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首页> 外文期刊>Journal of hydrometeorology >Sensitivity of a cloud-resolving simulation of the genesis of a mesoscale convective system to horizontal heterogeneities in soil moisture initialization
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Sensitivity of a cloud-resolving simulation of the genesis of a mesoscale convective system to horizontal heterogeneities in soil moisture initialization

机译:中尺度对流系统成因的云解析模拟对土壤水分初始化中水平非均质性的敏感性

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This study examines the sensitivity of varying the horizontal heterogeneities of the soil moisture initialization (SMI) in the cloud-resolving grid of a real-data simulation of a midlatitude mesoscale convective system (MCS) during its genesis phase. The quasi-stationary MCS of this study formed in the Texas/Oklahoma panhandle with a lifetime of 9 h ( 2200 UTC 26 July to 0700 UTC 27 July 1998). Soil moisture for the finest nested grid ( the cloud-resolving grid) was derived from the antecedent precipitation index (API) using 4-km-grid-spacing precipitation data for a 3-month period. In order to vary the heterogeneities of the SMI in the cloud-resolving grid, (i) Barnes objective analysis was used to alter the resolution of the soil moisture initialization, (ii) the amplitudes of the soil moisture anomalies were reduced, (iii) the position of a soil moisture anomaly was altered, and (iv) two experiments with homogeneous SMI (31% and 50% saturation) were performed. Because of the severe drought in the Texas/Oklahoma panhandle area, the saturation API value was lowered in order to introduce heterogeneities in the soil moisture for the sensitivity experiments.All of the experiments with heterogeneous SMI ( in addition to an experiment with a homogeneous SMI at 31% saturation) produced an MCS with a quasi-circular cloud shield, similar to the observed timing, size, and location. The authors' findings suggest that a soil moisture dataset with approximately 40-km grid spacing may be adequate to initialize a cloud-resolving model for simulating MCSs. For the simulations in this study, the soil moisture distribution determined where convection was likely to occur. Wetter soil tended to suppress convection for this case, and convection preferentially occurred around the peripheries of wet soil moisture anomalies.
机译:这项研究检查了中纬度中尺度对流系统(MCS)形成阶段实际数据模拟中云解析网格中土壤湿度初始化(SMI)的水平异质性变化的敏感性。这项研究的准平稳MCS在德克萨斯州/俄克拉荷马州的潘汉德尔市形成,寿命为9小时(7200年7月26日UTC至1998年7月27日0700 UTC)。最佳嵌套嵌套网格(云解析网格)的土壤水分是使用3个月的4公里网格间隔降水数据从先前的降水指数(API)得出的。为了改变云解析网格中SMI的异质性,(i)使用Barnes客观分析来改变土壤水分初始化的分辨率,(ii)降低了土壤水分异常的幅度,(iii)土壤湿度异常的位置发生了变化,并且(iv)进行了两个均质SMI(饱和度分别为31%和50%)的实验。由于得克萨斯州/俄克拉荷马州潘汉德尔地区严重干旱,降低了饱和度API值,以便在土壤水分中引入异质性以进行敏感性实验。所有使用异质SMI的实验(除了使用均质SMI的实验之外)在饱和度为31%时产生的MCS带有准圆形云盾,与观察到的时间,大小和位置相似。作者的发现表明,具有约40 km网格间距的土壤水分数据集可能足以初始化用于模拟MCS的云解析模型。对于本研究中的模拟,土壤水分分布确定了可能发生对流的地方。在这种情况下,较湿的土壤倾向于抑制对流,并且对流优先发生在湿土壤湿度异常的周围。

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