开发,表征和应用的多功能单粒子检测仪器的时间集成和时间分辨荧光测量-第一部分:理论考虑

Xihong Wu, N. Omenetto, J. Winefordner
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引用次数: 5

摘要

气溶胶科学的最新进展导致了新的粒子束引入系统的设计更具挑战性的要求。本文提出了变孔气动透镜系统的概念,并以数值模拟结果为依据。这种新型粒子束入口既可以作为窄带通过滤器(粒子分离器),只限制特定尺寸的粒子,也可以作为宽带通过滤器(粒子浓缩器),允许宽尺寸范围的粒子集中在光束轴上。在对进气系统的简要描述之后,描述了计算细节。利用商业计算流体动力学协议FLUENT对该进气道进行了仿真。首先揭示和讨论了单薄板孔径的聚焦性能和特点,然后讨论了可变孔径多透镜的动态特性和优点。清楚地表明,可以通过改变工作压力、孔板几何形状和/或孔板布置来调整聚焦尺寸范围。因此,可以在不需要改变入口的情况下实现所需颗粒聚焦尺寸范围的选择,从而增加了该设备的多功能性,适用于广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development, Characterization, and Application of a Versatile Single Particle Detection Apparatus for Time-Integrated and Time-Resolved Fluorescence Measurements—Part I: Theoretical Considerations
Recent progress in aerosol science has resulted in more challenging demands in the design of new particle beam introduction systems. In this paper, the concept of a variable orifice aerodynamic lens system is presented and supported by the numerical simulation results. This novel particle beam inlet can serve as either a narrow band pass filter (a particle segregator) that only confines particles with a specific size or a broad band pass filter (a particle concentrator) that allows particles with a wide size range to be concentrated on the beam axis. Following a brief description of the inlet system, computational details are described. Simulation of this inlet has been carried out by the commercial computational fluid dynamics protocol FLUENT. Focusing performance and characteristic of single-thin plate orifices have been first revealed and discussed, and then the dynamics and advantages of using multiple lenses with variable orifices are addressed. It is clearly shown that the focusing size range can be primarily adjusted by varying the working pressure, the orifice geometry, and/or the arrangement of orifices. As a result, a selection of the desired particle focusing size range can be achieved without the need of changing the inlet, thus increasing the versatility of the device for a broad range of applications.
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