喷嘴
质子交换膜燃料电池
喷油器
夹带(生物音乐学)
机械
航程(航空)
材料科学
参数统计
计算机模拟
机械工程
工程类
燃料电池
物理
数学
声学
节奏
复合材料
统计
化学工程
作者
Jianmei Feng,Jiquan Han,Tianfang Hou,Xueyuan Peng
标识
DOI:10.1080/15567036.2020.1804489
摘要
Ejectors are used for anode hydrogen recirculation in proton exchange membrane fuel cell (PEMFC) systems, and the geometric parameters of the primary nozzle of ejectors have essential effects on the ejector performance. A 3D numerical model was established to investigate ejectors, and the reliability of the numerical model was verified by experiments. The operating characteristics of ejectors in the PEMFC system were analyzed by numerical simulation. Moreover, the effects of four geometry parameters (throat diameter, convergent angle, divergent angle, and length) on entrainment performance were studied. The results showed that the angle and length of the divergent zone have a significant influence on entrainment performance. A larger divergent angle may cause over-expanded under low power conditions, resulting in lower entrainment performance. For PEMFC systems with stable operating conditions or high entrainment requirements, a supersonic ejector with an appropriate divergent angle and length is recommended. Conversely, a convergent primary nozzle is suggested to be employed for the PEMFC systems with the wide operating power range. This study may provide a helpful reference for the design of ejectors used in fuel cell systems.
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