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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >El Ni?o–Southern Oscillation incidence over long dry sequences and their impact on soil water storage in Argentina
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El Ni?o–Southern Oscillation incidence over long dry sequences and their impact on soil water storage in Argentina

机译:El Ni?O-Southern振荡发病在长期干燥序列中及其对阿根廷土壤蓄水的影响

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>The deficit of daily precipitation, persistent over time (long dry sequences [LDS]), causes economic losses in the east–northeast of Argentina where agriculture production is the main economic activity. For this reason, an improvement in the seasonal prediction of the frequency of precipitation is required. Among several forcings influencing the region of study, El Ni?o–Southern Oscillation (ENSO) has been identified as responsible for a great part of the inter‐annual variability of precipitation. Therefore, in this study, we assess the ENSO signal on LDS and the response of soil water storage under the different phases. >In order to assess this issue, daily data were used from 30 meteorological stations. Based on this information, dry sequences were quantified considering a dry day when the accumulated precipitation of two consecutive days was lower than 5 mm. From the dry sequences, two different thresholds were used to identify LDS. On one hand, the 85th percentile was selected as a spatially variable threshold and, on the other hand, 15‐day length was used as a fixed one. Based on this selection, the severity and the number of LDS were analysed. In general terms, La Ni?a (El Ni?o) phase presents higher (lower) severity and higher (lower) probability in the occurrence of more than one LDS per season, except in winter. This result is in concordance with negative (positive) anomalies of accumulated precipitation under La Ni?a (El Ni?o) phase. Regarding the impact on the water balance, soil water storage responds to accumulated precipitation anomalies in all the seasons.
机译: >日常降水量的赤字,随着时间的推移(长干序列[LDS]),导致阿根廷东部的经济损失,农业生产主要经济活动。因此,需要改善沉淀频率的季节性预测。在几种影响影响学习区域的迫使中,El Ni?O-Southern振荡(ENSO)已被确定为负责的降水年间可变异的大部分。因此,在本研究中,我们评估LDS上的ENSO信号以及在不同阶段下的土壤储水响应。 >以评估该问题,每日数据是从30个气象站使用的。基于该信息,当连续两个天的累积沉淀低于5mm时,考虑干燥的日期,定量干序列。从干序列中,使用两种不同的阈值来鉴定LDS。一方面,选择85百分位作为空间可变阈值,另一方面,使用15天的长度作为固定的。基于此选择,分析了严重程度和LD的数量。一般而言,除了在冬季,La Niα(El Ni oth'O)阶段呈现出高于一个以上LDS的严重程度和更高(更低)的概率,除了冬季。该结果与La Ni下累积沉淀的阴性(正)异常相一致α(El Ni-O)相。关于对水平衡的影响,土壤储水储存在所有季节中的累积降水异常。

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