the original diffuser. The transient simulations were verified by comparison of the velocity distribution with PIV data in normal flow condition before the onset of surge. In the case of steady simulations, seven types of diffuser vane with various inclination angles of leading edge were numerically modeled to investigate the effects of inclined leading edge on the diffuser pressure recovery and total pressure loss characteristics. The vaned diffuser with inclined leading edge reduces the interaction between the impeller discharge flow and diffuser leading edge which leads to improve the pressure recovery characteristics within the diffuser passage. Detailed flow analysis inside the diffuser passage showed the pressure ratio and compressor efficiency have been improved by the inclined leading edges. The maximum diffuser pressure recovery coefficient, 0.7185, and compressor efficiency, 84.80%, were observed in the case of 30 degree inclination angle from hub-to-shroud. In the case of transient simulations, five different inclined leading edge diffuser vanes were numerically conducted. The present study focuses on the unsteady pressure fluctuations and noise prediction within the impeller and diffuser passages at the compressor design point. The influences of inclination angle of diffuser vane leading edges on the pressure waves with different convective velocities, generated by the impeller-diffuser interaction and pseudo-periodic unsteady separation bubbles, were captured in the time/space domain along the diffuser blade surfaces. Since it is important to understand that the far-field acoustics are dominated by the internal pressure fluctuations inside the passages, the near-field pressure fluctuation spectra captured at the impeller-diffuser interface are evaluated to analyze the tonal BPF noise as the main noise source in the centrifugal compressors. It is shown that the inclined leading edges are very useful not only for improvement of the pressure recovery characteristics within the diffuser but also for the reduction of the interaction tonal BPF noise (around 7.6 dB SPL reduction). Furthermore, it was found that by using the inclined leading edge, the vortical structures and separations within the diffuser passages were reduced which may cause the attenuation of the broadband noise components and the overall sound pressure level.
机译:求解了三维可压缩的非稳态Navier-Stokes方程,以研究倾斜的前缘扩压器叶片对高压缩比跨音速离心压缩机的流场和辐射噪声的影响。计算域由进气管道和带有分流叶片的旋转叶轮,然后是二维楔形叶片式扩散器组成。通过比较原始扩散器在不同工作点的压力比和压缩机效率,将稳态计算结果与实验结果进行了比较,从而验证了该数值方法的有效性。通过在喘振开始之前将正常流量条件下的速度分布与PIV数据进行比较,验证了瞬态模拟。在稳定模拟的情况下,对具有不同前缘倾斜角的七种扩散器叶片进行了数值建模,以研究倾斜的前缘对扩散器压力恢复和总压力损失特性的影响。带有倾斜前缘的叶片式扩压器减少了叶轮排放流和扩压器前缘之间的相互作用,从而改善了扩压器通道内的压力恢复特性。扩压器通道内部的详细流量分析表明,倾斜的前缘提高了压力比和压缩机效率。在从毂到罩的倾斜角度为30度的情况下,观察到最大的扩压器压力恢复系数0.7185和压缩机效率84.80%。在瞬态仿真的情况下,数值模拟了五个不同的倾斜前缘扩压器叶片。本研究的重点是在压缩机设计点的叶轮和扩压器通道内的非稳态压力波动和噪声预测。在叶轮-扩散器相互作用和伪周期非稳态分离气泡产生的扩散流叶片前缘的倾斜角度对具有不同对流速度的压力波的影响,是在扩散器叶片表面的时/空域中捕获的。由于重要的是要了解远场声学受通道内部的内部压力波动支配,因此评估在叶轮-扩散器界面捕获的近场压力波动谱,以分析作为主要噪声源的音调BPF噪声在离心式压缩机中。结果表明,倾斜的前缘不仅对于改善扩散器内的压力恢复特性非常有用,而且对于减少相互作用的音调BPF噪声(降低7.6 dB SPL)非常有用。此外,已经发现,通过使用倾斜的前缘,减小了扩散器通道内的涡旋结构和间隔,这可能导致宽带噪声分量和整体声压级的衰减。

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