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Understanding cirrus ice crystal number variability for different heterogeneous ice nucleation spectra

机译:了解不同异构冰核谱的Cirrus冰晶号变异性

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Along with minimizing parameter uncertainty, understanding the cause of temporal and spatial variability of the nucleated ice crystal number, Ni, is key to improving the representation of cirrus clouds in climate models. To this end, sensitivities of Ni to input variables like aerosol number and diameter provide valuable information about nucleation regime and efficiency for a given model formulation. Here we use the adjoint model of the adjoint of a cirrus formation parameterization (Barahona and Nenes, 2009b) to understand Ni variability for various ice-nucleating particle (INP) spectra. Inputs are generated with the Community Atmosphere Model version?5, and simulations are done with a theoretically derived spectrum, an empirical lab-based spectrum and two field-based empirical spectra that differ in the nucleation threshold for black carbon particles and in the active site density for dust. The magnitude and sign of Ni sensitivity to insoluble aerosol number can be directly linked to nucleation regime and efficiency of various INP. The lab-based spectrum calculates much higher INP efficiencies than field-based ones, which reveals a disparity in aerosol surface properties. Ni sensitivity to temperature tends to be low, due to the compensating effects of temperature on INP spectrum parameters; this low temperature sensitivity regime has been experimentally reported before but never deconstructed as done here.
机译:随着最小化参数不确定性,了解核心冰晶号Ni的时间和空间可变性的原因是改善气候模型中卷云云表示的关键。为此,NI对输入变量的敏感性,如气溶胶数和直径,提供有关给定模型配方的核心制度和效率的有价值的信息。在这里,我们使用Cirrus形成参数化(Barahona和Nenes,2009b)伴随的伴随模型来了解各种冰成核颗粒(INP)光谱的Ni变异性。使用社区气氛模型版本?5生成输入,并且使用理论上衍生的频谱,基于经验实验室的频谱和两个基于场的经验谱进行模拟,其在黑碳颗粒和活性位点中的成核阈值不同灰尘密度。 Ni敏感性对不溶性气溶胶数的敏感性的幅度和迹象可以与核心制度直接相关,以及各种INP的效率。基于实验室的光谱比基于田间的频谱计算得出更高的INP效率,这揭示了气溶胶表面性能的差异。由于温度对INP光谱参数的补偿效果,NI对温度的敏感性趋于低;这种低温敏感度政权已经在实验之前报道,但从未如此进行解构。

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