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Improving NCEP HWRF Simulations of Surface Wind and Inflow Angle in the Eyewall Area

机译:改善眼睛区域的NCEP HWRF模拟和眼罩区域的流入角度

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This note describes a modification of the boundary layer parameterization scheme in the Hurricane Weather Research and Forecasting (HWRF) Model, which improves the simulations of low-level wind and surface inflow angle in the eyewall area and has been implemented in the HWRF system and used in the operational system since 2016. The modification is on an observation-based adjustment of eddy diffusivity previously implemented in the model. It is needed because the previous adjustment resulted in a discontinuity in the vertical distribution of eddy diffusivity near the surface-layer top, which increases the friction within the surface layer and compromises the surface-layer constant-flux assumption. The discontinuity affects the simulation of storm intensity and intensification, one of the main metrics of model performance, particularly in strong tropical cyclones. This issue is addressed by introducing a height-dependent adjustment so that the vertical profile of eddy diffusivity is continuous throughout the boundary layer. It is shown that the implementation of the modification results in low-level winds and surface inflow angles in the storm's eyewall region closer to observations.
机译:本说明介绍了飓风天气研究和预测(HWRF)模型中的边界层参数化方案的修改,这改善了眼罩区域中的低级风和表面流入角度的模拟,并在HWRF系统中实现并使用在自2016年以来的操作系统中。修改是在模型中实施的基于观察的涡流扩散率调整。需要是因为先前的调整导致表面层顶部附近涡流扩散率的垂直分布中断的不连续性,这增加了表面层内的摩擦并损害了表面层恒定通量的假设。不连续性影响风暴强度和强化的模拟,模型性能的主要指标之一,特别是在强烈的热带气旋中。通过引入高度依赖性调整来解决此问题,以便在整个边界层中连续涡流扩散率的垂直轮廓。结果表明,修改的实施方式导致风暴的眼墙区域中的低水平风和表面流入角,更靠近观察。

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