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A Maieutic Exploration of Nudging Strategies for Regional Climate Applications Using the WRF Model

机译:利用WRF模型对区域气候应用戒烟策略的探讨

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The use of nudging in the Weather Research and Forecasting (WRF) Model to constrain regional climate downscaling simulations is gaining in popularity because it can reduce error and improve consistency with the driving data. While some attention has been paid to whether nudging is beneficial for downscaling, very little research has been performed to determine best practices. In fact, many published papers use the default nudging configuration (which was designed for numerical weather prediction), follow practices used by colleagues, or adapt methods developed for other regional climate models. Here, a suite of 45 three-year simulations is conducted with WRF over the continental United States to systematically and comprehensively examine a variety of nudging strategies. The simulations here use a longer test period than did previously published works to better evaluate the robustness of each strategy through all four seasons, through multiple years, and across nine regions of the United States. The analysis focuses on the evaluation of 2-m temperature and precipitation, which are two of the most commonly required downscaled output fields for air quality, health, and ecosystems applications. Several specific recommendations are provided to effectively use nudging in WRF for regional climate applications. In particular, spectral nudging is preferred over analysis nudging. Spectral nudging performs best in WRF when it is used toward wind above the planetary boundary layer (through the stratosphere) and temperature and moisture only within the free troposphere. Furthermore, the nudging toward moisture is very sensitive to the nudging coefficient, and the default nudging coefficient in WRF is too high to be used effectively for moisture.
机译:在天气研究和预测(WRF)模型中使用努力限制区域气候镇压模拟正在受欢迎,因为它可以减少误差并提高与驾驶数据的一致性。虽然裸体对贬低是有益的,但对最佳实践进行了很少的研究,但是很少的研究。事实上,许多公布的论文使用默认的亮度配置(设计用于数值天气预报),遵循同事使用的实践,或者为其他区域气候模型开发的适应方法。在这里,在美国大陆的美国欧洲大陆进行了一个45年的45年仿真套房,以系统地,全面地检查各种戒指策略。这里的模拟使用比以前发布的工作更长的测试时间,以更好地通过所有四个赛季,多年和美国九个地区通过所有四季评估每个策略的鲁棒性。该分析侧重于评估2米的温度和降水,这是空气质量,健康和生态系统应用中最常见的较低的输出场中的两个。提供了几项具体建议,以有效地使用WHRF中的努力为区域气候应用。特别地,优选光谱亮度过度分析亮。当它朝向行星边界层(穿过平流层)和温度和水分仅在自由对流层内时,光谱亮度在WRF中执行最佳。此外,对水分的亮度对亮度系数非常敏感,并且WRF的默认亮度系数太高,不能有效地用于水分。

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