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Adaptive flow optimization of a turbocharger compressor to improve engine low speed performance

机译:涡轮增压器压缩机的自适应流量优化,以改善发动机低速性能

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摘要

To improve the engine overall performance, an adaptive flow optimization procedure is proposed in this paper to synthesize turbocharger compressor optimum designs. Two objective functions are involved in the adaptive optimization. They are the traditional compressor design and the compressor design with consideration of improving engine overall performance. The two-step decomposition approach is chosen to generate optimum designs. The optimized designs not only satisfy turbomachinery and engine constraints but also have optimum objective function values in the two fields. Performance sensitivity analysis of compressor main design variables is performed for the flow optimization design process. A centrifugal compressor is redesigned for a turbocharged gasoline engine, as an example, based on the adaptive flow optimization process. The calculating results show a more than 5% increase of isentropic efficiency in comparison with the base line compressor, resulting in a more than 19% increase of engine torque at low speed conditions.
机译:为了提高发动机的整体性能,本文提出了一种自适应的流量优化程序,以合成涡轮增压压缩机的最佳设计。自适应优化涉及两个目标函数。它们是传统的压缩机设计,并且是考虑改善发动机整体性能的压缩机设计。选择两步分解方法以生成最佳设计。优化的设计不仅可以满足涡轮机械和发动机的限制,而且在这两个领域都具有最佳的目标函数值。对流量优化设计过程进行压缩机主要设计变量的性能敏感性分析。例如,基于自适应流量优化过程,将离心式压缩机重新设计用于涡轮增压汽油发动机。计算结果表明,与基线压缩机相比,等熵效率提高了5%以上,在低速条件下发动机扭矩提高了19%以上。

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