在海洋云变亮的背景下对海洋层积云脉冲气溶胶强迫的评估

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of the Atmospheric Sciences Pub Date : 2023-03-29 DOI:10.1175/jas-d-22-0207.1
Prasanth Prabhakaran, F. Hoffmann, G. Feingold
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引用次数: 2

摘要

我们使用高分辨率大涡模拟,探讨了海洋云层增亮(MCB)背景下气溶胶扰动对层积云的影响。我们使用拉格朗日云微观物理模型,对气溶胶活化和液滴生长进行了非常详细的处理。气溶胶强迫在时间上表现为有限宽度的矩形脉冲(在空间上是均匀的)。我们分析了三个不同表面降水率的层积云系统,即非降水、中间和降水。我们报道了这些云系统在一系列扰动下的昼夜演变,这些扰动的特征是气溶胶强迫脉冲的振幅和持续时间的变化。我们的模拟表明,在非降水系统中,云对持续时间和振幅相对不敏感,仅对注入气溶胶的总数浓度敏感。相反,降水云系统受到强迫的持续时间和幅度的影响,敏感性取决于气溶胶颗粒注入前云系统的状态。我们使用这些案例研究来评估潜在MCB喷洒策略的效果。我们的分析表明,负LWP调整抵消了所有三个云系统中由托梅引起的增亮的很大一部分。通过降水抑制引起的云分数调整获得的大量云增亮抵消了这一点。
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Evaluation of Pulse Aerosol Forcing on Marine Stratocumulus Clouds in the Context of Marine Cloud Brightening
We explore the effect of aerosol perturbations on stratocumulus clouds in the context of marine cloud brightening (MCB) using high-resolution large-eddy simulations. We use a Lagrangian cloud microphysical model with very detailed treatment of aerosol activation and droplet growth. The aerosol forcing is represented as a finite-width rectangular pulse in time (uniform in space). We analyze three stratocumulus cloud systems differing in their surface precipitation rate, namely – non-precipitating, intermediate, and precipitating. We report on the diurnal evolution of these cloud systems subjected to a range of perturbations characterized by varying the amplitude and duration of the aerosol forcing pulse. Our simulations show that in the non-precipitating system, the clouds are relatively insensitive to duration and amplitude, and are sensitive only to the total number concentration of the injected aerosol. In contrast, the precipitating cloud system is affected by the duration and the amplitude of the forcing, with the sensitivity conditional on the state of the cloud system before the injection of aerosol particles. We use these case studies to assess the efficacy of potential MCB spraying strategies. Our analysis shows that negative LWP adjustments offset a substantial fraction of the Twomey induced brightening in all three cloud systems. This is countered by substantial cloud brightening obtained through precipitation suppression induced cloud-fraction adjustments.
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来源期刊
Journal of the Atmospheric Sciences
Journal of the Atmospheric Sciences 地学-气象与大气科学
CiteScore
0.20
自引率
22.60%
发文量
196
审稿时长
3-6 weeks
期刊介绍: The Journal of the Atmospheric Sciences (JAS) publishes basic research related to the physics, dynamics, and chemistry of the atmosphere of Earth and other planets, with emphasis on the quantitative and deductive aspects of the subject. The links provide detailed information for readers, authors, reviewers, and those who wish to submit a manuscript for consideration.
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