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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Miniature Pipe Bundle Heat Exchanger for Thermophoretic Deposition of Ultrafine Soot Aerosol Particles at High Flow Velocities
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Miniature Pipe Bundle Heat Exchanger for Thermophoretic Deposition of Ultrafine Soot Aerosol Particles at High Flow Velocities

机译:微型管束式换热器,用于在高流速下热沉沉积超细煤烟气溶胶颗粒

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摘要

The deposition of submicrometer soot aerosol particles in a miniature pipe bundle heat exchanger system has been investigated under conditions characteristic for combustion exhaust from diesel engines and oil or biomass burning processes.The system has been characterized for a wide range of aerosol inlet temperatures(390-510 K)and flow velocities(1-4 m s~(-1)),and particle deposition efficiencies up to 45% have been achieved over an effective deposition length of 27 cm.Thermophoresis was the dominant deposition mechanism,and its decoupling from isothermal deposition was consistent with the assumption of independently acting processes.The measured deposition efficiencies can be described by simple linear parameterizations based on an approximation formula for ther-mophoretic plate precipitators.The results of this study support the development of modified heat exchanger systems with enhanced capability for filterless removal of combustion aerosol particles.
机译:在柴油机燃烧废气和石油或生物质燃烧过程的条件下,研究了微型管束式换热器系统中亚微米级烟尘气溶胶颗粒的沉积,该系统已针对各种气溶胶入口温度进行了表征(390-在有效沉积长度为27 cm的条件下,已达到510 K)和流速(1-4 ms〜(-1)),并且颗粒沉积效率高达45%。热固结是主要的沉积机理,并且其与等温相分离沉积与独立作用过程的假设相符。测得的沉积效率可以通过基于简单的线性参数化来描述,该近似值基于热电泳板式除尘器的近似公式。这项研究的结果支持改进型热交换器系统的开发用于无过滤去除燃烧气溶胶颗粒。

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