首页> 美国政府科技报告 >Study of Mechanisms of Aerosol Indirect Effects on Glaciated Clouds: Progress During the Project, Final Technical Report, Period Covered: 15 January 2012-14 July 2013.
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Study of Mechanisms of Aerosol Indirect Effects on Glaciated Clouds: Progress During the Project, Final Technical Report, Period Covered: 15 January 2012-14 July 2013.

机译:气溶胶间接影响冰川云的机制研究:项目进展期,最终技术报告,涵盖期间:2012年1月15日至2013年7月14日。

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This 3-year project has studied how aerosol pollution influences glaciated clouds. The tool applied has been an 'aerosol-cloud model'. It is a type of Cloud-System Resolving Model (CSRM) modified to include 2-moment bulk microphysics and 7 aerosol species, as described by Phillips et al. (2009-2013). The study has been done by, first, improving the model and then performing sensitivity studies with validated simulations of a couple of observed cases from ARM. These are namely the Tropical Warm Pool International Cloud Experiment (TWP-ICE) over the tropical west Pacific and the Cloud and Land Surface Interaction Campaign (CLASIC) over Oklahoma. During the project, sensitivity tests with the model showed that in continental clouds, extra liquid aerosols (soluble aerosol material) from pollution inhibited warm rain processes for precipitation production. This promoted homogeneous freezing of cloud droplets and aerosols. Mass and number concentrations of cloud-ice particles were boosted. The mean sizes of cloud-ice particles were reduced by the pollution. Hence, the lifetime of glaciated clouds, especially ice-only clouds, was augmented due to inhibition of sedimentation and ice-ice aggregation. Latent heat released from extra homogeneous freezing invigorated convective updrafts, and raised their maximum cloud-tops, when aerosol pollution was included.

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