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Numerical Investigation of the Impact of Nozzle Endwall Clearance Distribution on Variable Nozzle Turbine Performance

机译:喷嘴端壁间隙分布对可变喷嘴汽轮机性能影响的数值研究

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As the variable nozzle turbine(VNT) becomes an important element in engine fuel economy and engine performance, improvement of turbine efficiency over wide operation range is the main focus of research efforts for both academia and industry in the past decades. It is well known that in a VNT, the nozzle endwall clearance has a big impact on the turbine efficiency, especially at small nozzle open positions. However, the clearance at hub and shroud wall sides may contribute differently to the turbine efficiency penalty. When the total height of nozzle clearance is fixed, varying distribution of nozzle endwall clearance at the hub and shroud sides may possibly generate different patterns of clearance leakage flow at nozzle exit that has different interaction with and impact on the main flow when it enters the inducer. It is possible that variation of the nozzle endwall clearances between hub side and shroud side, e.g. tiny transverse movement of nozzle vanes along their pivotal shafts, results in significant deviations in turbine aerodynamic performances at some operation conditions. In this paper, the deviations of turbine efficiency at three typical nozzle vane openings and different rotational speeds, with different distribution of nozzle endwall clearances were numerically analyzed. It was found that when the total height of nozzle clearances is fixed, changing the nozzle endwall clearance distribution between the hub and shroud sides can impact the turbine performance, and shifting clearance towards hub side can effectively improve the VNT turbine efficiency, especially at high speed ratio and small vane open positions.
机译:随着可变喷嘴涡轮机(VNT)成为发动机燃料经济性和发动机性能的重要元素,在广泛的运营范围内提高涡轮效率是过去几十年学术界和工业研究努力的主要重点。众所周知,在VNT中,喷嘴端壁间隙对涡轮机效率产生了大的影响,尤其是在小喷嘴打开位置。然而,轮毂和护罩壁侧的间隙可能与涡轮机效率的惩罚不同。当喷嘴间隙的总高度是固定的时,毂和护罩侧面的喷嘴端壁间隙的变化分布可能在喷嘴出口处可能产生不同的间隙泄漏流程,当它进入诱导器时具有不同的相互作用和冲击的主流。 。毂侧和护罩侧之间的喷嘴端壁间隙的变化可能是毂侧和护罩侧的变化。喷嘴叶片沿着枢轴轴的微小横向运动,导致在一些操作条件下涡轮机空气动力学性能的显着偏差。在本文中,在数值分析了涡轮效率在三种典型的喷嘴叶片开口和不同的旋转速度下偏差,具有不同的喷嘴端壁间隙的分布。发现当喷嘴间隙的总高度固定时,改变毂和护罩侧面之间的喷嘴端壁间隙分布可以影响涡轮机性能,并且朝向中心侧的换档可以有效地提高VNT涡轮机效率,尤其是高速比例和小叶叶片打开位置。

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