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Prediction of Surge in a Turbocharger Compression System vs. Measurements

机译:涡轮增压器压缩系统中浪涌的预测与测量

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The unsteady surge behavior of a turbocharger compression system is studied computationally by employing a one-dimensional engine simulation code. The system modeled represents a new turbocharger test stand consisting of a compressor inlet duct breathing from ambient, a centrifugal compressor, an exit duct connected to an adjustable-volume plenum, followed by another duct which incorporates a control valve and an orifice flow meter before exhausting to ambient. Characteristics of mild and deep surge are captured as the mass flow rate is reduced below the stability limit, including discrete sound peaks at low frequencies along with their amplitudes in the compressor (downstream) duct and plenum. The predictions are then compared with the experimental results obtained from the cold stand placed in a hemi-anechoic room. The computational results are shown to be capable of reproducing a number of key experimental observations, including the details of low-frequency pressure fluctuations in the compressor ducts and plenum; and the transition from stable operation to oscillating mild surge.
机译:通过采用一维发动机仿真代码计算涡轮增压器压缩系统的不稳定浪涌行为。系统建模代表了一种新的涡轮增压器测试支架,该试验台由环境温度的压缩机入口管道组成,离心压缩机,连接到可调节容积增压室的出口管道,其次是另一个管道,该管道在铰接之前包括控制阀和孔口流量计。到环境。捕获温和和深浪涌的特性,因为质量流量降低低于稳定性极限,包括低频下的离散声峰以及压缩机(下游)管道和增压室中的幅度。然后将预测与从放置在Hemi-Anechoic室中的冷架获得的实验结果进行比较。计算结果显示能够再现多个关键的实验观察结果,包括压缩机管道和增压室中的低频压力波动细节;从稳定运行到振荡温和浪涌的过渡。

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