首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Design criterion for asymmetric twin-entry radial turbine for efficiency under steady and pulsating inlet conditions
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Design criterion for asymmetric twin-entry radial turbine for efficiency under steady and pulsating inlet conditions

机译:稳态脉动入口条件下不对称双进径径向汽轮机的设计标准

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The internal combustion engine plays an important role in energy conservation and environmental protection. An efficient way to simultaneously reduce the engine fuel consumption and the emissions (NOx) is an asymmetric twin-entry turbine turbocharging system. The asymmetric twin-entry turbine uses a volute that has two scrolls in the axial direction with different throat areas. The smaller area scroll can increase the backpressure to support the exhaust gas recirculation system for lower NOx emissions; meanwhile, the larger area scroll can decrease the backpressure to reduce the exhaust resistance for lower fuel consumption. The area ratio is dependent on the required exhaust gas recirculation rate and fuel consumption. However, there are no guidelines for how to arrange the scrolls, and whether placing the big scroll on the hub side or the shroud side can provide improved results remains unknown. In this paper, two different design types are discussed for the asymmetric turbine, one with the big scroll on the hub side, while the other is on the shroud side. Also, the unsteady computational fluid dynamics (CFD) simulation is under steady and pulsating inlet conditions. The results show that when under steady inlet conditions, the efficiency of the asymmetric turbine with the big scroll on the shroud side is nearly 1.6% higher. However, when facing pulsating inlet conditions, the efficiency of the asymmetric turbine with the big scroll on the hub side is almost 1.1% higher. The difference is due to the different mass flow storage capacities of the two scrolls under pulsating inlet conditions. The design criterion for asymmetric twin-entry turbine states that if the turbocharger is designed for a large volume exhaust manifold, it is better to place the big scroll on the shroud side. If for a small volume exhaust manifold, it is better to set the big scroll on the hub side.
机译:内燃机在节能和环境保护中起着重要作用。同时降低发动机燃料消耗和排放(NOx)的有效方法是不对称双进涡轮机涡轮增压系统。非对称双进涡轮机使用蜗壳,其在轴向上具有两个轴向,具有不同的喉部区域。较小的区域涡旋滚动可以增加背压以支撑用于较低NOx排放的废气再循环系统;同时,较大的区域涡旋滚动可以减少背压以减少较低燃料消耗的排气电阻。面积比取决于所需的废气再循环率和燃料消耗。但是,没有如何排列卷轴的指导方针,以及将大滚动放在轮毂侧还是护罩侧可以提供改进的结果仍然未知。在本文中,对非对称涡轮机讨论了两种不同的设计类型,其中一个具有毂侧的大卷轴,而另一个是在护罩侧。此外,不稳定的计算流体动力学(CFD)仿真在稳定且脉动的入口条件下。结果表明,当在稳定的入口条件下,外侧涡轮涡轮机上的不对称涡轮机的效率高升高1.6%。然而,当面对脉动入口条件时,具有枢纽侧的非对称涡轮机的效率较大的速度较大差约较高1.1%。差异是由于脉动入口条件下的两个滚动的不同质量流量存储容量。非对称双入口涡轮机的设计标准指出,如果涡轮增压器设计用于大容量排气歧管,最好将大卷轴放在护罩侧。如果为一个小批量排气歧管,最好在集线器侧设置大滚动。

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