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Challenges in constraining anthropogenic aerosol effects on cloud radiative forcing using present-day spatiotemporal variability

机译:利用当今的时空变化来限制人为气溶胶对云辐射强迫的影响

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摘要

A large number of processes are involved in the chain from emissions of aerosol precursor gases and primary particles to impacts on cloud radiative forcing. Those processes are manifest in a number of relationships that can be expressed as factors dlnX/dlnY driving aerosol effects on cloud radiative forcing. These factors include the relationships between cloud condensation nuclei (CCN) concentration and emissions, droplet number and CCN concentration, cloud fraction and droplet number, cloud optical depth and droplet number, and cloud radiative forcing and cloud optical depth. The relationship between cloud optical depth and droplet number can be further decomposed into the sum of two terms involving the relationship of droplet effective radius and cloud liquid water path with droplet number. These relationships can be constrained using observations of recent spatial and temporal variability of these quantities. However, we are most interested in the radiative forcing since the preindustrial era. Because few relevant measurements are available from that era, relationships from recent variability have been assumed to be applicable to the preindustrial to present-day change. Our analysis of Aerosol Comparisons between Observations and Models (AeroCom) model simulations suggests that estimates of relationships from recent variability are poor constraints on relationships from anthropogenic change for some terms, with even the sign of some relationships differing in many regions. Proxies connecting recent spatial/temporal variability to anthropogenic change, or sustained measurements in regions where emissions have changed, are needed to constrain estimates of anthropogenic aerosol impacts on cloud radiative forcing.
机译:从气溶胶前体气体和主要颗粒的排放到云辐射强迫的影响,链中涉及大量过程。这些过程体现在许多关系中,这些关系可以表示为驱动气溶胶对云辐射强迫影响的因素dlnX / dlnY。这些因素包括云凝结核(CCN)浓度和排放,液滴数和CCN浓度,云分数和液滴数,云光学深度和液滴数以及云辐射强迫和云光学深度之间的关系。云的光学深度与液滴数之间的关系可以进一步分解为两个项的和,涉及液滴的有效半径和云的液态水路径与液滴数的关系。可以使用对这些数量的最新时空变化的观察来约束这些关系。但是,自工业化时代以来,我们对辐射强迫最为感兴趣。由于从那个时代以来几乎没有可用的相关度量,因此已假定来自最近可变性的关系适用于从工业到今天的变化。我们对观测值与模型之间的气溶胶比较(AeroCom)模型仿真的分析表明,根据最近的变化对关系的估计在某些方面对人为变化的关系没有很好的约束,甚至有些关系的征兆在许多地区也不同。需要使用代理将最近的时空变化与人为变化联系起来,或者在排放发生变化的地区进行持续测量,以限制人为气溶胶对云辐射强迫的影响的估算。

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