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Modeling Turboshaft Engines for the Revolutionary Vertical Lift Technology Project

机译:革命性垂直提升技术项目的涡轮轴发动机建模

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Turboshaft engine performance and weight models were developed to support conceptual propulsion and vehicle mission design in support of the National Aeronautics and Space Administration's (NASA) Aeronautics Mission Research Directorate's (ARMD) Revolutionary Vertical Lift Technology (RVLT) Project. These models were developed using open data sources, assuming current and advanced technology levels, and range from 650 to 7,500 shaft output horsepower (485 to 5,600 kW). Documenting the methodology, assumptions, and resulting performance realizes important benefits for NASA and the aviation community. NASA concept vehicle efforts using these propulsion models can more readily shared among the government, industry and university community as common baselines to support current and future work. Assessing the benefits of advanced technologies and new configurations can be facilitated using these models, which helps guide technology investment. As the various modeling conceptual vehicle and mission analysis environments advance, these models can be used directly for broader systems analysis studies, including optimization within the propulsion model itself. To perform this effort, the turboshaft engine is briefly discussed, highlighting the specific components and their expected performance characteristics over the power range and technology levels considered. Engine configurations will also be discussed as they will vary based on power output and assumed technology level. Engine performance, such as airflow, power output and weight will be reported, noting trends that are important for system studies. The effect of advanced propulsion technologies on RVLT concept vehicles are also reported. Finally, potential future propulsion modeling work will be proposed.
机译:开发了涡轮轴发动机的性能和重量模型,以支持概念推进和车辆任务设计,以支持美国国家航空航天局(NASA)航空任务研究局(ARMD)的革命性垂直升力技术(RVLT)项目。这些模型是使用开放数据源(假设当前和先进技术水平)开发的,轴输出功率范围从650到7,500(485到5,600 kW)。记录方法,假设和产生的性能将为NASA和航空界带来重要的好处。使用这些推进模型的NASA概念车的工作可以更容易地在政府,行业和大学社区之间共享,作为支持当前和将来工作的共同基准。使用这些模型可以方便地评估先进技术和新配置的好处,这有助于指导技术投资。随着各种建模概念车和任务分析环境的发展,这些模型可直接用于更广泛的系统分析研究,包括推进模型本身的优化。为了执行此工作,简要讨论了涡轮轴发动机,重点介绍了特定组件及其在所考虑的功率范围和技术水平上的预期性能特征。还将讨论发动机配置,因为它们会根据功率输出和假定的技术水平而有所不同。将报告发动机性能,例如气流,功率输出和重量,并指出对系统研究非常重要的趋势。还报道了先进推进技术对RVLT概念车的影响。最后,将提出潜在的未来推进建模工作。

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