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郑晓辉, 徐国强, 贾丽红, 郑东生, 张红军. GRAPES_Meso区域模式积云计算方案引进及预报效果检验[J]. 大气科学, 2016, 40(5): 907-919. DOI: 10.3878/j.issn.1006-9895.1512.15145
引用本文: 郑晓辉, 徐国强, 贾丽红, 郑东生, 张红军. GRAPES_Meso区域模式积云计算方案引进及预报效果检验[J]. 大气科学, 2016, 40(5): 907-919. DOI: 10.3878/j.issn.1006-9895.1512.15145
ZHENG Xiaohui, XU Guoqiang, JIA Lihong, ZHENG Dongsheng, ZHANG Hongjun. Incorporation of a Cumulus Fraction Scheme in the GRAPES_Meso and Evaluation of Its Performance[J]. Chinese Journal of Atmospheric Sciences, 2016, 40(5): 907-919. DOI: 10.3878/j.issn.1006-9895.1512.15145
Citation: ZHENG Xiaohui, XU Guoqiang, JIA Lihong, ZHENG Dongsheng, ZHANG Hongjun. Incorporation of a Cumulus Fraction Scheme in the GRAPES_Meso and Evaluation of Its Performance[J]. Chinese Journal of Atmospheric Sciences, 2016, 40(5): 907-919. DOI: 10.3878/j.issn.1006-9895.1512.15145

GRAPES_Meso区域模式积云计算方案引进及预报效果检验

Incorporation of a Cumulus Fraction Scheme in the GRAPES_Meso and Evaluation of Its Performance

  • 摘要: 云量在模式中的准确模拟既是一个重点问题,也是一个难点问题。经评估发现,在GRAPES_Meso(Global/Regional Assimilation and PrEdiction System)模式中存在模拟云量偏少的问题,而ECMWF模式中的积云云量计算方案对云量模拟具有一定优势。鉴于此,本文借鉴ECMWF积云云量计算方案对GRAPES中尺度模式中的云量计算方案进行了适当改进,并通过影响试验模拟三维云量和地面温度来验证其改进效果。结果表明:较改进前,改进云量方案模拟的云量增多,单层云量更加准确,垂直方向云层结构改进效果明显;地面温度与观测值对比误差减小。综合分析模拟结果,认为改进云量计算方案在GRAPES模式中对云量和地面温度的模拟有较好的改进。

     

    Abstract: Accurate simulation of cloud cover fraction is a key and difficult issue in numerical modeling studies. Preliminary evaluations have indicated that cloud fraction is generally underestimated in GRAPES_Meso (Global/Regional Assimilation and PrEdiction System) simulations, while the cloud fraction scheme (CFS) of ECMWF can provide more realistic results. Therefore, the ECMWF cumulus fraction scheme is introduced into GRAPES_Meso to replace the original CFS, and the model performance with the new CFS is evaluated based on simulated three-dimensional cloud fractions and surface temperature. Results indicate that the simulated cloud fractions increase and become more accurate with the new CFS; the simulation for vertical cloud structure has improved too; errors in surface temperature simulation have decreased. The above analysis and results suggest that the new CFS has a positive impact on cloud fraction and surface temperature simulation.

     

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