评估气候变化在不同飞行阶段(起飞和巡航)对飞机发动机性能的影响以及对环境造成的后果

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE Aircraft Engineering and Aerospace Technology Pub Date : 2024-08-15 DOI:10.1108/aeat-04-2024-0122
Utku Kale
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引用次数: 0

摘要

目的气候变化严重影响全球气温,给包括航空在内的各个行业带来挑战。本研究旨在评估气候变化在不同飞行阶段(起飞和巡航)对飞机发动机性能的影响以及对环境造成的后果。本研究使用装有 GEnx-1B 发动机的波音 787-8 飞机的实时数据来研究温度上升对飞机发动机性能的影响。分析结果表明,与预期的标准大气值相比,夏季 38,000 英尺巡航高度的 EGT 显著增加。这种平均超过 200 °C的升高归因于全球变暖。这种温度升高可能会加速涡轮部件的退化,从而导致油耗增加:较高的 EGT 意味着发动机运行效率低下,从而导致单位推力消耗更多燃料;发动机提前老化:温度升高会加速涡轮部件的磨损,从而可能缩短发动机的使用寿命并增加维护成本;大气污染加剧:高 EGT 下的不完全燃烧会产生额外的排放物,从而引发当地空气质量问题。原创性/价值这项研究通过评估气候变化对飞机性能的影响来改善环境后果。
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Assessing the impact of climate change on aircraft engine performance during different flight phases (take-off and cruise) and the environmental consequences

Purpose

Climate change significantly impacts global temperatures, posing challenges to various sectors, including aviation. The purpose of this study is to assess the impact of climate change on aircraft engine performance during different flight phases (take-off and cruise) and the environmental consequences.

Design/methodology/approach

This study examines the effects of rising temperatures on aircraft engine performance using real-time data from a Boeing 787-8 equipped with GEnx-1B engines, which are collected via Flight Data Recorder of the engines and were analyzed for the take-off and cruise phases on the ground. Exhaust gas temperature (EGT), fuel flow and take-off weights were evaluated.

Findings

The analysis revealed a significant increase in EGT at the cruising altitude of 38,000 ft during the summer months compared to expected standard atmospheric values. This increase, averaging over 200 °C, is attributed to global warming. Such elevated temperatures are likely to accelerate the degradation of turbine components, resulting in increased fuel consumption: higher EGT signifies inefficient engine operation, resulting in more fuel burned per unit thrust; early engine aging: elevated temperatures accelerate wear and tear on turbine components, potentially reducing engine lifespan and increasing maintenance costs and enhanced atmospheric pollution: incomplete combustion at high EGTs generates additional emissions, contributing to local air quality concerns.

Practical implications

The research findings have practical implications for understanding the potential operational challenges and environmental impacts of climate change on aircraft engine performance. This lets us explore mitigation strategies and adapt operational procedures to ensure sustainable regional aviation practices.

Originality/value

This research enhances environmental consequences by assessing the impact of climate change on aircraft performance.

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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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