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Model-based determination of hydrogen system emissions of motor vehicles using climate-chamber test facilities

机译:使用气候室测试设备基于模型确定汽车的氢气系统排放

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Because of air quality problems, the problem of CO_2 related greenhouse gas emissions and shortage of fossil fuels, many vehicles with gaseous fuels (CNG, biogas, hydrogen, etc.) are under research and development. Such vehicles have to prove that both their exhaust emissions and their overall system emissions (including running loss) remain below certain safety limits before they can be used in practice. This paper presents a cost-effective way of monitoring such system emissions from hydrogen or other gaseous fuel powered vehicles within an air-conditioned chassis dynamometer test cell, as commonly used for low ambient emission tests on gasoline vehicles. The only additional equipment needed is a low-concentration sensor for the gas of interest (e.g. hydrogen). The method is based on concentration measurements and a dynamic mass balance model. It is shown by a real experiment that very low emissions can be recorded. Additionally, error bounds and sensitivities on different parameters such as air exchange ratio are quantified.
机译:由于空气质量问题,与CO_2有关的温室气体排放问题和化石燃料的短缺,许多带有气态燃料(CNG,沼气,氢气等)的车辆正在研究和开发中。此类车辆必须证明其废气排放量和整个系统的排放量(包括行驶损失)都低于一定的安全限制,然后才能在实践中使用。本文提出了一种经济有效的方式来监控空调底盘测功机测试室内的氢或其他以气体燃料为动力的车辆的此类系统排放,这通常用于汽油车辆的低环境排放测试。唯一需要的附加设备是用于目标气体(例如氢气)的低浓度传感器。该方法基于浓度测量和动态质量平衡模型。实际实验表明,可以记录到极低的排放量。此外,量化了不同参数(例如空气交换率)的误差范围和灵敏度。

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