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Evaluation and Postprocessing of Ensemble Fire Weather Predictions over the Northeast United States

机译:美国东北地区集团火灾天气预报的评估和后处理

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The Short-Range Ensemble Forecast (SREF) system is verified and bias corrected for fire weather days (FWDs) defined as having an elevated probability of wildfire occurrence using a statistical Fire Weather Index (FWI) over a subdomain of the northeastern United States (NEUS) between 2007 and 2014. The SREF is compared to the Rapid Update Cycle and Rapid Refresh analyses for temperature, relative humidity, specific humidity, and the FWI. An additive bias correction is employed using the most recent previous 14 days [sequential bias correction (SBC)] and the most recent previous 14 FWDs [conditional bias correction (CBC)]. Synoptic weather regimes on FWDs are established using cluster analysis (CA) on North American Regional Reanalysis sea level pressure, 850-hPa temperature, 500-hPa temperature, and 500-hPa geopotential height. SREF severely underpredicts FWI (by two indices at FWI 5 3) on FWDs, which is partially corrected using SBC and largely corrected with CBC. FWI underprediction is associated with a cool (ensemble mean error of -1.8 K) and wet near-surface model bias (ensemble mean error of 0.46 g kg 21) that decreases to near zero above 800 hPa. Although CBC improves reliability and Brier skill scores on FWDs, ensemble FWI values exhibit underdispersion. CA reveals three synoptic weather regimes on FWDs, with the largest cool and wet biases associated with a departing surface low pressure system. These results suggest the potential benefit of an operational analog bias correction on FWDs. Furthermore, CA may help elucidate model error during certain synoptic weather regimes.
机译:验证了短程集合预测(SREF)系统并校正了火灾天气日(FWDS)的偏见定义为在美国东北部(Neus)的统计火灾天气指数(FWI)上具有较高的野火发生概率(FWI)(Neus )2007年至2014年。将SREF与快速更新周期和快速刷新分析进行比较,用于温度,相对湿度,特定湿度和FWI。使用最近的前一个14天[顺序偏置校正(SBC)]和最近的前一个14 FWDS [条件偏压校正(CBC)]采用添加剂偏压校正。 FWDS上的舞蹈天气制度是在北美区域再分析海平面压力,850-HPA温度,500-HPA温度和500-HPA地球势高度的集群分析(CA)建立的。 SREF严重削弱了FWI(FWI 5 3的两个指数),FWDS使用SBC部分纠正,并用CBC校正。 FWI欠下的弱点与冷却(集成均值误差为-1.8 k)和湿近表面模型偏置(集成均值误差为0.46g kg 21),其降低至800hpa以上的零附近。虽然CBC在FWDS上提高了可靠性和BRILL技能分数,但集合FWI值表现出低分分解。 CA在FWDS上揭示了三个天气状态,具有与离去表面低压系统相关的最大冷却和湿偏差。这些结果表明了对FWDS的操作模拟偏差校正的潜在益处。此外,CA可以在某些舞台天气制度期间帮助阐明模型误差。

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