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Transient analysis of engine nano-particles using a fast-scanning differential mobility particle analyzer

机译:快速扫描差分迁移率分析仪发动机纳米粒子的瞬态分析

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The characterization of engine particulate matter size distributions has become an important topic in the investigation of particulate matter formation, transport, and emission reduction technology. The majority of current size distribution analyses are conducted during steady state engine conditions. Although steady state analysis is valuable, most engines in mobile applications are operated under transient conditions, creating a demand for the transient state analysis of particulate emission patterns. In order to measure the instantaneous emissions of an engine under transient conditions, instrumentation must respond to the changing engine conditions as quickly as possible. In this study, a fast-scanning nanometer Aerosol Size Analyzer (n-ASA) was used to measure the emitted particles of a heavy-duty diesel engine during transient simulations. The results showed patterns of PM emissions at key areas throughout the test. It was found that when the engine was decelerating, which can include reduced engine speed, load, or exhaust gas temperatures, a favorable condition was created for the formation of nuclei-mode particles through gas-to-particle conversion. While the engine was accelerating, which generally consisted of increased engine speed, load, fuel consumption, and exhaust gas temperatures, accumulation-mode diesel particles tended to be produced.
机译:发动机颗粒物质尺寸分布的表征已成为颗粒物质形成,运输和减排技术的研究中的重要课题。大部分电流大小分布分析在稳态发动机条件下进行。虽然稳态分析是有价值的,但大多数移动应用中的发动机都在瞬态条件下运行,从而为颗粒发射模式的瞬态状态分析产生了需求。为了测量发动机在瞬态条件下的瞬时排放,仪器必须尽快响应变化的发动机条件。在该研究中,使用快速扫描纳米气溶胶尺寸分析仪(N-ASA)来在瞬态仿真期间测量重型柴油发动机的发射颗粒。结果显示了在整个测试中的关键区域的PM排放模式。结果发现,当发动机减速时,这可以包括降低发动机速度,负荷或排气温度,以通过气到颗粒转化形成核模颗粒的有利条件。虽然发动机加速,但是通常由发动机速度,负荷,燃料消耗和废气温度增加,而倾向于生产的累积模式柴油颗粒。

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