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Engine Performance Improvement by Controlling the Low Pressure Compressor Workina Line

机译:通过控制低压压缩机Workina生产线来提高发动机性能

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The new algorithm provides closed-loop control of the LP compressor working line in such a way as to maintain compressor stability and to provide increased power from the engine at the same firing temperature. This method is intended for the Trent 60, an aeroderivative engine designated for power generation and mechanical drive applications. The power benefit is achieved by operating at higher LPC pressure ratio and thereby increasing the inlet air flow and overall pressure ratio of the engine. Since the algorithm controls the working line, the threats to compressor stability related to the working line level are removed (including production scatter, deterioration, and fouling) and the required surge margin can be safely reduced, providing a significant benefit in engine performance. The paper presents comparatively the structure of the current and new concepts, the main features of the controller, and stresses the improved accuracy and reliability of new algorithms. The performance benefit is then assessed; the increase in power is about 3% at ISO, sea level conditions and varies with ambient temperature.
机译:新算法提供了对LP压缩机工作线的闭环控制,以保持压缩机的稳定性并在相同的点火温度下提供来自发动机的更大功率。该方法适用于Trent 60,这是一种用于发电和机械驱动应用的航改发动机。通过在更高的LPC压力比下运行并因此增加进气流量和发动机的总压力比来获得动力收益。由于该算法控制着工作线,因此消除了与工作线水平相关的对压缩机稳定性的威胁(包括产品散布,质量下降和结垢),可以安全地降低所需的喘振裕度,从而为发动机性能带来显着优势。本文比较地介绍了当前概念和新概念的结构,控制器的主要功能,并强调了新算法提高的准确性和可靠性。然后评估绩效收益;在ISO,海平面条件下,功率增加约3%,并随环境温度而变化。

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