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Comparing different piston-prop aircraft engines with combustion efficiency and exergy

机译:与燃烧效率和漏洞相比不同的活塞 - 道具飞机发动机

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摘要

Combustion efficiency is clearly related to burning of the fuel inside the combustion chamber, and it affects engine efficiency, energetic or exergetic. It is important first to determine the amount of inefficiencies of a system, and then, describe them in relation to engine performance. The novelty of the current paper is to determine a relationship between combustion efficiency and exergy analysis in piston-prop aircraft. In this study, initially, the relationship between combustion efficiency and exergy efficiency in the piston-prop aircraft was evaluated. Afterward, these parameters were calculated under four phases of LTO (landing and takeoff) and different power rates (150, 225, 350, 1200 Hps). The maximum energy efficiency, exergy efficiency, and combustion efficiency were determined as 44.86%, 53.94%, and 98.89%, respectively, in the 1200 Hp piston-prop aircraft. On the other hand, while maximum combustion efficiency was detected in the takeoff phase, maximum energy and exergy efficiencies were found in the climb-out and approach phases, respectively.
机译:燃烧效率显然与燃烧室内燃料的燃烧有关,它影响发动机的效率,无论是能量效率还是火用效率。重要的是,首先要确定系统的低效程度,然后根据发动机性能对其进行描述。本文的创新之处在于确定了活塞螺旋桨飞机燃烧效率和火用分析之间的关系。在本研究中,首先评估了活塞式螺旋桨飞机的燃烧效率和火用效率之间的关系。之后,在四个LTO阶段(着陆和起飞)和不同功率率(150、225、350、1200 Hps)下计算这些参数。在1200马力活塞式螺旋桨飞机上,最大能量效率、火用效率和燃烧效率分别为44.86%、53.94%和98.89%。另一方面,虽然在起飞阶段检测到最大燃烧效率,但在爬升和进近阶段分别发现了最大能量和火用效率。

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