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Energy Efficient Engine Low Pressure Subsystem Aerodynamic Analysis

机译:节能发动机低压子系统空气动力学分析

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摘要

The objective of this study was to demonstrate the capability to analyze the aerodynamic performance of the complete low pressure subsystem (LPS) of the Energy Efficient Engine (EEE). Detailed analyses were performed using three- dimensional Navier-Stokes numerical models employing advanced clustered processor computing platforms. The analysis evaluates the impact of steady aerodynamic interaction effects between the components of the LPS at design and off- design operating conditions. Mechanical coupling is provided by adjusting the rotational speed of common shaft-mounted components until a power balance is achieved. The Navier-Stokes modeling of the complete low pressure subsystem provides critical knowledge of component acro/mechanical interactions that previously were unknown to the designer until after hardware testing.
机译:这项研究的目的是证明能够分析节能发动机(EEE)的整个低压子系统(LPS)的空气动力性能。使用三维Navier-Stokes数值模型进行了详细的分析,该模型采用了先进的集群处理器计算平台。该分析评估了LPS组件之间在设计和非设计运行条件下稳定的空气动力相互作用的影响。通过调节常见的安装在轴上的组件的转速直至达到功率平衡,从而提供机械联接。完整的低压子系统的Navier-Stokes建模提供了有关零件杂技/机械相互作用的关键知识,以前这些对于设计师而言直到硬件测试之后才为设计师所知。

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