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A New Vortex Initialization Scheme Coupled with WRF-ARW

机译:一种新的涡旋初始化方案,耦合WRF-ARW

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摘要

The ability of numerical simulations to predict typhoons has been improved in recent decades. Although the track prediction is satisfactory, the intensity prediction is still far fromadequate. Vortex initialization is an efficient method to improve the estimations of the initial conditions for typhoon forecasting. In this paper, a new vortex initialization scheme is developed and evaluated.The scheme requires only observational data of the radius of maximum wind and the max wind speed in addition to the global analysis data. This scheme can also satisfy the vortex boundary conditions, which means that the vortex is continuously merged into the background environment. The scheme has a low computational cost and has the flexibility to adjust the vortex structure. It was evaluated with 3 metrics: track, center sea-level pressure (CSLP), and maximum surface wind speed (MWSP). Simulations were conducted using the WRF-ARW numerical weather prediction model. Super and severe typhoon cases with insufficiently strong initial MWSP were simulated without and with the vortex initialization scheme. The simulation results were compared with the 6-hourly observational data from Hong Kong Observatory (HKO). The vortex initialization scheme improved the intensity (CSLP and MWSP) prediction results. The scheme was also compared with other initialization methods and schemes.
机译:近几十年来,数值模拟预测台风的能力得到了改善。虽然轨道预测是令人满意的,但强度预测仍然远远不够。涡流初始化是一种有效的方法,可以改善台风预测初始条件的估计。在本文中,开发和评估了一种新的涡流初始化方案。除了全局分析数据之外,该方案还需要最大风的半径和最大风速的观测数据。该方案还可以满足涡流边界条件,这意味着涡流被连续合并到背景环境中。该方案的计算成本低,具有调节涡旋结构的灵活性。它用3个度量评估:轨道,中心海平压力(CSLP)和最大表面风速(MWSP)。使用WRF-ARW数值天气预报模型进行仿真。模拟初始MWSP不充分的初始MWSP的超重和严重的台风病例,没有涡流初始化方案。将模拟结果与来自香港观测所(HKO)的6小时观测数据进行比较。涡流初始化方案改善了强度(CSLP和MWSP)预测结果。该方案也与其他初始化方法和方案进行了比较。

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