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Constraining the aerosol influence on cloud liquid water path

机译:限制气溶胶对云状液态水路径的影响

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The impact of aerosols on cloud properties is one of the largest uncertainties in the anthropogenic radiative forcing of the climate. Significant progress has been made in constraining this forcing using observations, but uncertainty remains, particularly in the magnitude of cloud rapid adjustments to aerosol perturbations. Cloud liquid water path (LWP) is the leading control on liquid-cloud albedo, making it important to observationally constrain the aerosol impact on LWP. Previous modelling and observational studies have shown that multiple processes play a role in determining the LWP response to aerosol perturbations, but that the aerosol effect can be difficult to isolate. Following previous studies using mediating variables, this work investigates use of the relationship between cloud droplet number concentration ( Nsubd/sub ) and LWP for constraining the role of aerosols. Using joint-probability histograms to account for the non-linear relationship, this work finds a relationship that is broadly consistent with previous studies. There is significant geographical variation in the relationship, partly due to role of meteorological factors (particularly relative humidity). The Nsubd/sub –LWP relationship is negative in the majority of regions, suggesting that aerosol-induced LWP reductions could offset a significant fraction of the instantaneous radiative forcing from aerosol–cloud interactions (RFaci). However, variations in the Nsubd/sub –LWP relationship in response to volcanic and shipping aerosol perturbations indicate that the Nsubd/sub –LWP relationship overestimates the causal Nsubd/sub impact on LWP due to the role of confounding factors. The weaker LWP reduction implied by these “natural experiments” means that this work provides an upper bound to the radiative forcing from aerosol-induced changes in the LWP.
机译:气溶胶对云特性的影响是人为辐射强迫气候的最大不确定性之一。在使用观测值来限制这种强迫方面已经取得了重大进展,但是不确定性仍然存在,特别是在云对气溶胶扰动的快速调整幅度方面。云液态水路径(LWP)是对液态云反照率的主要控制,因此重要的是要从视觉上限制气溶胶对LWP的影响。先前的建模和观察研究表明,多个过程在确定LWP对气溶胶扰动的反应中起作用,但是气溶胶作用可能难以分离。在先前使用中介变量进行研究之后,这项工作研究了使用云滴数浓度(N d )和LWP之间的关系来限制气溶胶的作用。使用联合概率直方图说明非线性关系,这项工作发现了一种与先前研究大致一致的关系。关系中的地理差异很大,部分原因是气象因素(尤其是相对湿度)的作用。在大多数地区,N d -LWP关系为负,表明气溶胶引起的LWP降低可以抵消气溶胶-云相互作用(RFaci)造成的瞬时辐射强迫的很大一部分。但是,N d –LWP关系对火山和航运气溶胶扰动的变化表明,N d –LWP关系高估了因果关系N d

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