首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Mixing and geometry of advected, chemically reactive scalar fields: Application to chlorine deactivation over the midnorthern latitudes - art. no. 4325
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Mixing and geometry of advected, chemically reactive scalar fields: Application to chlorine deactivation over the midnorthern latitudes - art. no. 4325

机译:平移的,具有化学反应性的标量场的混合和几何形状:在中北纬度氯失活中的应用-艺术。没有。 4325

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1] The mixing and reaction properties of advected chemicals are determined by the fractal dimension (or Kolmogorov capacity) D' of a cut through the interface between the chemicals. We show that the amount m of reacted chemicals scales like m(0) - m(kappa) proportional to rootkappa(1-D'), where k is diffusivity of the chemicals. If interscale transfer produced by the advecting flow has a linear time dependence, then the reaction rate of chemicals scales like partial derivative/partial derivativet [m(0) - m(t)] proportional to roott(1-3D') with time t. Both relations are valid in a range of times and diffusivities where the diffusive length scales of the chemicals are within the range of scales where the interface between the chemicals has a well-defined fractal dimension. We apply both relations to the problem of chlorine deactivation, ClO + NO2 --> ClONO2, over the midnorthern latitudes. We determine numerically the Kolmogorov capacity of the interface between polar air which is comparatively rich in ClO and midlatitude air which is comparatively rich in NO2. Additionally, we show empirically that interscale transfer by the advecting flow can be well interpreted as having predominantly linear interscale transfer in the range of times under consideration. We can therefore explain diffusivity and time dependencies previously observed in numerical simulations. Furthermore we can extrapolate the results of such simulations down to realistically low diffusivities. [References: 33
机译:1]对流化学品的混合和反应特性由化学品之间的界面的分形维数(或Kolmogorov容量)D'决定。我们表明,已反应化学物质的数量m与m(0)-m(kappa)成比例,与rootkappa(1-D')成比例,其中k是化学物质的扩散率。如果由平流产生的尺度间转移具有线性时间依赖性,则化学试剂的反应速率与时间t成比例,例如偏导数/偏导数[m(0)-m(t)]与roott(1-3D')成比例。两种关系在化学物质的扩散长度尺度在化学物质之间的界面具有明确定义的分形维数的尺度范围内的时间和扩散率范围内有效。我们将这两种关系都应用于中北纬度地区的氯失活问题,ClO + NO2-> ClONO2。我们从数值上确定了相对富含ClO的极地空气和相对富含NO2的中纬度空气之间的界面的Kolmogorov容量。另外,我们从经验上证明,平流的平间转移可以很好地解释为在考虑的时间范围内主要是线性平间转移。因此,我们可以解释先前在数值模拟中观察到的扩散率和时间依赖性。此外,我们可以将这种模拟的结果外推到实际上较低的扩散率。 [参考:33

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