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New Model Evaluation Tools (MET) Software Capabilities for QPF Verification

机译:QPF验证的新模型评估工具(MET)软件功能

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@@ 1.Introduction Verification plays a crucial role in improvement of precipitation forecasts The Model Evaluation Tools (MET) software was designed to provide the numerical weather prediction community with quality software incorporating the latest advances in forecast verification, including methods for verifying quantitative precipitation forecasts (QPF). The recent addition of probabilistic and ensemble verification capabilities to the MET software has led to innovations demonstrated in the verification activities of two QPF projects in the United States. The Hydrometeorology Testbed (HMT) conducted an experiment examining heavy, prolonged winter precipitation. Prediction of convective precipitation was one focus of the Hazardous Weather Testbed (HWT) 2010 Spring Experiment. Examples from these projects demonstrating MET's spatial, object-based verification of ensemble relative frequency (e.g. probability) and ensemble mean will be presented and compared to traditional methods. In addition to verifying QPF, atmospheric river and radar reflectivity fields were evaluated using MET's object based spatial verification. These examples illustrate the enhanced diagnostic information available from spatial verification versus traditional metrics.
机译:@@ 1.Introduction验证在改进降水预测中起着至关重要的作用,模型评估工具(MET)软件旨在为数字天气预报界提供质量软件,其中包含预测验证的最新进展,包括验证定量降水预测的方法(QPF)。对MET软件的最近增加的概率和集合验证能力导致了美国两项QPF项目的验证活动中所显示的创新。水样器学测试(HMT)进行了一个实验检查了重,长期冬季沉淀。对流降水预测是危险天气检测(HWT)2010春季实验的重点。来自这些项目的示例,演示了符合符合的空间,基于对象的相对频率(例如概率)和集成均值的基于对象的验证,并与传统方法进行比较。除了验证QPF的基于对象的空间验证,还评估了QPF,大气河流和雷达反射率字段。这些示例说明了从空间验证与传统指标可获得的增强诊断信息。

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