Yang Han, Yang Chunxin, Zhang Xingjuan, Yuan Xiugan
School of Aeronautic Science and Engineering, Beihang University, Beijing 100191, China.
Beijing Advanced Discipline Center for Unmanned Aircraft System, Beijing 100191, China.
Entropy (Basel). 2021 Jul 3;23(7):855. doi: 10.3390/e23070855.
The environmental control system (ECS) is one of the most important systems in the aircraft used to regulate the pressure, temperature and humidity of the air in the cabin. This study investigates the influences of different architectures on the thermal performance and network structure of ECS. The refrigeration and pressurization performances of ECS with four different architectures are analyzed and compared by the endoreversible thermodynamic analysis method, and their external and internal responses have also been discussed. The results show that the connection modes of the heat exchanger have minor effects on the performance of ECSs, but the influence of the air cycle machine is obvious. This study attempts to abstract the ECS as a network structure based on the graph theory, and use entropy in information theory for quantitative evaluation. The results provide a theoretical basis for the design of ECS and facilitate engineers to make reliable decisions.
环境控制系统(ECS)是飞机中最重要的系统之一,用于调节机舱内空气的压力、温度和湿度。本研究调查了不同架构对ECS热性能和网络结构的影响。采用内可逆热力学分析方法对四种不同架构的ECS的制冷和增压性能进行了分析和比较,并讨论了它们的外部和内部响应。结果表明,热交换器的连接方式对ECS的性能影响较小,但空气循环机的影响明显。本研究试图基于图论将ECS抽象为网络结构,并利用信息论中的熵进行定量评估。研究结果为ECS的设计提供了理论依据,有助于工程师做出可靠的决策。