首页> 外文期刊>Journal of Applied Meteorology and Climatology >Indirect Assimilation of Radar Reflectivity with WRF 3D-Var and Its Impact on Prediction of Four Summertime Convective Events
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Indirect Assimilation of Radar Reflectivity with WRF 3D-Var and Its Impact on Prediction of Four Summertime Convective Events

机译:WRF 3D-Var对雷达反射率的间接吸收及其对四次夏季对流事件预报的影响

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An indirect radar reflectivity assimilation scheme has been developed within the Weather Research and Forecasting model three-dimensional data assimilation system (WRF 3D-Var). This scheme, instead of assimilating radar reflectivity directly, assimilates retrieved rainwater and estimated in-cloud water vapor. An analysis is provided to show that the assimilation of the retrieved rainwater avoids the linearization error of the Z-q(r) (reflectivity-rainwater) equation. A new observation operator is introduced to assimilate the estimated in-cloud water vapor. The performance of the scheme is demonstrated by assimilating reflectivity observations into the Rapid Update Cycle data assimilation and forecast system operating at Beijing Meteorology Bureau. Four heavy-rain-producing convective cases that occurred during summer 2009 in Beijing, China, are studied using the newly developed system. Results show that on average the assimilation of reflectivity significantly improves the short-term precipitation forecast skill up to 7 h. Adiagnosis of the analysis fields of one case shows that the assimilation of reflectivity increases humidity, rainwater, and convective available potential energy in the convective region. As a result, the analysis successfully promotes the developments of the convective system and thus improves the subsequent prediction of the location and intensity of precipitation for this case.
机译:在“天气研究与预报”模型三维数据同化系统(WRF 3D-Var)中,开发了一种间接雷达反射同化方案。该方案不是直接吸收雷达的反射率,而是吸收取回的雨水和估计的云中水蒸气。提供的分析表明,所取回雨水的同化避免了Z-q(r)(反射率-雨水)方程的线性化误差。引入了新的观测算子来吸收估计的云中水蒸气。通过将反射率观测值吸收到北京气象局运行的快速更新周期数据吸收和预报系统中,可以证明该方案的性能。使用新开发的系统研究了2009年夏季在中国北京发生的四起产生大雨的对流案例。结果表明,平均而言,反射率的同化显着提高了长达7小时的短期降水预报技能。对一例分析场的诊断表明,反射率的同化会增加对流区内的湿度,雨水和对流可用势能。结果,该分析成功地促进了对流系统的发展,从而改善了对这种情况下对降水的位置和强度的后续预测。

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