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Impact of Land Model Calibration on Coupled Land-Atmosphere Prediction

机译:土地模型标定对陆地大气耦合预报的影响

摘要

Land-atmosphere (L-A) interactions play a critical role in determining the diurnal evolution of both planetary boundary layer (PBL) and land surface heat and moisture budgets, as well as controlling feedbacks with clouds and precipitation that lead to the persistence of dry and wet regimes. Recent efforts to quantify the strength of L-A coupling in prediction models have produced diagnostics that integrate across both the land and PBL components of the system. In this study, we examine the impact of improved specification of land surface states, anomalies, and fluxes on coupled WRF forecasts during the summers of extreme dry and wet land surface conditions in the U.S. Southern Great Plains. The improved land initialization and surface flux parameterizations are obtained through calibration of the Noah land surface model using the new optimization and uncertainty estimation subsystem in NASA's Land Information System (LIS-OPT/UE). The impact of the calibration on the a) spinup of the land surface used as initial conditions, and b) the simulated heat and moisture states and fluxes of the coupled WRF simulations is then assessed. Changes in ambient weather and land-atmosphere coupling are evaluated along with measures of uncertainty propagation into the forecasts. In addition, the sensitivity of this approach to the period of calibration (dry, wet, average) is investigated. Results indicate that the offline calibration leads to systematic improvements in land-PBL fluxes and near-surface temperature and humidity, and in the process provide guidance on the questions of what, how, and when to calibrate land surface models for coupled model prediction.
机译:陆地-大气(LA)相互作用在确定行星边界层(PBL)的昼夜演变以及地表热量和水分预算,以及控制云和降水的反馈(导致干湿持续存在)方面起着关键作用政权。最近在预测模型中量化L-A耦合强度的工作已产生了诊断,这些诊断已集成到系统的陆地和PBL组件中。在这项研究中,我们研究了美国南部大平原夏季极端干旱和湿润地面条件下改良的地面状态,异常和通量规范对耦合WRF预报的影响。通过使用美国国家航空航天局(NASA)土地信息系统(LIS-OPT / UE)中的新优化和不确定性估计子系统对诺亚(Noah)地表模型进行校准,可以获得改进的地表初始化和表面通量参数化。然后评估校准对以下方面的影响:a)用作初始条件的陆地表面起旋,以及b)耦合的WRF模拟的模拟的热量和湿度状态以及通量。评估环境天气和陆地-大气耦合的变化以及不确定性传播到预报中的度量。此外,还研究了这种方法对校准周期(干,湿,平均)的敏感性。结果表明,离线校准可导致陆地PBL通量和近地表温度和湿度的系统性改善,并且在此过程中可为校准模型的耦合方式,预测方式,何时以及如何校准陆面模型提供指导。

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