分布式电力推进对支线飞机机翼空气动力学的影响

Q2 Engineering INCAS Bulletin Pub Date : 2023-12-02 DOI:10.13111/2066-8201.2023.15.4.6
Dennis Stefan Chelemen, Ionuț Bunescu, Mihai-Victor Pricop, M. Stoican
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引用次数: 0

摘要

为综合评价某型短途支线飞机的气动性能,重点研究了分布式电力推进(DEP)对飞机气动性能的影响。这一努力与清洁航空计划的核心目标相一致,即减少航空业的碳排放。为了解决这一挑战,我们提出了一个概念,考虑将电动机纳入支线飞机机翼的传统推进系统。这些电动机能够从传统的涡轮螺旋桨发动机或机载发电机中获取动力,为减排提供了一种创新途径。本研究的中心焦点围绕着对机翼内发动机位置的空气动力学效率的详细检查。它旨在确定是否通过采用更多的小直径电机来实现最佳的空气动力学效率,其特点是减少了轴的输出功率。另外,该研究还探讨了采用减少数量的电机的前景,每个电机具有更大的直径,并相应地增加功率输出。虽然较大的电机尺寸可能直观地表明在推力方面具有优势,但仍然有必要仔细评估相关阻力因素的潜在影响。这项研究通过揭示推进系统设计中气动效率和功率输出之间复杂的相互作用,为航空领域不断增长的知识体系做出了贡献。
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The effects of distributed electric propulsion on the aerodynamics of a regional aircraft wing
A study is performed to comprehensively evaluate the aerodynamic performance of a regional aircraft designed for short-haul flights, with a particular focus on the effects of distributed electric propulsion (DEP) on aerodynamic performances. This effort aligns well with a core objective of the Clean Aviation program to decrease carbon emissions within the aviation sector. To address this challenge, we propose a concept that considers incorporating electric motors to complement the conventional propulsion system of a regional aircraft wing. These electric motors have the capability to draw power from either the traditional turboprop engine or exclusively from an on-board electrical generator, providing an innovative pathway for emissions reduction. The central focus of this study revolves around a detailed examination of the aerodynamic efficacy with respect to the placement of engines within the wing. It seeks to ascertain whether optimal aerodynamic efficiency is achieved through the adoption of a greater number of smaller-diameter motors, characterized by reduced power output to the shaft. Alternatively, the study explores the prospect of employing a reduced number of motors, each possessing larger diameters and correspondingly augmented power output. While a larger motor size may intuitively suggest superiority in terms of thrust, it remains imperative to meticulously evaluate the potential influence of the associated drag factor. This research contributes to the growing body of knowledge in the realm of aviation by shedding light on the intricate interaction between aerodynamic efficiency and power output in the context of propulsion system design.
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来源期刊
INCAS Bulletin
INCAS Bulletin Engineering-Aerospace Engineering
自引率
0.00%
发文量
50
审稿时长
8 weeks
期刊介绍: INCAS BULLETIN is a scientific quartely journal published by INCAS – National Institute for Aerospace Research “Elie Carafoli” (under the aegis of The Romanian Academy) Its current focus is the aerospace field, covering fluid mechanics, aerodynamics, flight theory, aeroelasticity, structures, applied control, mechatronics, experimental aerodynamics, computational methods. All submitted papers are peer-reviewed. The journal will publish reports and short research original papers of substance. Unique features distinguishing this journal: R & D reports in aerospace sciences in Romania The INCAS BULLETIN of the National Institute for Aerospace Research "Elie Carafoli" includes the following sections: 1) FULL PAPERS. -Strength of materials, elasticity, plasticity, aeroelasticity, static and dynamic analysis of structures, vibrations and impact. -Systems, mechatronics and control in aerospace. -Materials and tribology. -Kinematics and dynamics of mechanisms, friction, lubrication. -Measurement technique. -Aeroacoustics, ventilation, wind motors. -Management in Aerospace Activities. 2) TECHNICAL-SCIENTIFIC NOTES and REPORTS. Includes: case studies, technical-scientific notes and reports on published areas. 3) INCAS NEWS. Promote and emphasise INCAS technical base and achievements. 4) BOOK REVIEWS.
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