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Analyses of suspended sediment loads in Slovenian rivers

机译:斯洛文尼亚河流中的悬浮泥沙负荷分析

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Suspended solids are present in every river, but high quantities can worsen the ecological conditions of streams; therefore, effective monitoring and analysis of this hydrological variable are necessary. Frequency, seasonality, inter-correlation, extreme events, trends and lag analyses were carried out for peaks of suspended sediment concentration (SSC) and discharge (Q) data from Slovenian streams using officially monitored data from 1955 to 2006 that were made available by the Slovenian Environment Agency. In total more than 500 station-years of daily Q and SSC data were used. No uniform (positive or negative) trend was found in the SSC series; however, all the statistically significant trends were decreasing. No generalization is possible for the best fit distribution function. A seasonality analysis showed that most of the SSC peaks occurred in the summer (short-term intense convective precipitation produced by thunderstorms) and in the autumn (prolonged frontal precipitation). Correlations between Q and SSC values were generally relatively small (Pearson correlation coefficient values from 0.05 to 0.59), which means that the often applied Q-SSC curves should be used with caution when estimating annual suspended sediment loads. On average, flood peak Q occurred after the corresponding SSC peak (clockwise-positive hysteresis loops), but the average lag time was rather small (less than 1day).
机译:每条河流中都存在悬浮固体,但是大量悬浮物会恶化河流的生态条件;因此,必须对该水文变量进行有效的监测和分析。使用官方监测的1955年至2006年的数据,对斯洛文尼亚溪流的悬浮泥沙浓度(SSC)和流量(Q)数据的峰值进行了频率,季节,相互关系,极端事件,趋势和滞后分析。斯洛文尼亚环境局。总共使用了超过500个站年的每日Q和SSC数据。在SSC系列中未发现一致的(正或负)趋势;但是,所有具有统计意义的趋势都在下降。最佳拟合分布函数无法归纳。季节性分析表明,大多数南南合作峰出现在夏季(雷暴产生的短期强烈对流降水)和秋季(长时间的额锋降水)。 Q和SSC值之间的相关性通常相对较小(Pearson相关系数值从0.05到0.59),这意味着在估算年度悬浮泥沙负荷时应谨慎使用经常应用的Q-SSC曲线。平均而言,洪水峰Q出现在相应的SSC峰之后(顺时针-正滞后回线),但平均滞后时间很小(小于1天)。

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