水平网格分辨率对WRF-ARW模式模拟孟加拉国雷暴的影响

Md Joshem Uddin, M. Samad, M. Mallik
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引用次数: 5

摘要

利用WRF-ARW 5 km和10 km水平分辨率模式,对2017年5月6日发生在孟加拉国Mymensingh、Chuadanga和Sylhet地区的三场雷暴的物理动力特征进行了研究,并探讨了水平网格分辨率对雷暴事件模拟的影响。使用全局最终分析(FNL)数据运行该模型48小时。分析了平均海平面气压(MSLP)、不同气压的风型、相对湿度、雷达反射率以及大气不稳定指数等气象参数,并与孟加拉国气象局(BMD)的观测资料进行了比较。该模式较好地捕捉了低气压区、东风和西风的共轭、强对流的存在、高强度的垂直风切变、明显的干线、上升气流和下降气流,从而获得了最好的网格分辨率。但两种分辨率的对流有效势能(CAPE)值在发生地点附近几乎相同。在较细的水平网格分辨率下,模型的性能优于粗水平网格分辨率。达卡大学学报(自然科学版)69(1):43-51,2021 (1)
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Impact of Horizontal Grid Resolutions for Thunderstorms Simulation over Bangladesh Using WRF-ARW Model
In this paper, an attempt has been made to study the physical and dynamical characteristics of three thunderstorms that occurred on 06 May 2017 over Mymensingh, Chuadanga, and Sylhet in Bangladesh by the WRF-ARW model of 5 and 10 km horizontal resolutions, and to find out the impacts of horizontal grid resolution for simulating thunderstorm events. The model was run for 48 h using global Final Analysis (FNL) data. Various meteorological parameters such as Mean Sea Level Pressure (MSLP), wind pattern at several pressure levels, relative humidity, and radar reflectivity along with the atmospheric instability index are analyzed and compared with the observed data of Bangladesh Meteorological Department (BMD). The model has captured the low pressure area, the conjugation of easterly and westerly wind, the presence of strong convection, high magnitude of vertical wind shear, marked dry-line, updraft, and downdraft reasonably well for the finest grid resolution. But the convective available potential energy (CAPE) value is found almost similar near the places of occurrence for both resolutions. The model performance is found precisely well for the finest than that of coarse horizontal grid resolution. Dhaka Univ. J. Sci. 69(1): 43-51, 2021 (January)
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