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Large-eddy simulation studies of sea spray in the hurricane atmospheric boundary layer.

机译:飓风大气边界层海浪的大涡模拟研究。

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摘要

The growth and maintenance of hurricanes is highly dependent upon the exchange of heat and momentum between the ocean and atmosphere. Because sea spray can significantly affect this ocean-air exchange, accurate hurricane models need to account for spray effects. We incorporate sea spray into large-eddy simulations (LES) to explore its role in the atmospheric boundary layer (ABL) of hurricanes, allowing us to assess the validity of and offer improvements to the simple spray parameterizations currently used in hurricane models. We investigate thermodynamic feedback between spray and surface heat fluxes, and examine the effects of spray upon the dynamics of the hurricane boundary layer.; Results of preliminary LES, which use a bulk representation of the dominant range of spray sizes and a simplified diagnostic phase change scheme, indicate an appreciable amount of spray-air heat transfer---consistent with theory---and demonstrate a form of spray-induced thermodynamic feedback. The LES model of the hurricane atmospheric boundary layer (HABL) is adapted to account for variations in spray generation due to wave-breaking, momentum transfer between air and spray in both the vertical (liquid loading and stratification) and horizontal (drag), and dissipative heating in an emulsion-like two-phase environment.; These modifications are accompanied by extension of the phase change and spray generation schemes to account for different droplet sizes, and implementation of a moving three-dimensional boundary. Collective inclusion of all these pieces of modeled physics in the LES provides results which offer a better view of the limitations of current spray-flux models, and motivates a simpler and improved alternative model. The refined results of the 'full' LES-HABL model are consistent with early simulations, and underscore the significance of boundary-layer scale thermodynamic balance, spray-induced fluxes, and wind-dependent thermodynamic feedback.
机译:飓风的生长和维持高度依赖海洋与大气之间的热量和动量交换。由于海浪会严重影响这种海洋空气交换,因此需要精确的飓风模型来说明海浪的影响。我们将海浪纳入大涡模拟(LES)中,以探讨海浪在飓风的大气边界层(ABL)中的作用,从而使我们能够评估飓风模型中当前使用的简单喷雾参数化的有效性并提供改进。我们研究了喷雾和表面热通量之间的热力学反馈,并研究了喷雾对飓风边界层动力学的影响。初步LES的结果使用了喷雾尺寸的主要范围的大体表示和简化的诊断相变方案,表明喷雾空气的传热量相当大(与理论一致),并证明了喷雾的形式诱导的热力学反馈。飓风大气边界层(HABL)的LES模型适用于解释由于波浪破碎,垂直(液体负载和分层)和水平(阻力)中空气和喷雾之间的动量传递而引起的喷雾产生的变化,以及在类似乳液的两相环境中进行耗散加热。这些修改伴随着相变和喷雾生成方案的扩展,以考虑到不同的液滴尺寸,并实现了移动的三维边界。在LES中对所有这些建模物理学的总括包括在内,提供的结果可以更好地了解当前喷雾通量模型的局限性,并且可以激发出一种更简单,更完善的替代模型。 “完整” LES-HABL模型的精确结果与早期模拟一致,并强调了边界层尺度热力学平衡,喷雾感应通量和与风有关的热力学反馈的重要性。

著录项

  • 作者

    Kelly, Mark.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Atmospheric Sciences.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

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