首页> 美国卫生研究院文献>Journal of Turbomachinery >Stability Improvement of High-Pressure-Ratio Turbocharger Centrifugal Compressor by Asymmetrical Flow Control—Part II: Nonaxisymmetrical Self-Recirculation Casing Treatment
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Stability Improvement of High-Pressure-Ratio Turbocharger Centrifugal Compressor by Asymmetrical Flow Control—Part II: Nonaxisymmetrical Self-Recirculation Casing Treatment

机译:非对称流量控制提高高压比涡轮增压器离心压缩机的稳定性-第二部分:非轴对称自循环套管处理

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摘要

This is part II of a two-part paper involving the development of an asymmetrical flow control method to widen the operating range of a turbocharger centrifugal compressor with high-pressure ratio. A nonaxisymmetrical self-recirculation casing treatment (SRCT) as an instance of asymmetrical flow control method is presented. Experimental and numerical methods were used to investigate the impact of nonaxisymmetrical SRCT on the surge point of the centrifugal compressor. First, the influence of the geometry of a symmetric SRCT on the compressor performance was studied by means of numerical simulation. The key parameter of the SRCT was found to be the distance from the main blade leading edge to the rear groove (Sr). Next, several arrangements of a nonaxisymmetrical SRCT were designed, based on flow analysis presented in part I. Then, a series of experiments were carried out to analyze the influence of nonaxisymmetrical SRCT on the compressor performance. Results show that the nonaxisymmetrical SRCT has a certain influence on the performance and has a larger potential for stability improvement than the traditional symmetric SRCT. For the investigated SRCT, the surge flow rate of the compressor with the nonaxisymmetrical SRCTs is about 10% lower than that of the compressor with symmetric SRCT. The largest surge margin (smallest surge flow rate) can be obtained when the phase of the largest Sr is coincident with the phase of the minimum static pressure in the vicinity of the leading edge of the splitter blades.
机译:这是由两部分组成的论文的第二部分,该论文涉及开发一种不对称流量控制方法,以扩大具有高压比的涡轮增压器离心压缩机的工作范围。提出了一种非轴对称自循环套管处理(SRCT)方法,作为非对称流量控制方法的一个实例。采用实验和数值方法研究了非轴对称SRCT对离心压缩机喘振点的影响。首先,通过数值模拟研究了对称SRCT的几何形状对压缩机性能的影响。发现SRCT的关键参数是从主刀片前缘到后凹槽(Sr)的距离。接下来,在第一部分介绍的流量分析的基础上,设计了非轴对称SRCT的几种布置。然后,进行了一系列实验以分析非轴对称SRCT对压缩机性能的影响。结果表明,与传统的对称SRCT相比,非轴对称SRCT对性能有一定的影响,并且具有更大的稳定性提高潜力。对于所研究的SRCT,具有非轴对称SRCT的压缩机的喘振流量比具有对称SRCT的压缩机的喘振流量低约10%。当最大Sr的相位与分离叶片前缘附近的最小静压的相位一致时,可以获得最大的喘振裕度(最小的喘振流量)。

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