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A numerical model for estimation of water droplet size in the anode channel of a proton exchange membrane fuel cell

机译:用于估算质子交换膜燃料电池阳极通道中水滴尺寸的数值模型

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摘要

The effects of working conditions of the proton exchange membrane fuel cell (PEMFC) on the amount of produced water on the walls of the anode gas flow channel (GFC) were numerically investigated. For this purpose, a single-region, steady, two-dimensional, along-the-channel and non-isothermal model was used. Results showed quantitatively that by increasing the working temperature (T-cell), decreasing the relative humidity at the anode GFC inlet (RHa), increasing the current density (i) and increasing the hydrogen stoichiometry ratio (S-H2), the amount of produced water is reduced and consequently, water flooding is prevented. The numerical results also demonstrated that how the size of water droplet increases along the channel. In fact the increase in the size of the droplets with various working conditions were investigated and it was shown that RHa T-cell and S-H2 are the most effective in increasing the droplet size while the current density is the least responsible for this matter. Finally, a relationship for the size of the produced water droplets in the anode GFC as a function of the working parameters of a PEMFC was proposed which is applicable for the water management in the anode GFC.
机译:数值研究了质子交换膜燃料电池(PEMFC)的工作条件对阳极气体流动通道(GFC)壁上产水量的影响。为此,使用了单区域,稳定,二维,沿通道和非等温模型。结果定量显示,通过提高工作温度(T电池),降低阳极GFC入口处的相对湿度(RHa),提高电流密度(i)和提高氢化学计量比(S-H2),可以减少了采出水,从而防止了水驱。数值结果还表明,水滴的尺寸如何沿通道增加。实际上,已经研究了在各种工作条件下液滴尺寸的增加,结果表明RHa T细胞和S-H2在增加液滴尺寸方面最有效,而电流密度对此问题的影响最小。最后,提出了阳极GFC中产生的水滴的尺寸与PEMFC的工作参数的关系,该关系适用于阳极GFC中的水管理。

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