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Investigation of the Effects on the Engine Drive Shaft to Increased Electrical Power in Aircraft Applications

机译:对发动机驱动轴对飞机应用中电力的影响研究

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The amount of electrical power required for future aircraft is increasing significantly. In this paper, a comprehensive model of a drive shaft with multiple degrees of freedom was developed and integrated to detailed engine and electrical network models to study the impact of higher electrical loads. The overall system model is composed of the engine, shafts, gearbox, and the electric network. The Dynamic Dual Spool High Bypass JT9D engine was chosen for this study. The engine was modeled using NASA’s T-MATS (Toolbox for the Modeling and Analysis of Thermodynamic Systems) software. In the electrical side, one generator was connected to the Low Pressure (LP) shaft and the other to the High Pressure (HP) shaft. A modified model of the shafts between the engine and the accessory gearbox was created. Multiple different loads could be applied to the system through the gearbox, extracting power from the engine as well as accounting for power losses associated with friction between gears and other means. With the developed system model, the impact of high electrical power demand and step loads on the engine, shafts, and electrical network can be studied more thoroughly.
机译:未来飞机所需的电力量显着增加。在本文中,开发了一种具有多个自由度的驱动轴的综合模型,并集成到详细的发动机和电气网络模型,以研究更高的电负载的影响。整体系统模型由发动机,轴,变速箱和电网组成。为本研究选择了动态双阀轴高旁路JT9D引擎。该发动机采用NASA的T-MAT​​S(工具箱用于建模和分析热力系统)软件建模。在电侧,一个发电机连接到低压(LP)轴,另一个发生器连接到高压(HP)轴。创建了发动机和配件齿轮箱之间的轴的修改模型。可以通过齿轮箱将多个不同的负载应用于系统,从发动机提取电力以及与齿轮和其他装置之间的摩擦相关的功率损耗。利用开发的系统模型,可以更彻底地研究高电力需求和阶梯载荷对发动机,轴和电气网络的影响。

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