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Micro-Turbojet to Turbofan Conversion Via Continuously Variable Transmission: Thermodynamic Performance Study

机译:通过无级变速器进行微型涡轮喷气发动机到涡轮风扇发动机的转换:热力学性能研究

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摘要

In this study, the viability, performance, and characteristics of a turbojet-to-turbofan conversion through the use of a continuously variable transmission (CVT) are investigated. By an in-house thermodynamic simulation code, the performance of the simple cycle turbojet, a direct shaft joined turbofan, and a CVT coupled turbofan with variable bypass is contrasted. The baseline turbojet and turbofan findings are validated against a commercial software. The comparison indicates high quantitative agreement. Analyzing the results of the turbofan engine equipped with a variable bypass and CVT, it is observed that both the thrust and the efficiency are increased. The augmented thrust is observed to be an artifact of enhanced component matching and wider operational range introduced by variable bypass capability. On the other hand, the introduction of CVT contributes to the reduction in fuel consumption. Therefore, the current research suggests that adaptation of a micro-turbojet into a variable cycle micro-turbofan will greatly improve the performance and efficiency of existing engines, in addition to providing a pathway toward extended use in various applications.
机译:在这项研究中,研究了通过使用无级变速器(CVT)进行涡轮喷气发动机到涡轮风扇发动机转换的可行性,性能和特性。通过内部热力学仿真代码,对比了简单循环涡轮喷气发动机,直接轴连接涡轮风扇和具有可变旁路的CVT耦合涡轮风扇的性能。基准涡轮喷气发动机和涡轮风扇发动机的发现已通过商业软件进行了验证。比较表明定量一致性高。分析配备有可变旁路和CVT的涡轮风扇发动机的结果,可以发现推力和效率都得到了提高。观察到增大的推力是由可变旁路功能引入的,增强的组件匹配和更宽的工作范围的假象。另一方面,无级变速器的引入有助于减少燃油消耗。因此,当前的研究表明,将微型涡轮喷气发动机改造成可变循环微型涡轮喷气发动机,不仅可以为现有发动机的广泛使用提供途径,而且还可以大大提高现有发动机的性能和效率。

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