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Error induced by neglecting subgrid chemical segregation due to inefficient turbulent mixing in regional chemical-transport models in urban environments

机译:由于城市环境中区域化学传输模型中效率低下湍流搅拌而忽略了亚底化学偏析所引起的错误

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We employed direct numerical simulations to estimate the error on chemical calculation in simulations with regional chemical-transport models induced by neglecting subgrid chemical segregation due to inefficient turbulent mixing in an urban boundary layer with strong and heterogeneously distributed surface emissions. In simulations of initially segregated reactive species with an entrainment-emission configuration with an A–B–C second-order chemical scheme, urban surface emission fluxes of the homogeneously emitted tracer A result in a very large segregation between the tracers and hence a very large overestimation of the effective chemical reaction rate in a complete-mixing model. This large effect can be indicated by a large Damk?hler number ( D a ) of the limiting reactant. With heterogeneous surface emissions of the two reactants, the resultant normalised boundary-layer-averaged effective chemical reaction rate is found to be in a Gaussian function of D a , and it is increasingly overestimated by the imposed rate with an increased horizontal scale of emission heterogeneity. Coarse-grid models with resolutions commensurable to regional models give reduced yet still significant errors for all simulations with homogeneous emissions. Such model improvement is more sensitive to the increased vertical resolution. However, such improvement cannot be seen for simulations with heterogeneous emissions when the horizontal resolution of the model cannot resolve emission heterogeneity. This work highlights particular conditions in which the ability to resolve chemical segregation is especially important when modelling urban environments.
机译:我们采用直接数值模拟来估算模拟中的化学计算误差,通过忽略底板化学分离引起的区域化学传输模型,由于城市边界层中具有强大和异质地分布的表面排放的城市边界层的效率低下。在初始被隔离的反应性物种的模拟中,具有A-B-C二阶化学方案的夹带排放配置,均匀发射的示踪剂的城市表面发射通量成为示踪剂之间的非常大的隔离,因此非常大完全混合模型中有效化学反应速率的高估。这种大效果可以由限制反应物的大差异ΔHler号(d a)表示。对于两个反应物的非均相表面发射,发现所得归一化的边界层平均有效的化学反应速率在D a的高斯函数中,并且由于施加的速率而越来越高估,增加了排放异质性的水平规模。具有与区域模型不可想象的分辨率的粗略网格模型可降低且具有均匀排放的所有模拟的仍然存在重大错误。这种模型改进对增加的垂直分辨率更敏感。然而,当模型的水平分辨率不能解决排放异质性时,不能看到这种改进。这项工作突出了特殊条件,其中解决化学隔离能力在建模城市环境时尤为重要。

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