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首页> 外文期刊>Journal of hydrometeorology >Impact of Soil Moisture on Winter 2-m Temperature Forecasts in Northern China
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Impact of Soil Moisture on Winter 2-m Temperature Forecasts in Northern China

机译:土壤水分对北方冬季2-M温度预测的影响

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摘要

In this study, the causes of the underestimated diurnal 2-m temperature range and the overestimated 2-m specific humidity in the winter of northern China in the Rapid-Refresh Multiscale Analysis and Prediction System-Short Term (RMAPS-ST) are investigated. Three simulations based on RMAPS-ST are conducted from 1 November 2016 to 28 February 2017. Further analyses show that the partitioning of surface upward sensible heat fluxes and downward ground heat fluxes might be the main contributing factor to the 2-m temperature forecast bias. In this study, two simulations are conducted to examine the effect of soil moisture initialization and soil hydraulic property on the 2-m temperature and 2-m specific humidity forecasts. First, the High-Resolution Land Data Assimilation System (HRLDAS) is used to provide an alternative soil moisture initialization. The results show that the drier soil moisture could lead to noticeable change in energy partitioning at the land surface, which in turn results in improved prediction of the diurnal 2-m temperature range, although it also enlarges the 2-m specific humidity bias in some parts of the domain. Second, a soil texture dataset developed by Beijing Normal University and the revised hydraulic parameters are applied to provide a more detailed description of soil properties, which could further improve the 2-m specific humidity bias. In summary, the combination of using optimized soil moisture initialization, an updated soil map, and revised soil hydraulic parameters can help improve the 2-m temperature and 2-m specific humidity prediction in RMAPS-ST.
机译:在这项研究中,研究了低估了昼夜2-M温度范围的原因和中国北方冬季快速刷新多尺度分析和预测系统短期(RMAPS-ST)的冬季冬季高估的2米特定湿度。基于RMAPS-ST的三次模拟于2016年11月1日至2017年2月28日进行。进一步分析表明,表面向上明显的热通量和向下接地热通量的分区可能是2米温度预测偏差的主要贡献因素。在本研究中,进行了两种模拟,以检查土壤水分初始化和土壤液压性能对2米温度和2米的特定湿度预测的影响。首先,高分辨率土地数据同化系统(HRLDAS)用于提供替代土壤湿度初始化。结果表明,旱地水分可能导致陆地表面的能量分区变化,这又导致了对日元2米温度范围的改进预测,尽管它还扩大了一些特定的特定湿度偏差域的一部分。其次,北京师范大学开发的土壤纹理数据集和经修订的液压参数应用于土壤性质的更详细描述,这可以进一步提高2米特定的湿度偏差。总之,使用优化的土壤湿度初始化,更新的土壤图和修正的土壤液压参数的组合可以帮助改善RMAPS-ST中的2米温度和2-M特定湿度预测。

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