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AERO ENGINE CONCEPTS BEYOND 2030: PART 1-THE STEAM INJECTING AND RECOVERING AERO ENGINE

机译:Aero发动机概念超过2030:第1部分 - 蒸汽注射和恢复航空发动机

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Recognizing the attention currently devoted to the environmental impact of aviation, this three-part publication series introduces two new aircraft propulsion concepts for the timeframe beyond 2030. This first part focuses on the steam injecting and recovering aero engine concept. In the second part, the free-piston Composite cycle engine concept is presented. A third publication, building upon those two concepts, presents the project which aims for demonstrating the proof of concept with numerical simulation and test-bench experiments up to a technology readiness level of three. In the steam injecting and recovering aero engine concept, exhaust heat generated steam is injected into the combustion chamber. The humidified mass flow contains significantly more extractable energy than air. Furthermore, the pumping of liquid water up to the necessary pressure requires a magnitude less power than the compression of air, which reduces the internal power demand. Both lead to a noticeable increase in specific power compared to a conventional gas turbine and, foremost, to a significant increase in thermodynamic efficiency. By use of a condenser, installed behind the steam generator, the water is recovered from the exhaust gas-steam mixture. The proposed concept is expected to reduce fuel burn and CO_2 emissions by about 15 % and NO_x formation can be almost completely avoided compared to state-of-the-art engines of the same technology level. Moreover, the described concept has the potential to drastically reduce or even avoid the formation of condensation trails. Thus, the steam injecting and recovering aero engine concept operated with sustainable aviation fuels offers the potential for climate-neutral aviation. Based on consistent thermodynamic descriptions, preliminary designs and initial performance studies, the potentials of the concepts are analyzed. Complementarity, a detailed discussion on concrete engineering solutions considers the implementation into aircraft. Finally, the impact on emissions is outlined.
机译:认识到目前致力于航空环境影响的注意力,这一三部分出版系列为2030年推出了两种新的飞机推进概念。这第一部分重点介绍蒸汽注射和恢复航空发动机概念。在第二部分中,提出了自由活塞复合循环发动机概念。建立在这两个概念的第三次出版物,旨在旨在展示具有数值模拟和测试台实验的概念证明,达到三个技术准备水平。在蒸汽注入和恢复航空发动机概念中,将废热产生的蒸汽注入燃烧室。加湿的质量流量含有比空气更明显更具可提取的能量。此外,将液态水泵送到必要的压力需要比空气的压缩更低的功率,这降低了内部电力需求。与传统的燃气涡轮机相比,与传统的燃气涡轮机相比,这两者都导致特定功率的显着增加,并且最重要的是热力学效率的显着增加。通过使用安装在蒸汽发生器后面的冷凝器,水从废气蒸汽混合物中回收水。预计建议的概念预计将减少燃料燃烧,并且与相同技术水平的最先进的发动机相比,几乎可以完全避免燃料燃烧和CO_2排放。此外,所描述的概念具有大大减少甚至避免形成凝结迹线的潜力。因此,与可持续航空燃料运营的蒸汽注射和恢复航空发动机概念提供了气候中性航空的潜力。基于一致的热力学描述,初步设计和初始性能研究,分析了概念的潜力。互补性,关于混凝土工程解决方案的详细讨论认为将实施进入飞机。最后,概述了对排放的影响。

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