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Exploring advanced technology gas turbine engine design and performance for the Large Civil Tiltrotor (LCTR)

机译:探索大型民用旋耕机(LCTR)的先进技术燃气涡轮发动机的设计和性能

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A Large Civil Tiltrotor (LCTR) conceptual design was developed as part of the NASA Heavy Lift Rotorcraft Systems Investigation in order to establish a consistent basis for evaluating the benefits of advanced technology for large tiltrotors. The concept has since evolved into the second-generation LCTR2, designed to carry 90 passengers for 1,000 nautical miles at 300 knots, with vertical takeoff and landing capability. This paper explores gas turbine component performance and cycle parameters to quantify performance gains possible for additional improvements in component and material performance beyond those identified in previous LCTR2 propulsion studies and to identify additional research areas. The vehicle-level characteristics from this advanced technology generation 2 propulsion architecture will help set performance levels as additional propulsion and power systems are conceived to meet ever-increasing requirements for mobility and comfort, while reducing energy use, cost, noise and emissions. The Large Civil Tiltrotor vehicle and mission will be discussed as a starting point for this effort. A few, relevant engine and component technology studies, including previous LCTR2 engine study results will be summarized to help orient the reader on gas turbine engine architecture, performance and limitations. Study assumptions and methodology used to explore engine design and performance, as well as assess vehicle sizing and mission performance will then be discussed. Individual performance for present and advanced engines, as well as engine performance effects on overall vehicle size and mission fuel usage, will be given. All results will be summarized to facilitate understanding the importance and interaction of various component and system performance on overall vehicle characteristics.
机译:作为NASA重型旋翼飞机系统调查的一部分,开发了大型民用旋翼机(LCTR)概念设计,以便为评估大型倾斜旋翼机先进技术的收益建立一致的基础。此概念已演变为第二代LCTR2,旨在以90节的速度以300节的速度载运90名乘客1,000海里。本文探讨了燃气轮机的部件性能和循环参数,以量化部件和材料性能进一步提高的性能增益,这些改进可超越先前LCTR2推进研究中确定的性能,并确定其他研究领域。这种先进的第二代推进技术的车辆级特性将帮助设定性能水平,因为人们已构想出更多的推进和动力系统可以满足对机动性和舒适性不断增长的要求,同时减少能耗,成本,噪音和排放。大型民用倾转旋翼飞行器和任务将作为这项工作的起点进行讨论。将总结一些相关的发动机和组件技术研究,包括以前的LCTR2发动机研究结果,以帮助读者了解燃气轮机的发动机结构,性能和局限性。然后将讨论用于探索发动机设计和性能以及评估车辆尺寸和任务性能的研究假设和方法。将给出当前和先进发动机的个别性能,以及发动机性能对整体车辆尺寸和任务燃料使用量的影响。将汇总所有结果,以帮助理解各种组件和系统性能对整体车辆特性的重要性和相互影响。

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