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首页> 外文期刊>Journal of the Atmospheric Sciences >Contributions of Surface Sensible Heat Fluxes to Tropical Cyclone. Part I: Evolution of Tropical Cyclone Intensity and Structure
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Contributions of Surface Sensible Heat Fluxes to Tropical Cyclone. Part I: Evolution of Tropical Cyclone Intensity and Structure

机译:表面感热通量对热带气旋的贡献。第一部分:热带气旋强度和结构的演变

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The contributions of surface sensible heat fluxes (SHX) to the evolution of tropical cyclone (TC) intensity and structure are examined in this study by conducting cloud-resolving simulations. Results suggest that although the peak values of SHX could account for nearly 30% of those of the total surface latent and sensible heat fluxes, the impact of SHX on TC intensification is nonetheless not distinct. However, the TC size shows great sensitivity to the SHX that the storm is shrunk by over 20% after removing the SHX.A potential temperature budget analysis indicates that the adiabatic cooling accompanying the radial inflow is largely balanced by the transfer of sensible heat fluxes rather than the entrainment of subsiding air from aloft. If there is upward transfer of SHX from underlying ocean so that the near-surface potential temperature decreases upward, the SHX will play a vital role; instead, if the upward SHX are absent so that the potential temperature increases upward near the surface, the downward sensible heat fluxes become the dominant contributor to warm the inflow air. The changes in TC size are found to be primarily caused by the rainband activities. The SHX help maintain high convective available potential energy as well as the cold pool feature outside the eyewall, thus being crucial for the growth of outer rainbands. If without upward transport of SHX, the outer-rainband activities could be largely suppressed, thereby leading to a decrease of the TC size.
机译:在这项研究中,通过进行云解析模拟,研究了表面感热通量(SHX)对热带气旋(TC)强度和结构演变的贡献。结果表明,尽管SHX的峰值可占表面潜热通量和显热通量的近30%,但SHX对TC强化的影响仍然不明显。但是,TC尺寸对SHX非常敏感,因此在移除SHX之后风暴减少了20%以上。潜在的温度预算分析表明,伴随径向流入的绝热冷却在很大程度上由显热通量的传递平衡。而不是从高空夹带空气。如果SHX从下面的海洋向上转移,从而使近地表潜在温度向上降低,则SHX将发挥重要作用;相反,如果没有向上的SHX,从而潜在的温度在表面附近向上升高,则向下的显热通量将成为加热流入空气的主要因素。发现TC大小的变化主要是由雨带活动引起的。 SHX有助于保持高对流的可用势能以及眼墙外部的冷池功能,因此对于外部雨带的增长至关重要。如果没有向上运输SHX,则可以大大抑制外带活动,从而导致TC尺寸减小。

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