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Study of two-stage turbine characteristic and its influence on turbo-compound engine performance

机译:两级涡轮特性及其对涡轮复合发动机性能影响的研究

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Turbo-compounding is an effective way to recover waste heat from engine exhaust and reduce fuel consumption for internal combustion engine (ICE). The characteristics of two-stage turbine, including turbocharger turbine and power turbine, have significant effects on the overall performance of turbo-compound engine. This paper investigates the interaction between two turbines in a turbo-compound engine and its impact on the engine performance. Firstly an analytical model is built to investigate the effects of turbine equivalent flow area on the two-stage turbine characteristics, including swallowing capacity and load split. Next both simulation and experimental method are carried out to study the effects of high pressure variable geometry turbine (HP VGT), low pressure variable geometry turbine (LP VGT) and combined VGT on the engine overall performance. The results show that the engine performance is more sensitive to HP VGT compared with LP VGT at all the operation conditions, which is caused by the larger influences of HP VGT on the total expansion ratio and engine air-fuel ratio. Using the HP VGT method, the fuel reductions of the turbo-compound engine at 1900 rpm and 1000 rpm are 3.08% and 7.83% respectively, in comparison with the baseline engine. The corresponding optimum values of AR are 2.0 and 2.5. (C) 2015 Elsevier Ltd. All rights reserved.
机译:涡轮复合是从发动机废气中回收废热并减少内燃机(ICE)燃料消耗的有效方法。两级涡轮机的特性(包括涡轮增压器涡轮机和动力涡轮机)对涡轮复合发动机的整体性能具有重大影响。本文研究了涡轮复合发动机中两个涡轮之间的相互作用及其对发动机性能的影响。首先建立分析模型,研究涡轮等效流面积对两级涡轮特性的影响,包括吞咽能力和负荷分配。接下来,将通过仿真和实验方法研究高压可变几何涡轮(HP VGT),低压可变几何涡轮(LP VGT)和组合式VGT对发动机总体性能的影响。结果表明,与LP VGT相比,在所有工况下,发动机性能对HP VGT更为敏感,这是由于HP VGT对总膨胀比和发动机空燃比的影响较大。使用HP VGT方法,与基线发动机相比,涡轮复合发动机在1900 rpm和1000 rpm时的燃油减少分别为3.08%和7.83%。 AR的最佳值是2.0和2.5。 (C)2015 Elsevier Ltd.保留所有权利。

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