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首页> 外文期刊>Journal of hydrometeorology >An Evaluation of Five ARW-WRF Microphysics Schemes Using Synthetic GOES Imagery for an Atmospheric River Event Affecting the California Coast
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An Evaluation of Five ARW-WRF Microphysics Schemes Using Synthetic GOES Imagery for an Atmospheric River Event Affecting the California Coast

机译:使用合成的GOES影像对影响加利福尼亚海岸的大气河流事件评估五种ARW-WRF微观方案

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The main purpose of the present study is to assess the value of synthetic satellite imagery as a tool for model evaluation performance in addition to more traditional approaches. For this purpose, synthetic GOES-10 imagery at 10.7 mu m was produced using output from the Advanced Research Weather Research and Forecasting (ARW-WRF) numerical model. Use of synthetic imagery is a unique method to indirectly evaluate the performance of various microphysical schemes available within the ARW-WRF. In the present study, a simulation of an atmospheric river event that occurred on 30 December 2005 was used. The simulations were performed using the ARW-WRF numerical model with five different microphysical schemes [Lin, WRF single-moment 6 class (WSM6), Thompson, Schultz, and double-moment Morrison]. Synthetic imagery was created and scenes from the simulations were statistically compared with observations from the 10.7-mu m band of the GOES-10 imager using a histogram-based technique. The results suggest that synthetic satellite imagery is useful in model performance evaluations as a complementary metric to those used traditionally. For example, accumulated precipitation analyses and other commonly used fields in model evaluations suggested a good agreement among solutions from various microphysical schemes, while the synthetic imagery analysis pointed toward notable differences in simulations of clouds among the microphysical schemes.
机译:本研究的主要目的是评估除更传统的方法外,合成卫星图像作为模型评估性能工具的价值。为此,使用高级研究天气研究和预报(ARW-WRF)数值模型的输出结果制作了10.7微米的合成GOES-10影像。使用合成图像是一种间接评估ARW-WRF内可用的各种微物理方案性能的独特方法。在本研究中,使用了2005年12月30日发生的大气河流事件的模拟。使用ARW-WRF数值模型和五种不同的微物理方案(Lin,WRF单矩6类(WSM6),Thompson,Schultz和Double-Moment Morrison)进行了仿真。创建了合成图像,并使用基于直方图的技术将模拟的场景与GOES-10成像仪的10.7微米波段的观测值进行了统计比较。结果表明,合成卫星图像可作为模型性能评估的有用指标,作为对传统方法的补充指标。例如,累积降水量分析和模型评估中其他常用领域表明来自各种微物理方案的解决方案之间具有良好的一致性,而合成图像分析则指出了微物理方案之间云模拟的显着差异。

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