首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >AN INTEGRATED DESIGN APPROACH FOR TURBOCHARGER TURBINES BASED ON THE PERFORMANCE OPTIMIZATION IN TRANSITORY CONDITIONS
【24h】

AN INTEGRATED DESIGN APPROACH FOR TURBOCHARGER TURBINES BASED ON THE PERFORMANCE OPTIMIZATION IN TRANSITORY CONDITIONS

机译:基于过渡条件下性能优化的涡轮增压器综合设计方法

获取原文

摘要

Turbocharged engines are setting themselves as the present standard in case of high-performance engines for sport applications. The coupling of a turbomachine with an internal combustion engine poses, however, some serious challenges, especially regarding the time lags and the transitory flow conditions. In particular, focus is presently being paid to the acceleration phase of these sport vehicles, where the mass flow is much lower than that attended at maximum efficiency condition and the transitory response of the turbocharger becomes pivotal to provide promptly high compression ratios to the engine. In this view, the global optimization process of new turbochargers must be oriented not only at maximizing the aerodynamic efficiency at the best design point but also at providing good efficiency at low mass flow rates, combined with a reduced inertia to enable fast acceleration. In the study, a multi-objective methodological approach is presented aimed at designing the turbine of a high-performance turbocharged engine based on the following requirements: I) high efficiency at the design point; 2) good efficiency at low mass flow rates, typical of the acceleration phase; 3) reduced inertia; 4) overall aerodynamic design adaptable with constructive constraints. In doing so, some design considerations are also provided, pointing out the different design choices that can be made in a design strategy focused either on maximum efficiency or on the minimization of the system inertia. The aerodynamic optimization has been carried out with an in-house CFD 3D code, while the turbine coupling with the engine has been obtained by embedding the aerodynamic maps into the 1D engine model. The analysis showed that the new focus on the transitory response modified substantially the conventional design of the turbine, leading to new geometries able to improve notably the overall performance of the turbocharger.
机译:涡轮增压发动机正在为运动应用的高性能发动机设置为本标准。然而,具有内燃机的涡轮机与内燃机的联接姿势存在一些严重的挑战,特别是关于时间滞后和暂时流动条件。特别地,目前将重点用于这些运动车辆的加速阶段,其中质量流量远低于最大效率条件的速度,并且涡轮增压器的暂时响应变为枢转,以向发动机提供迅速的高压缩比。在这种观景中,新涡轮增压器的全局优化过程不仅必须以最佳设计点的空气动力学效率最大化,而且还要在低质量流量率下提供良好的效率,结合减少的惯性以实现快速加速。在该研究中,提出了一种多目标方法方法,旨在根据以下要求设计高性能涡轮增压发动机的涡轮机:i)设计点的高效率; 2)低质量流量效率良好,典型的加速阶段; 3)减少惯性; 4)整体空气动力学设计适用于建设性约束。在这样做时,还提供了一些设计考虑因素,指出了可以在最大效率或系统惯性的最小化的设计策略中进行的不同设计选择。空气动力学优化已经通过内部CFD 3D代码进行,而通过将空气动力学映射嵌入1D发动机模型来获得与发动机的涡轮机联接。该分析表明,新的瞬间响应的新重点改进了涡轮机的常规设计,导致新几何形状能够改善涡轮增压器的整体性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号