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Meanline Analysis of Turbines with Choked Flow in the Object-Oriented Turbomachinery Analysis Code

机译:面向对象的涡轮机械分析代码中的节流涡轮机均线分析

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The prediction of turbomachinery performance characteristics is an important part of the conceptual aircraft engine design process. During this phase, the designer must examine the effects of a large number of turbomachinery design parameters to determine their impact on overall engine performance and weight. The lack of detailed design information available in this phase necessitates the use of simpler meanline and streamline methods to determine the turbomachinery geometry characteristics and provide performance estimates prior to more detailed CFD analyses. While a number of analysis codes have been developed for this purpose, most are written in outdated software languages and may be difficult or impossible to apply to new, unconventional designs. The Object-Oriented Turbomachinery Analysis Code (OTAC) is currently being developed at NASA Glenn Research Center to provide a flexible meanline and streamline analysis capability in a modern object-oriented language. During the development and validation of OTAC, a limitation was identified in the code's ability to analyze and converge turbines as the flow approached choking. This paper describes a series of changes which can be made to typical OTAC turbine meanline models to enable the assessment of choked flow up to limit load conditions. Results produced with this revised model setup are provided in the form of turbine performance maps and are compared to published maps.
机译:涡轮机械性能特征的预测是概念飞机发动机设计过程的重要组成部分。在此阶段,设计人员必须检查大量涡轮机械设计参数的影响,以确定它们对整体发动机性能和重量的影响。在此阶段,由于缺少详细的设计信息,因此必须使用更简单的平均线和流线方法来确定涡轮机械的几何特性,并在进行更详细的CFD分析之前提供性能估算。尽管为此目的开发了许多分析代码,但大多数分析代码都是用过时的软件语言编写的,可能难以或不可能应用于新的非常规设计。 NASA Glenn研究中心目前正在开发面向对象的涡轮机械分析代码(OTAC),以现代的面向对象语言提供灵活的平均值和精简分析功能。在OTAC的开发和验证过程中,随着流量接近阻塞,该规范在分析和收敛涡轮机方面的能力受到了限制。本文介绍了可以对典型的OTAC涡轮平均线模型进行的一系列更改,以评估阻塞流量以限制负载条件。使用修订后的模型设置产生的结果以涡轮机性能图的形式提供,并与已发布的图进行比较。

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