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Investigation of using multi-shockwave system instead of single normal shock for improving radial inflow turbine reliability

机译:使用多冲击波系统代替单一法向冲击以提高径向流入涡轮机可靠性的研究

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摘要

A variable nozzle turbine (VNT) has become an important technology for diesel engine applications. During the development and design process, one of the most important tasks is to minimize the risk of high cycle fatigue (HCF) failure. When a VNT operates with high inlet pressure and small nozzle opening, a shock wave may appear near nozzle vane trailing edge. The shock wave introduces strong excitation force on the downstream turbine blades and has a potential to damage the turbine wheel. To improve turbine reliability, a method of generating multi-shockwave system by using grooved surface nozzle was investigated. It was found that, in the multi-shockwave system, the intensity of the shock wave is weakened in comparison to original single normal shock wave, and its impact on the turbine wheel is therefore lowered. However, with the use of the grooved surface, penalty on the turbine efficiency is numerically found, but very small at the research point.
机译:可变喷嘴涡轮机(VNT)已成为柴油发动机应用的一项重要技术。在开发和设计过程中,最重要的任务之一是最大程度地降低高周疲劳(HCF)失效的风险。当VNT在高入口压力和小喷嘴开口的情况下运行时,在喷嘴叶片后缘附近可能会出现冲击波。冲击波在下游涡轮叶片上引入了强大的激励力,并有可能损坏涡轮机叶轮。为了提高涡轮机的可靠性,研究了一种利用带槽表面喷嘴产生多冲击波系统的方法。已经发现,在多冲击波系统中,与原始的单个法向冲击波相比,冲击波的强度减弱了,因此降低了其对涡轮机叶轮的影响。但是,通过使用开槽的表面,可以从数字上发现涡轮效率的损失,但在研究点上很小。

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