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The impact threshold of the aerosol radiative forcing on the boundary layer structure in the pollution region

机译:气溶胶辐射强迫污染区边界层结构的冲击阈值

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Recently, there has been increasing interest in the relation between particulate matter (PM) pollution and atmospheric-boundary-layer (ABL) structure. This study aimed to qualitatively assess the interaction between PM and ABL structure in essence and further quantitatively estimate aerosol radiative forcing (ARF) effects on the ABL structure. Multi-period comparative analysis indicated that the key to determining whether haze outbreak or dissipation occurs is whether the ABL structure satisfies the relevant conditions. However, the ABL structure change was in turn highly related to the PM level and ARF. | SFC ? ATM | (SFC and ATM are the ARFs at the surface and interior of the atmospheric column, respectively) is the absolute difference between ground and atmosphere layer ARFs, and the | SFC ? ATM | change is linearly related to the PM concentrations. However, the influence of ARF on the boundary layer structure is nonlinear. With increasing | SFC ? ATM | , the turbulence kinetic energy (TKE) level exponentially decreased, which was notable in the lower layers or ABL, but disappeared at high altitudes or above the ABL. Moreover, the ARF effects threshold on the ABL structure was determined for the first time, namely once | SFC ? ATM | exceeded ~55 ?W?m ?2 , the ABL structure tends to quickly stabilize and thereafter change little with increasing ARF. The threshold of the ARF effects on the boundary layer structure could provide useful information for relevant atmospheric-environment improvement measures and policies, such as formulating phased air pollution control objectives.
机译:最近,对颗粒物质(PM)污染和大气 - 边界层(ABL)结构之间的关系越来越兴趣。本研究旨在质量地评估PM和ABL结构之间的相互作用,并进一步定量估算气溶胶辐射强迫(ARF)对ABL结构的影响。多时期比较分析表明,确定是否发生雾化爆发或耗散的关键是ABL结构是否满足相关条件。然而,ABL结构变化又与PM水平和ARF高度相关。 |证监会? ATM | (SFC和ATM是大气柱的表面和内部的ARF)是地面和大气层ARF之间的绝对差异,以及|证监会? ATM |变化与PM浓度线性相关。然而,ARF对边界层结构的影响是非线性的。随着越来越多证监会? ATM | ,湍流动能(TKE)水平指数下降,其在下层或ABL中是值得注意的,但在高海拔或ABL上方消失。此外,ABL结构上的ARF效应阈值首次确定,即一次证监会? ATM |超过〜55?W≤2,ABL结构趋于快速稳定,然后随着ARF的增加而变化。 ARF效应对边界层结构的阈值可以为相关的大气环境改善措施和政策提供有用的信息,例如制定分阶段的空气污染控制目标。

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