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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Computational fluid dynamics simulations for hydrogen dispersion and exhaust in residential fuel cell systems
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Computational fluid dynamics simulations for hydrogen dispersion and exhaust in residential fuel cell systems

机译:住宅燃料电池系统中氢扩散和排气的计算流体动力学模拟

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Accidental leakage of hydrogen in residential fuel cell systems can be dangerous because hydrogen has a high risk of inflammation or explosion when stagnant in a space Thus, ventilation of residential fuel cell systems should be properly designed to reduce the hydrogen stagnation inside the system enclosure and thus to enhance the safety In this study, computational fluid dynamics (CFD) simulations were conducted to predict the hydrogen dispersion and exhaust behaviors in residential fuel cell systems equipped with a forced ventilation device A realistic three-dimensional geometric model for the system enclosure was constructed based on the actual dimension and appearance of a commercial residential fuel cell system The flow pattern and hydrogen concentration in residential fuel cell systems were investigated by varying the an intake position and the air intake area in CFD simulations.
机译:住宅燃料电池系统中氢气的意外泄漏可能很危险,因为当空间停滞时氢气极有发炎或爆炸的危险。因此,住宅燃料电池系统的通风应经过适当设计,以减少系统外壳内部的氢气停滞现象,因此为了提高安全性在这项研究中,进行了计算流体动力学(CFD)模拟,以预测配备强制通风装置的民用燃料电池系统中的氢扩散和排气行为。在商用住宅燃料电池系统的实际尺寸和外观上,通过改变CFD模拟中的进气位置和进气面积,研究了住宅燃料电池系统中的流型和氢浓度。

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