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首页> 外文期刊>Science of the total environment >Evaluation and improvement study of the Planetary Boundary-Layer schemes during a high PM_(2.5) episode in a core city of BTH region, China
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Evaluation and improvement study of the Planetary Boundary-Layer schemes during a high PM_(2.5) episode in a core city of BTH region, China

机译:中国核心城市核心城市高点PM_(2.5)集中的行星边界层方案的评价与改进研究

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摘要

Accurate depictions of planetary boundary layer (PBL) processes are important for both meteorological and air quality simulations. This study examines the sensitivity of the model performance of the Weather Research Forecasting model coupled with Chemistry (WRF-Chem) to five different PBL schemes and further to different turbulence parameters for the simulation of a winter haze episode in Tianjin, a core city of the Beijing-Tianjin-Hebei (BTH) region in China. To provide a direct and comprehensive evaluation of the PBL schemes, measurements from multiple instruments are employed, including both meteorological and air quality quantities from near-surface observations, vertical sounding measurements and ceilometer data. Moreover, the vertical distribution of the turbulent exchange coefficient is derived from sounding measurements and is utilized to evaluate the PBL schemes. The results suggest that the Mellor-Yamada-Janjic (MYJ) scheme is generally statistically superior to the other schemes when comparing observations. However, considerable model discrepancies still exist during certain stages of this haze episode, which are found to be predominantly due to the deficiency of MYJ in distinguishing the intensity of turbulent mixing between different pollution stages. To improve the model performance, this study further tests the impact of different closure parameters on the simulation of winter haze episode. In the MYJ scheme, the closure parameters play a key role in the turbulent mixing within the PBL and therefore in haze simulations. Sensitivity experiments with different MYJ parameters confirm this diagnosis and suggest that a larger Prandtl number (Pr), rather than the default value in the MYJ formulation, may be more applicable for haze simulations under stable atmospheric conditions.
机译:行星边界层(PBL)过程的准确描绘对于气象和空气质量模拟是重要的。本研究探讨了天气研究预测模型的敏感性与化学(WRF-CHEM)到五种不同的PBL方案,进一步用于模拟天津冬季阴霾剧集的不同湍流参数,是核心城市北京天津 - 河北(BTH)地区在中国。为了提供对PBL计划的直接和全面的评估,采用来自多种仪器的测量,包括来自近表面观测的气象和空气质量,垂直探测测量和CeIlometer数据。此外,湍流交换系数的垂直分布源自探测测量,并利用来评估PBL方案。结果表明,在比较观察时,Mellor-yamada-Janjic(MyJ)方案通常与其他方案统计上优于其他方案。然而,在这种阴霾发作的某些阶段期间仍存在相当大的模型差异,这些阶段被发现主要是由于MyJ的缺陷区分不同污染阶段之间的湍流混合强度。为了提高模型性能,本研究进一步测试了不同闭合参数对冬季阴霾集的影响的影响。在MYJ方案中,闭合参数在PBL内的湍流混合中起着关键作用,因此在雾度模拟中起作用。具有不同MYJ参数的敏感性实验证实了该诊断并建议更大的PRANDTL编号(PR),而不是MYJ制定中的默认值,可能更适用于稳定的大气条件下的雾度模拟。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|142756.1-142756.16|共16页
  • 作者单位

    Tianjin Key Laboratory for Oceanic Meteorology Tianjin 300074 China Tianjin Institute of Meteorological Science Tianjin 300074 China CMA-NKU Cooperative Laboratory for Atmospheric Environment-Health Research Tianjin 300074 China;

    CMA-NKU Cooperative Laboratory for Atmospheric Environment-Health Research Tianjin 300074 China;

    CMA-NKU Cooperative Laboratory for Atmospheric Environment-Health Research Tianjin 300074 China;

    Tianjin Key Laboratory for Oceanic Meteorology Tianjin 300074 China Tianjin Institute of Meteorological Science Tianjin 300074 China;

    CMA-NKU Cooperative Laboratory for Atmospheric Environment-Health Research Tianjin 300074 China;

    Tianjin Key Laboratory for Oceanic Meteorology Tianjin 300074 China Tianjin Institute of Meteorological Science Tianjin 300074 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PBL parametrization; WRF-Chem model; Vertical profile; Haze simulation; Parametric sensitivity; Turbulent Prandtl number;

    机译:PBL参数化;WRF-CHEM模型;垂直外形;阴霾模拟;参数敏感性;动荡的普兰特号码;

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