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Minimizing Aircraft ECS Bleed Off-Take - Virtual Integrated Aircraft Applications

机译:最大限度地减少飞机ECS起飞时产生的出血-虚拟集成飞机应用

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This paper presents the activities foreseen on the Leonardo Aircraft Division EIS (Entry In Service) 2020 derivative aircraft performed in the frame of the FP7 European research project TOICA (Thermal Overall Integrated Concept of Aircraft). On board air systems for conventional aircraft are fed by the bleed off-take which penalizes the amount of power available to the turbine of jet or turboprop engines. In order to minimize such operating penalties and optimize the energy efficiency of the overall aircraft, it is of major interest to support trade-offs at aircraft level including aircraft systems as early as possible in the development cycle. The study presents the Virtual Integrated Aircraft methodology and associated simulation activities relying on the system simulation platform LMS Imagine. Lab. This methodology is also relying on concept of flexible model and pyramid of models developed in the context of TOICA. Several aircraft configurations and ECS (Environmental Control System) packs architectures are studied and the different steps of the methodology are shown up to the trade between different aircraft configurations. From the very beginning of the design cycle, the requirements and the objectives for the air conditioning system are complemented with thermal requirements by performing thermal evaluations for the design points covering the aircraft operating conditions. Pre-sizing of every ECS pack component is achieved. Then, the resulting ECS packs numerical models are integrated with the engine bleed air system and the thermal model of the structure including the different heat loads, passengers and electronic equipment mainly. The integration is finally assessed over complete flight missions allowing to validate not only the steady state ECS performance, but also the transient pull up and pull down conditions as well as the overall engine bleed off-take and energy balance.
机译:本文介绍了在FP7欧洲研究项目TOICA(飞机总体热集成概念)的框架下,预计在2020年莱昂纳多飞机部门EIS(进入服役)衍生飞机上进行的活动。常规飞机的机载空气系统由放气口供气,这不利于喷气或涡轮螺旋桨发动机涡轮的可用功率。为了最小化此类操作损失并优化整个飞机的能源效率,在开发周期内尽早支持包括飞机系统在内的飞机级别的折衷是非常重要的。这项研究提出了依赖于系统仿真平台LMS Imagine的虚拟综合飞机方法论和相关的仿真活动。实验室这种方法还依赖于TOICA上下文中开发的灵活模型和模型金字塔的概念。研究了几种飞机配置和ECS(环境控制系统)程序包体系结构,并显示了该方法的不同步骤,以适应不同飞机配置之间的交易。从设计周期的一开始,通过对涵盖飞机运行条件的设计点进行热评估,从而对空调系统的要求和目标进行散热。实现每个ECS组件组成部分的预先调整大小。然后,将得到的ECS装箱数值模型与发动机引气系统和结构的热模型集成在一起,该模型主要包括不同的热负荷,乘客和电子设备。最终,将在完整的飞行任务中对集成度进行评估,从而不仅可以验证稳态ECS性能,还可以验证瞬态上拉和下拉条件以及整个发动机放气量和能量平衡。

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