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Experimental study on the performance of a turbocompound diesel engine with variable geometry turbocharger

机译:可变几何涡轮增压器涡轮复合柴油机性能的实验研究

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摘要

Turbocompounding is a key technology to satisfy the future requirements of diesel engine's fuel economy and emission reduction. A turbocompound diesel engine was developed based on a conventional 11-Liter heavy-duty diesel engine. The turbocompound system includes a power turbine, which is installed downstream of a Variable Geometry Turbocharger (VGT) turbine. The impacts of the VGT rack position on the turbocompound engine performance were studied. An optimal VGT control strategy was determined. Experimental results show that the turbocompound engine using the optimal VGT control strategy achieves better performance than the original engine under all full load operation conditions. The averaged and maximum reductions of the brake specific fuel consumption (BSFC) are 3% and 8% respectively.
机译:涡轮复合技术是满足未来柴油机燃油经济性和减排要求的一项关键技术。基于传统的11升重型柴油发动机开发了涡轮复合柴油发动机。涡轮复合系统包括动力涡轮,该动力涡轮安装在可变几何涡轮增压器(VGT)涡轮的下游。研究了VGT齿条位置对涡轮复合发动机性能的影响。确定了最佳VGT控制策略。实验结果表明,采用最佳VGT控制策略的涡轮复合发动机在所有满负荷运行条件下均比原始发动机具有更好的性能。制动平均油耗(BSFC)的平均减少量和最大减少量分别为3%和8%。

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