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Evaluating a New Deposition Velocity Module in the Noah Land-Surface Model

机译:在Noah地表模型中评估新的沉积速度模块

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The community Noah land-surface model (Noah LSM) has been modified to couple with a photosynthesis-transpiration scheme (GEM) to estimate the deposition velocity (V d ) for air quality studies. This new capability of the Noah-GEM model was tested in a point version of the National Center for Atmospheric Research-High Resolution Land Data Assimilation System (HRLDAS). Ozone V d observations from June 1-30, 2002 over the AmeriFlux forested site located at Niwot Ridge, Colorado, USA (40p1o58ooN;105p32o47ooW) were used. The model reasonably captures V d variations for both dry and wet conditions but has problems at nighttime. Experiments were performed to assess the sensitivity of V d calculations to surface characteristics related to vegetation and soil parameters. The results indicated that V d values are sensitive to accurate specifications of the leaf area index (LAI) and a lesser extent to vegetation type, maximum stomatal resistance (R smax ) and soil texture prescription. The model sensitivity to canopy resistance was noted for both daytime and nighttime. For this forest site, neither soil textures nor soil moisture appeared to affect V d calculations significantly, though they affected the surface heat-flux estimation particularly under low soil moisture conditions. Therefore, the V d estimation in the Noah model can be enhanced by either site-specific LAI or assimilating regional normal difference vegetation index information for specific time periods. Results also highlighted the need to lower the current constant R smax value used in Noah and other land-surface models.
机译:修改了诺亚社区土地表面模型(Noah LSM),以结合光合作用方案(GEM)估算空气质量研究的沉积速度(V d)。 Noah-GEM模型的这一新功能已在美国国家大气研究中心-高分辨率土地数据同化系统(HRLDAS)的单点版本中进行了测试。使用了2002年6月1日至30日在美国科罗拉多州Niwot Ridge的AmeriFlux森林站点上观测到的臭氧d(40p10o58ooN; 105p32o47ooW)。该模型合理地捕获了干燥和潮湿条件下的V d变化,但在夜间存在问题。进行实验以评估V d计算对与植被和土壤参数有关的表面特征的敏感性。结果表明,V d值对叶面积指数(LAI)的准确规格敏感,对植被类型,最大气孔阻力(R smax)和土壤质地处方的敏感程度较小。白天和晚上都注意到模型对树冠阻力的敏感性。对于这个森林站点,土壤质地和土壤水分似乎都不会显着影响V d的计算,尽管它们会影响表面热通量的估算,尤其是在低土壤湿度条件下。因此,可以通过特定地点的LAI或在特定时间段内吸收区域正常差异植被指数信息来增强Noah模型中的V d估计。结果还强调了需要降低在诺亚(Noah)和其他陆面模型中使用的当前常数R smax值。

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