利用GABLS2客觀評估GRAPES的邊界層參數化方案
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國家重點研發計劃“高精度可擴展數值天氣預報模式研究”(2017YFC1501904)、國家自然科學基金青年基金“平緩下墊面穩定邊界層數值模擬研究”(41405102)資助


Objective Evaluation of PBL Parameterization Scheme in GRAPES Based on GABLS2
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    摘要:

    根據GABLS(Global Energy and Water Cycle Experiment Atmospheric Boundary Layer Study)的第2個個例在GRAPES(Global and Regional Assimilation and PrEdiction System)單柱模式中構造了一個試驗,用于檢驗規定的下墊面溫度強迫條件下邊界層過程的晝夜循環模擬能力。然后,將模擬結果與觀測和大渦模擬結果進行了比較。結果表明,在規定的下墊面溫度強迫下,GRAPES模擬的2 m溫度基本合理。然而,對于穩定條件(夜間),GRAPES模擬的向下的感熱通量比觀測的大,過估10 m風速和摩擦速度,過估穩定邊界層高度;對于不穩定條件(白天),GRAPES模擬的向上的感熱通量比觀測的小,低估不穩定邊界層高度,低層位溫偏冷。隨后的敏感試驗表明,減小邊界層方案中的動量和熱量的背景擴散值后,GRAPES模擬的穩定條件下的10 m風速和摩擦速度,以及對流邊界層的風和溫度的廓線更接近大渦模擬。

    Abstract:

    Based on GABLS2 (the 2nd case of Global Energy and Water Cycle Experiment Atmospheric Boundary Layer Study), a SCM (Single Column Model) experiment is constructed to evaluate the diurnal cycle of PBL (Planetary Boundary Layer) processes in GRAPES(Global and Regional Assimilation and PrEdiction System). Compared with observation and LES (Large Eddy Simulation), GRAPES simulates the 2m temperature reasonably with the prescribed surface temperature forcing. However, it is found that the simulated downward sensible heat flux,10m wind speed, surface friction velocity, and PBL height are overestimated under stable condition (during nighttime), while the simulated upward sensible heat flux and PBL height are underestimated under unstable condition (during daytime). Sensitivity experiment shows that the simulated 10m wind speed and friction velocity in the stable boundary layer, as well as the profiles of wind and temperature in the convective boundary layer, are closer to LES if the background diffusion values are reduced.

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楊軍麗,沈學順,陳炯.利用GABLS2客觀評估GRAPES的邊界層參數化方案[J].氣象科技,2019,47(2):276~281

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  • 收稿日期:2018-01-10
  • 定稿日期:2018-10-30
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  • 在線發布日期: 2019-04-24
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