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首页> 外文期刊>Journal of Aerosol Science >Diffusion broadening in converging differential mobility analyzers
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Diffusion broadening in converging differential mobility analyzers

机译:会聚差动迁移率分析仪中的扩散拓宽

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Although Brownian diffusion limits drastically differentail mobility analyzer (DMA) resolution in the nanometer size range,its effects can be moderated in supercritical DMAs running laminarly at very high Reynolds numbers Re. Unfortunately the relatively fast boundary layer growth typical of planar or cylindrical DMAs in current use leads to the appearance of turbulence at Re considerably below 10~5, even for carefully laminarized flows. Motivated by the fact that flow acceleration stabilizes the boundary layer even at Re > 10~8, we explore theoretically the diffusion broadening phenomenon in converging DMAs. The convective diffusive equations are analyzed for two-dimensional and axisymmetric geometries in the limit of high Re, narrow slits, small aerosol to sheath air flow ratios, and negligible space charge. This yields the line-width of monomobile particles as a quadrature involving the flow and electric fields. There is an optimal position of the inlet slit which minimizes diffusive broadening for given outlet slit position, geometry and sheath air flow rate. For a wide class of potential two-dimensional flow the corresponding optimal resolution can be written explicitly, and is independent of geometry. No such general statements hold in axisymmetric designs, where all convergence tends to decrease resolution. Explicit results for diffusive broadening, optimal slit locations, and resolution cost as a function of outlet to inlet area ratio are obtained for two-dimensional channels with either straight or hyperbolic walls and for axisymmetric flow with either radial flow between parallel electrodes, or a sink flow within conical electrodes.
机译:尽管布朗扩散将纳米迁移率分析仪(DMA)的分辨率极大地限制在纳米尺寸范围内,但在以很高雷诺数Re层状运行的超临界DMA中,其影响可以得到缓解。不幸的是,当前使用的平面或圆柱形DMA的相对较快的边界层生长通常导致Re出现湍流,即使对于小心分层的流动,Re仍显着低于10〜5。受流动加速度即使在Re> 10〜8时也能稳定边界层这一事实的推动,我们从理论上探讨了收敛DMA中的扩散展宽现象。在高Re,窄缝,小气溶胶与鞘空气流量比以及可忽略的空间电荷的极限范围内,分析了二维和轴对称几何形状的对流扩散方程。这产生了单分子颗粒的线宽,它是涉及流动和电场的正交线。对于给定的出口狭缝位置,几何形状和鞘空气流速,入口狭缝有一个最佳位置,可将扩散展宽最小化。对于一大类潜在的二维流,可以显式编写相应的最佳分辨率,并且与几何形状无关。在轴对称设计中,所有收敛趋于降低分辨率的设计都没有这样的一般性陈述。对于具有直壁或双曲线壁的二维通道以及平行电极之间的径向流或水槽的轴对称流,可获得扩散扩宽,最佳狭缝位置和分辨率成本随出口面积与入口面积比的函数的显式结果。在锥形电极内流动。

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