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Sensitivity Study of Four Land Surface Schemes in the WRF Model

机译:WRF模型中四种陆面方案的敏感性研究

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摘要

The Weather Research and Forecasting (WRF) model version 3.0 developed by the National Center for Atmospheric Research (NCAR) includes three land surface schemes: the simple soil thermal diffusion (STD) scheme, the Noah scheme, and the Rapid Update Cycle (RUC) scheme. We have recently coupled the sophisticated NCAR Community Land Model version 3 (CLM3) into WRF to better characterize land surface processes. Among these four land surface schemes, the STD scheme is the simplest in both structure and process physics. The Noah and RUC schemes are at the intermediate level of complexity. CLM3 includes the most sophisticated snow, soil, and vegetation physics among these land surface schemes. WRF simulations with all four land surface schemes over the western United States (WUS) were carried out for the 1 October 1995 through 30 September 1996. The results show that land surface processes strongly affect temperature simulations over the (WUS). As compared to observations, WRF-CLM3 with the highest complexity level significantly improves temperature simulations, except for the wintertime maximum temperature. Precipitation is dramatically overestimated by WRF with all four land surface schemes over the (WUS) analyzed in this study and does not show a close relationship with land surface processes.
机译:美国国家大气研究中心(NCAR)开发的天气研究和预报(WRF)模型版本3.0包括三种陆地表面方案:简单土壤热扩散(STD)方案,Noah方案和快速更新周期(RUC)方案。我们最近将复杂的NCAR社区土地模型第3版(CLM3)结合到WRF中,以更好地表征地表过程。在这四种陆面方案中,STD方案在结构和过程物理上都是最简单的方案。 Noah和RUC方案处于复杂度的中间水平。 CLM3包括这些陆地表面方案中最复杂的雪,土壤和植被物理。 1995年10月1日至1996年9月30日,对美国西部(WUS)的所有四种陆面方案进行了WRF模拟。结果表明,陆面过程对(WUS)上的温度模拟有很大影响。与观察结果相比,具有最高复杂度的WRF-CLM3可以显着改善温度模拟,除了冬季最高温度。在本研究中,WRF使用(WUS)的全部四个陆面方案对降水进行了高估,并且与陆面过程没有密切关系。

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