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Heat Transfer Correction Methods for Turbocharger Performance Measurements

机译:涡轮增压器性能测量的传热校正方法

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摘要

Turbocharger performance maps used for the matching process with a combustion engine are measured on test benches which do not exhibit the same boundary conditions as the engine. However, these maps are used in engine simulations, ignoring that the compressor and turbine aerodynamic performance is rated on the basis of quantities which were measured at positions which do not coincide with the respective system boundaries of the turbomachinery. In the operating range of low to mid engine speeds, the ratio between the heat flux and the work done by the turbine and the compressor is much greater than at high speeds where heat transfer phenomena on the compressor side can usually be neglected. Heat losses on the turbine side must be taken into account even at higher shaft speeds when dealing with isentropic turbine efficiencies. Based on an extensive experimental investigation, a one-dimensional heat transfer model is developed. The compressor and turbine side are treated individually and divided into sections of inlet, wheel, outlet, diffuser, and volute. The model demonstrates the capability to properly account for the impact of heat transfer, and thereby improves the predictive accuracy of temperatures relevant for the matching process.
机译:用于与内燃机匹配的涡轮增压器性能图是在测试台上测量的,该测试台的边界条件与发动机不同。但是,这些映射用于发动机模拟,而忽略了压缩机和涡轮机的空气动力性能是根据在与涡轮机的各个系统边界不一致的位置处测量的量进行评估的。在低至中速发动机的工作范围内,热通量与涡轮机和压缩机完成的功之间的比要比通常忽略压缩机侧传热现象的高速时大得多。在处理等熵涡轮效率时,即使在较高的轴转速下,也必须考虑涡轮侧的热损失。在广泛的实验研究的基础上,建立了一维传热模型。压缩机和涡轮侧分别进行处理,并分为入口,叶轮,出口,扩散器和蜗壳部分。该模型演示了正确考虑传热影响的能力,从而提高了与匹配过程相关的温度的预测准确性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第2期|022602.1-022602.9|共9页
  • 作者单位

    Continental Automotive GmbH, Regensburg D-93055, Germany;

    Institute of Turbomachinery and Fluid Dynamics, Leibniz Universitaet Hannover, Hannover D-30511, Germany;

    Continental Automotive GmbH, Regensburg D-93055, Germany;

    Continental Automotive GmbH, Regensburg D-93055, Germany;

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