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Modeling the direct and indirect effects of atmospheric aerosols on tropical cyclones.

机译:模拟大气气溶胶对热带气旋的直接和间接影响。

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摘要

The direct and indirect effects of aerosols on the hurricane 'Katrina' have been investigated using the WRF model with a two-moment bulk microphysical scheme and modified Goddard shortwave radiation scheme. Simulations of the hurricane 'Katrina' were conducted under the three aerosol scenarios: 1) the clean case with an aerosol number concentration of 200 cm-1, 2) the polluted case with a number concentration of 1000 cm-1, and 3) the aerosol radiative effects (AR) case with same aerosol concentration as polluted case but with a modified shortwave radiation scheme.;The polluted and AR cases have much larger amounts of cloud water and water vapor in troposphere, and the increased cloud water can freeze to produce ice water paths. A tropical cyclone in dirty and dusty air has active rainbands outside the eyewall due to aerosol indirect effects. The aerosol direct effect can lead to the suppressing of convection and weakening of updraft intensity by warming the troposphere and cooling the surface temperature. However, these thermal changes in atmosphere are concerned with the enhanced amounts of cloud hydrometeors and modification of downdraft and corresponding the low level winds in rainband regions. Thus, the AR case can produce the enhanced precipitation even in the weakest hurricane. When comparing the model performance between aerosol indirect and direct effect by ensemble experiments, the adjustment time of the circulation due to modification of the aerosol radiative forcing by aerosol layers may take a longer time than the hurricane lifetime, and the results from the simulated hurricane show that it is more sensitive to aerosol indirect effects which are related to the cloud microphysics process changes.;From this aerosol study, we can suggest that aerosols can influence the cloudiness, precipitation, and intensity of hurricanes significantly, and there may be different results in the meso-scale convective clouds cases. The hurricane system is a large and complex convective system with enormous heating energy and moistures. Moreover, relationships between various hydrometeors in hurricane systems are difficult to isolate and thus, it needs further study with more realistic cloud microphysical processes, aerosol distributions, and parameterizations.
机译:气溶胶对飓风“卡特里娜”飓风的直接和间接影响已使用具有两步整体微物理方案和改进的戈达德短波辐射方案的WRF模型进行了研究。在三种气溶胶方案下对“卡特里娜”飓风进行了模拟:1)清洁箱的气溶胶浓度为200 cm-1,2)污染箱的浓度为1000 cm-1,以及3)气溶胶辐射效应(AR)案例与污染案例的气溶胶浓度相同,但具有改进的短波辐射方案。;污染案例和AR案例的对流层中云水和水蒸气的数量要多得多,增加的云水可以冻结产生冰水路径。由于气溶胶的间接作用,在肮脏多尘的空气中的热带气旋在眼壁外会形成活跃的雨带。气溶胶的直接作用可以通过对流层变暖和冷却表面温度来抑制对流并减弱上升气流强度。但是,大气中的这些热变化与云水气量的增加以及向下气流的改变以及雨带区域中的低风有关。因此,即使在最弱的飓风中,AR情况也可以产生增强的降水。当通过整体实验比较气溶胶间接效应和直接效应的模型性能时,由于气溶胶层改变气溶胶辐射强迫而引起的循环调节时间可能比飓风寿命更长,并且模拟飓风的结果表明;它对与云微观物理过程变化有关的气溶胶间接效应更敏感。;从这项气溶胶研究中,我们可以得出结论,气溶胶可以显着影响飓风的混浊度,降水量和强度,并且可能会有不同的结果。中尺度对流云案例。飓风系统是一个大型且复杂的对流系统,具有巨大的热能和水分。此外,飓风系统中各种水凝物之间的关系很难分离,因此,需要通过更现实的云微物理过程,气溶胶分布和参数化来进一步研究。

著录项

  • 作者

    Lee, Keun Hee.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Atmospheric chemistry.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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