首页> 外文期刊>Journal of Climate >Examining Interior Grid Nudging Techniques Using Two-Way Nesting in theTI Examining Interior Grid Nudging Techniques Using Two-Way Nesting in the WRF Model for Regional Climate Modeling
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Examining Interior Grid Nudging Techniques Using Two-Way Nesting in theTI Examining Interior Grid Nudging Techniques Using Two-Way Nesting in the WRF Model for Regional Climate Modeling

机译:在TI中使用双向嵌套检查内部网格裸露技术在WRF模型中使用双向嵌套检查内部网格裸露技术

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This study evaluates interior nudging techniques using the Weather Research and Forecasting (WRF) model for regional climate modeling over the conterminous United States (CONUS) using a two-way nested configuration. NCEP-Department of Energy Atmospheric Model Intercomparison Project (AMIP-II) Reanalysis (R-2) data are downscaled to 36 km x 36 km by nudging only at the lateral boundaries, using gridpoint (i.e., analysis) nudging and using spectral nudging. Seven annual simulations are conducted and evaluated for 1988 by comparing 2-m temperature, precipitation, 500-hPa geopotential height, and 850-hPa meridional wind to the 32-km North American Regional Reanalysis (NARR). Using interior nudging reduces the mean biases for those fields throughout the CONUS compared to the simulation without interior nudging. The predictions of 2-m temperature and fields aloft behave similarly when either analysis or spectral nudging is used. For precipitation, however, analysis nudging generates monthly precipitation totals, and intensity and frequency of precipitation that are closer to observed fields than spectral nudging. The spectrum of 250-hPa zonal winds simulated by the WRF model is also compared to that of the R-2 and NARR. The spatial variability in the WRF model is reduced by using either form of interior nudging, and analysis nudging suppresses that variability more strongly than spectral nudging. Reducing the nudging strengths on the inner domain increases the variability but generates larger biases. The results support the use of interior nudging on both domains of a two-way nest to reduce error when the inner nest is not otherwise dominated by the lateral boundary forcing. Nevertheless, additional research is required to optimize the balance between accuracy and variability in choosing a nudging strategy.
机译:这项研究使用天气研究和预报(WRF)模型,通过双向嵌套配置,对美国本土(CONUS)上的区域气候建模进行评估,评估了室内裸露技术。 NCEP-能源大气模型比对项目(AMIP-II)重新分析(R-2)数据仅通过在横向边界处使用网格点(即分析)进行微调和使用频谱微调,将数据缩减为36 km x 36 km。通过将2-m温度,降水,500-hPa地势高度和850-hPa经向风与32公里的北美区域再分析(NARR)进行比较,对1988年进行了7次年度模拟。与不进行内部微调的模拟相比,使用内部微调可减少整个CONUS内这些场的平均偏差。当使用分析或频谱微调时,2 m温度和高场的预测行为相似。但是,对于降水而言,分析核算会产生每月的降水总量,并且降水强度和频率比光谱核算更接近观测场。 WRF模型模拟的250 hPa纬向风的频谱也与R-2和NARR的频谱进行了比较。 WRF模型中的空间变异性可以通过使用两种形式的内部微调来减小,而分析微调比频谱微调更能抑制这种可变性。减小内域上的钉扎强度会增加可变性,但会产生较大的偏差。这些结果支持在双向嵌套的两个域上使用内部微调以减少内部嵌套不受横向边界强制支配时的错误。然而,在选择打strategy策略时,还需要进行其他研究来优化准确性和可变性之间的平衡。

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