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Design methodology of a low pressure turbine for waste heat recovery via electric turbocompounding

机译:通过电动涡轮复合机回收废热的低压涡轮机的设计方法

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摘要

This paper presents a design methodology of a high performance Low Pressure Turbine (LPT) for turbocompounding applications to be used in a 1.0 L “cost-effective, ultra-efficient heavily downsized gasoline engine for a small and large segment passenger car”. Under this assumption, the LPT was designed to recover the latent energy of discharged exhaust gases at low pressure ratios (1.05–1.3) and to drive a small electric generator with a maximum power output of 1.0 kW. The design speed was fixed at 50,000 rpm with a pressure ratio, PR of 1.08. Commercially available turbines are not suitable for this purpose due to the very low efficiencies experienced when operating in these pressure ratio ranges. By fixing all the LPT requirements, the turbine loss model was combined with the geometrical model to calculate preliminary LPT geometry. The LPT features a mixed-flow turbine with a cone angle of 40° and 9 blades, with an inlet blade angle at radius mean square of +20°. The exit-to-inlet area ratio value is approximately 0.372 which is outside of the conventional range indicating the novelty of the approach. A single passage Computational Fluid Dynamics (CFD) model was applied to optimize the preliminary LPT design by changing the inlet absolute angle. The investigation found the optimal inlet absolute angle was 77°.
机译:本文提出了一种用于涡轮复合应用的高性能低压涡轮(LPT)的设计方法,该技术将用于1.0升“适用于小型和大型乘用车的经济高效,超高效重型轻量化汽油发动机”。在此假设下,LPT旨在在低压比(1.05–1.3)下回收排放的废气潜能,并驱动最大功率为1.0 kW的小型发电机。设计速度固定为50,000 rpm,压力比PR为1.08。由于在这些压力比范围内运行时效率非常低,因此商用涡轮机不适合该目的。通过确定所有LPT要求,将涡轮损失模型与几何模型结合起来以计算LPT的初步几何形状。 LPT具有锥角为40°的混合流涡轮机和9个叶片,进口叶片角的半径均方为+ 20°。出口与入口的面积比值约为0.372,超出了传统方法的范围,表明该方法是新颖的。应用单通道计算流体动力学(CFD)模型通过更改入口绝对角度来优化初步LPT设计。调查发现最佳进气绝对角度为77°。

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