首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Unsteady Responses of the Impeller of a Centrifugal Compressor Exposed to Pulsating Backpressure
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Unsteady Responses of the Impeller of a Centrifugal Compressor Exposed to Pulsating Backpressure

机译:离心式压缩机叶轮受到脉动背压的不稳定响应

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The flow in intake manifold of a heavily downsized internal combustion engine has increased levels of unsteadiness due to the reduction of cylinder number and manifold arrangement. The turbocharger compressor is thus exposed to significant pulsating back-pressure. This paper studies the response of a centrifugal compressor to this unsteadiness using an experimentally validated numerical method. A computational fluid dynamic (CFD) model with the volute and impeller is established and validated by experimental measurements. Following this, an unsteady three-dimensional (3D) simulation is conducted on a single passage imposed by the pulsating backpressure conditions, which are obtained by one-dimensional (1D) unsteady simulation. The performance of the rotor passage deviates from the steady performance and a hysteresis loop, which encapsulates the steady condition, is formed. Moreover, the unsteadiness of the impeller performance is enhanced as the mass flow rate reduces. The pulsating performance and flow structures near stall are more favorable than those seen at constant backpressure. The flow behavior at points with the same instantaneous mass flow rate is substantially different at different time locations on the pulse. The flow in the impeller is determined by not only the instantaneous boundary condition but also by the evolution history of flow field. This study provides insights in the influence of pulsating backpressure on compressor performance in actual engine situations, from which better turbo-engine matching might be benefited.
机译:由于气缸数量和歧管布置的减少,严重缩小尺寸的内燃机的进气歧管中的流动具有增加的不稳定度。因此,涡轮增压器压缩机承受明显的脉动背压。本文使用经过实验验证的数值方法研究了离心压缩机对这种不稳定的响应。建立了带有蜗壳和叶轮的计算流体动力学(CFD)模型,并通过实验测量对其进行了验证。此后,在由脉动背压条件施加的单通道上执行非稳态三维(3D)仿真,该条件是通过一维(1D)非稳态仿真获得的。转子通道的性能偏离稳定性能,并形成了一个磁滞回线,该磁滞回线封装了稳定状态。此外,随着质量流率的降低,叶轮性能的不稳定性增加。失速附近的脉动性能和流动结构比在恒定背压下所看到的更为有利。具有相同瞬时质量流率的点处的流动行为在脉冲的不同时间位置处显着不同。叶轮中的流量不仅取决于瞬时边界条件,还取决于流场的演变历史。这项研究提供了在实际发动机情况下脉动背压对压缩机性能的影响的真知灼见,可以从中受益于更好的涡轮发动机匹配。

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