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Installed performance assessment of a boundary layer ingesting distributed propulsion system at design point

机译:在设计点对边界层吸入分布式推进系统进行安装性能评估

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摘要

Boundary layer ingesting systems have been proposed as a concept with great potential for reducing the fuel consumption of conventional propulsion systems and the overall drag of an aircraft. These studies have indicated that if the aerodynamic and efficiency losses were minimised, the propulsion system demonstrated substantial power consumption benefits in comparison to equivalent propulsion systems operating in free stream flow. Previously assessed analytical methods for BLI simulation have been from an uninstalled perspective. This research will present the formulation of an rapid analytical method for preliminary design studies which evaluates the installed performance of a boundary layer ingesting system. The method uses boundary layer theory and one dimensional gas dynamics to assess the performance of an integrated system. The method was applied to a case study of the distributed propulsor array of a blended wing body aircraft. There was particular focus on assessment how local flow characteristics influence the performance of individual propulsors and the propulsion system as a whole. The application of the model show that the spanwise flow variation has a significant impact on the performance of the array as a whole. A clear optimum design point is identified which minimises the power consumption for an array with a fixed configuration and net propulsive force requirement. In addition, the sensitivity of the system to distortion related losses is determined and a point is identi ed where a conventional free-stream propulsor is the lower power option. Power saving coefficient for the configurations considered is estimated to lie in the region of 15%.
机译:已经提出了边界层吸入系统作为具有降低常规推进系统的燃料消耗和飞机的总阻力的巨大潜力的概念。这些研究表明,如果将空气动力学和效率损失降到最低,则与在自由流中运行的等效推进系统相比,该推进系统将显示出可观的能耗优势。以前评估过的BLI仿真分析方法是从卸载角度出发的。这项研究将提出一种用于初步设计研究的快速分析方法,以评估边界层摄入系统的安装性能。该方法使用边界层理论和一维气体动力学来评估集成系统的性能。该方法被应用于混合机翼飞机的分布式推进器阵列的案例研究。特别关注评估局部流动特性如何影响单个推进器和整个推进系统的性能。该模型的应用表明,翼展方向的流量变化对整个阵列的性能有重大影响。确定了明确的最佳设计点,从而将具有固定配置和净推进力要求的阵列的功耗降至最低。此外,确定了系统对与失真相关的损耗的敏感性,并确定了传统的自由流推进器是较低功率选项的一个要点。所考虑配置的节电系数估计在15%左右。

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