飞机座舱颗粒物浓度评估方法研究
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    摘要:

    飞机客舱内的空气品质越来越受到关注,舱内颗粒物浓度超过限值会对人体健康造成伤害。因此在飞机通风系统设计时必须考虑座舱颗粒物浓度限值对系统设计的约束。可吸入颗粒物包括粗颗粒物PM10和细颗粒物PM2.5。以某民用飞机为研究对象,提出飞机座舱颗粒物浓度评估方法。通过对国内外相关技术文献调研并进行指标权衡分析,得到颗粒物浓度权衡指标限值。以舒适值作为设计需求,对某民用飞机通风系统设计方案的需求符合性进行评估。结果表明,不考虑舱内源产生的颗粒物时,达到稳定的舱内颗粒物浓度与座舱容积、通风量无关,座舱内颗粒物浓度稳定值PM2.5为31.5 μg/m3,PM10为51.75 μg/m3。为满足座舱颗粒物环境舒适性设计需求,需增加过滤器。经计算,不安装再循环过滤器时,引气过滤器效率最低限值为5.5%;不安装引气过滤器时,再循环过滤器效率最低限值要求为26%。

    Abstract:

    People pay more and more attention to the air quality in the passenger cabin when they are flying. If the concentration of particles in the cabin exceeds the limit, it will cause harm to human health. Therefore, in the design of aircraft ventilation system, it is necessary to consider the constraints of cabin particle concentration limit on the system design. Inhalable particulate matter includes coarse particulate matter PM10 and fine particulate matter PM2.5. Taking a civil aircraft as the research object, this paper proposes an evaluation method of particulate matter concentration in the cockpit. By investigating the relevant technical documents at home and abroad and analyzing the index balance, the limit of particle concentration balance index was obtained. Taking the comfort value as the design requirement, the requirement compliance of the design scheme of a civil aircraft ventilation system was evaluated. The results show that the stable concentration of particulate matter in the cabin is independent of the cabin volume and ventilation volume, and the stable concentration of PM2.5 in the cabin is 31.5 μg/m3, PM10 is 51.75 μg/m3. In order to meet the design requirements of comfortable environment for particulate matter in cabin, it is necessary to add filters. According to calculation, when the recirculation filter is not installed, the minimum efficiency limit of the bleed air filter is 5.5%; when the bleed air filter is not installed, the minimum efficiency limit of the recirculation filter is 26%.

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曹祎,张絮涵.飞机座舱颗粒物浓度评估方法研究[J].民用飞机设计与研 究,2021(4):79-84CAO Yi, ZHANG Xuhan.[J]. Civil Aircraft Design and Research,2021,(4):79-84. ( in Chinese)

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  • 在线发布日期: 2022-01-07
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