首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >DEVELOPMENT OF AN OPTICAL SENSOR FOR TEMPERATURE MEASUREMENT AND WATER DROPLET DETECTION IN PEMFC GAS CHANNELS
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DEVELOPMENT OF AN OPTICAL SENSOR FOR TEMPERATURE MEASUREMENT AND WATER DROPLET DETECTION IN PEMFC GAS CHANNELS

机译:PEMFC气体通道中用于温度测量和水滴检测的光学传感器的开发

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摘要

Thermal and water management in Proton Exchange Membrane (PEM) fuel cells provide a significant challenge for engineers and fuel cell designers as both have a direct effect on performance and durability. Internal temperature is very difficult to measure due to component geometry and the internal environment possessed by PEM fuel cells along with a lack of sufficient temperature measurement methods which are often highly invasive. This research presents initial developments for creating a non-intrusive temperature measurement system, based on the principles of phosphor thermometry, which also has the ability to optically detect liquid water formation and movement in PEMFC gas channels. The sensor was designed, calibrated and then installed in a 25 cm~2 PEM fuel cell for in-situ testing. The experimental data show that a relationship exists between temperature variation and water droplet movement in gas channels of a PEM fuel cell.
机译:质子交换膜(PEM)燃料电池的热管理和水管理对工程师和燃料电池设计人员提出了重大挑战,因为两者都会直接影响性能和耐用性。由于PEM燃料电池的部件几何形状和内部环境以及缺乏通常具有高度侵入性的足够的温度测量方法,内部温度很难测量。这项研究提出了基于磷光测温原理创建非侵入式温度测量系统的初步进展,该系统还具有光学检测PEMFC气体通道中液态水形成和运动的能力。该传感器经过设计,校准,然后安装在25 cm〜2 PEM燃料电池中以进行原位测试。实验数据表明,PEM燃料电池的气体通道中温度变化与水滴运动之间存在关系。

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