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Engine Demonstration of Microwave-Assisted Particulate Trap Regeneration

机译:微波辅助微粒捕集器再生的发动机演示

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In this study a microwave-assisted particulate trap regeneration system has been developed. Microwave technology typically shows uneven temperature distribution in a trap. In this research an innovative technique is introduced: a so-called circular polarizer for generating a more even energy distribution in the trap. Experimental work has been performed on a 1.2 l TDI engine on an engine dynamometer. A cordierite wall-flow trap was located in the exhaust pipe. Experiments have been performed with variation of temperature at the start of regeneration, energy input duration and external combustion air flow. It has been observed that the exhaust gas flow of the engine, even at idle, is too high for maintaining propagating flame fronts. It can be concluded that microwave regeneration with a low-power microwave generator of about 1 kW must be applied in a multiple branch trap system or regeneration events must be applied in periods when the engine is not running. Tests have shown successful repeated regeneration cycles, without often reported problems associated with filter cracking due to hot spots. Trap samples were analyzed after a number of regeneration events by soot layer thickness measurements using microscopy.
机译:在本研究中,已经开发了微波辅助颗粒捕集器再生系统。微波技术通常在陷阱中显示不均匀的温度分布。在本研究中,介绍了一种创新技术:所谓的圆偏振器,用于在陷阱中产生更均匀的能量分布。在发动机测功机上的1.2 L TDI发动机上进行了实验工作。堇青石壁流动阱位于排气管中。在再生开始,能量输入持续时间和外壳空气流动时,通过温度的变化进行了实验。已经观察到,即使在空闲状态下,发动机的废气流量太高,不能维持繁殖火焰前线。可以得出结论,使用大约1kW的低功率微波发生器的微波再生必须应用于多个分支陷阱系统,或者在发动机未运行时必须在期间应用再生事件。测试表明了成功的重复再生循环,而没有报告与由于热点引起的滤波器裂缝相关的问题。使用显微镜通过烟灰层厚度测量在许多再生事件之后分析捕集样品。

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