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森林火灾现场对消防飞机的环境危害评估——第一部分:峡谷风与温度分布

Environmental hazard assessment of forest fire sites to firefighting aircraft-part I: Canyon wind and temperature distribution.

作者信息

Luo Yaojing, Huang Lingcai, Shi Lei, Bao Guihao, Dai Fei

机构信息

AVIC General Huanan Aircraft Industry Co., Ltd., Guangdong, Zhuhai, 519090, China.

School of Electronic and Information Engineering, Beihang University, Beijing, 100000, China.

出版信息

Heliyon. 2024 Aug 10;10(16):e35684. doi: 10.1016/j.heliyon.2024.e35684. eCollection 2024 Aug 30.

Abstract

Wildfires have caused immense damage to the environment, property and human safety in recent years. Fortunately, the deployment of firefighting aircraft, particularly water bombers, has emerged as one of the most effective strategies for combating wildfires. However, the intricate environment of forest fire sites, characterized by thermal turbulence and canyon winds, presents a formidable flight risk for firefighting aircraft. To address this issue, this study conducted a comprehensive risk assessment of firefighting aircraft operating in a wildfire environment, analyzing the impact of thermal turbulence and canyon winds using a finite element simulation method. This approach not only bridges the research gap in the field of flight safety but also evaluates the environmental risks encountered by firefighting aircraft when entering forest fire sites. Our findings underscore thermal turbulence and canyon winds as potential hazards for aircraft flying over mountainous terrain, elucidating the effect of thermal turbulence on aircraft engine intakes and quantifying the total lift loss incurred during encounters with canyon winds featuring non-uniform airflow velocities. Specifically, thermal turbulence can induce instability and vibration in aircraft engines, whereas canyon winds can generate updrafts and downdrafts that may compromise aircraft structures or lead to lift loss. Furthermore, we cite several references to emphasize the multifaceted risks associated with the forest fire site environment, encompassing temperature gradients, thunderstorms, and air pollution. Such comprehensive wildfire data can be invaluable in assessing the flight safety of firefighting aircraft during water-dropping missions in forest fire scenarios.

摘要

近年来,野火对环境、财产和人类安全造成了巨大破坏。幸运的是,部署消防飞机,特别是水轰炸机,已成为扑灭野火最有效的策略之一。然而,森林火灾现场环境复杂,存在热湍流和峡谷风,给消防飞机带来了巨大的飞行风险。为解决这一问题,本研究对在野火环境中作业的消防飞机进行了全面的风险评估,采用有限元模拟方法分析热湍流和峡谷风的影响。这种方法不仅弥补了飞行安全领域的研究空白,还评估了消防飞机进入森林火灾现场时遇到的环境风险。我们的研究结果强调,热湍流和峡谷风是飞机在山区飞行的潜在危险,阐明了热湍流对飞机发动机进气口的影响,并量化了在遇到气流速度不均匀的峡谷风时产生的总升力损失。具体而言,热湍流会导致飞机发动机不稳定和振动,而峡谷风会产生上升气流和下降气流,可能危及飞机结构或导致升力损失。此外,我们引用了几篇参考文献,强调了与森林火灾现场环境相关的多方面风险,包括温度梯度、雷暴和空气污染。这些全面的野火数据对于评估森林火灾场景中消防飞机在进行洒水任务时的飞行安全可能具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10d9/11382066/1545c79d3c66/gr1.jpg

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