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PERFORMANCE PREDICTION OF TWIN-ENTRY TURBOCHARGER TURBINES

机译:双进气涡轮增压器的性能预测

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摘要

In this paper, the performance of the twin-entry radial flow turbine under steady state and partial admission conditions is modeled. The method, which is developed here, is based on one-dimensional performance prediction. In one-dimensional modeling, the flow properties are assumed constant on a plane normal to the flow direction. This assumption is in contrast with the flow at the rotor entry of a twin-entry turbine under partial admission condition. In this study the one-dimensional performance prediction method for single-entry turbine is modified to analyze the twin-entry turbine. In particular, the loss coefficients due to friction, clearance and blade loading, which are already developed for single-entry turbines, are modified. Also additional losses in the rotor are considered because of twin-entry rotor inlet conditions and the rotor-mixing losses. Indeed in a single-entry turbine with symmetric volute the flow tends to move toward the shroud. A correlation for the radial velocity profile at the rotor entry for this case is obtained and is considered to be optimum. Then the rotor mixing loss is estimated. Finally a model based on the above mentioned matters is developed. The results obtained from the model are compared with experimental results and good agreements are obtained. In this paper, special behaviors of the flow in the twin-entry turbine are also investigated and some physical interpretations are presented.
机译:在本文中,对双入口径向流涡轮在稳态和部分进气条件下的性能进行了建模。在此开发的方法基于一维性能预测。在一维建模中,假定流动特性在垂直于流动方向的平面上恒定。该假设与部分进入条件下双入口涡轮机转子入口处的流量相反。本文对单进汽轮机的一维性能预测方法进行了改进,以分析双进汽轮机。特别地,已经修改了已经为单入口涡轮机开发的由于摩擦,游隙和叶片负载而引起的损耗系数。由于双入口转子入口条件和转子混合损失,还考虑了转子中的其他损失。确实,在具有对称蜗壳的单入口涡轮机中,流量趋于向护罩移动。在这种情况下,获得了转子入口处径向速度分布的相关性,并被认为是最佳的。然后,估计转子混合损失。最后,建立了基于上述问题的模型。从模型中获得的结果与实验结果进行比较,并获得了良好的一致性。本文还研究了双进汽轮机中的特殊流动特性,并给出了一些物理解释。

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