首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >NOVEL IN-SITU LASER BASED DIAGNOSTICS FOR MEASUREMENT OF WATER VAPOR AND CARBON DIOXIDE CONCENTRATIONS IN THE GAS DISTRIBUTION CHANNELS OF A PEM FUEL CELL
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NOVEL IN-SITU LASER BASED DIAGNOSTICS FOR MEASUREMENT OF WATER VAPOR AND CARBON DIOXIDE CONCENTRATIONS IN THE GAS DISTRIBUTION CHANNELS OF A PEM FUEL CELL

机译:基于新颖的基于激光的诊断方法,测量PEM燃料电池气体分布通道中的水蒸气和二氧化碳浓度

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A novel method has been implemented for measuring the concentration of various gas species (water vapor, carbon dioxide) within fuel cell gas channels and other minichannel applications in a non-invasive manner through the use of tunable diode laser absorption spectroscopy (TDLAS). An optically accessible test cell has been designed to allow for the passage of 1-0.5 millimeter diameter laser beams along 12 mm-12 cm long flow paths, while also allowing for visual observation of the channels in order to detect the formation of liquid water. Concentrations of water vapor and carbon dioxide have been measured in situ within the test cell with a temporal resolution of 0.5 sees and 2.5 sees respectively. The technique is portable to high aspect ratio channels yielding concentration measurements of species over 1 mm long passages with an experimental uncertainty of 5 %.
机译:已经通过使用可调谐二极管激光吸收光谱法(TDLAS),以无创方式实施了一种新颖的方法,用于测量燃料电池气体通道和其他微型通道应用程序中各种气体种类(水蒸气,二氧化碳)的浓度。光学可访问的测试单元已被设计为允许1-0.5毫米直径的激光束沿着12毫米至12厘米长的流动路径通过,同时还允许目视观察通道以检测液态水的形成。已经在测试室内原位测量了水蒸气和二氧化碳的浓度,时间分辨率分别为0.5sees和2.5sees。该技术可移植到高深宽比通道,可对1毫米长通道内的物种进行浓度测量,实验不确定度为5%。

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