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Development of a innovative solution for energy recovery from the flow exhaust gas on bench test facility of turbofan aircraft engine through the use of innovative design methods: Definition of the process and the operating environment

机译:通过使用创新的设计方法,开发用于从涡扇飞机发动机的台式测试设备上的流动废气中回收能量的创新解决方案:过程和操作环境的定义

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Civil aviation is driven nowadays by exceptional growth in the number of passengers. It should double or even triple by 2050 and thus, all industrials also plan to double the number of device delivery by mid-century. Responsible for about 2% of carbon dioxide on the planet, they must now deal with the environmental issues facing the sector.At this moment in the world, several lines of research focus on increasing the efficiency of aircraft engines, development of new engines, efficient technologies, sustainable sources of alternative fuels and improved management air traffic on the ground and in flight [1].The present work deals with a research focused on the engine test when passing in review in repair facilities. This operation which consist in making engine running while the cycles to test its performance in a test bench are studied to define a technological solution to reduce CO2 carbon footprint of the aircraft engine in this phase of the cycle of life. The idea is to produce electrical energy during these tests. To achieve this, we will highlight the case of a type bench facility for a specific airplane engines. As a result high-performance analysis tools are implemented to define the most suitable technological solution that ensures maximum efficiency, meets the functional and regulatory requirements taking into account the force of integration with the existing and cost optimization.In this paper we present the summary of the working definition of the research process for the final term set in the operating environment integration relevance that provides bench test and level of innovation that provides the methods selected.
机译:如今,乘客数量的异常增长推动了民航业的发展。到2050年,它的数量应该翻倍甚至三倍,因此,所有工业企业还计划到本世纪中叶将设备交付数量翻一番。它们负责地球上约2%的二氧化碳,现在必须处理该领域面临的环境问题。在当今世界,目前有几项研究重点在于提高飞机发动机的效率,开发新的发动机,提高效率。技术,可持续的替代燃料来源以及改善的地面和飞行空中管理流量[1]。本工作的重点是在维修机构通过审查时的发动机测试。研究该操作,包括使发动机运转,同时在测试台上测试其性能的循环,以定义一种技术解决方案,以减少在生命周期的这一阶段飞机发动机的二氧化碳碳足迹。这个想法是在这些测试中产生电能。为了实现这一目标,我们将重点介绍用于特定飞机发动机的台式工作台设备的情况。因此,采用了高性能分析工具来定义最合适的技术解决方案,以确保最大的效率,并考虑到与现有技术的集成力和成本优化,满足功能和法规要求。在操作环境集成相关性中确定最后一个术语的研究过程的工作定义,该相关性提供了基准测试,而创新水平则提供了所选方法。

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