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Change in Climate Extremes and Pan Evaporation Influencing Factors over Ouémé Delta in Bénin

机译:贝宁Ouémé三角洲的极端气候变化和蒸发皿蒸发因子

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This work focuses on trend analysis of rainfall, evaporation, temperature, relative humidity, wind speed, and sunshine duration over the Ouémé Delta in Bénin. Eight temperature based indices and fifteen rainfall based indices are computed from 1960 to 2016. Moreover, maximum 1, 2, 3, 5, and 10 days precipitation indices were computed at the monthly scale. Trends are detected at 0.05 confidence level, using a combination of Mann-Kendall and prewhitened Mann-Kendall test. Partial correlation and stepwise regression are used to detect the set of meteorological variables that influence pan evaporation in Ouémé Delta. Results showed intensification of heavy rainfall over Ouémé Delta. Moreover, a significant increasing trend is detected in temperature. As consequence, diurnal temperature significantly decreases as proof of the global warming. Average pan evaporation showed a significant slither increasing trend over the area. Change in pan evaporation can be explained by wind speed and sunshine duration that hold almost 50% of pan evaporation variance. As future temperature is going to be increasing, pan evaporation may increase considerably. So, adaptation measures have to be reinforced in the Ouémé Delta area where farmer are used to rainfed agriculture for food security. Moreover, Ouémé Delta plan have to be developed for it resources sustainability.
机译:这项工作着重于对贝宁Ouémé三角洲的降雨,蒸发,温度,相对湿度,风速和日照持续时间的趋势分析。从1960年到2016年,计算了8个基于温度的指数和15个基于降雨的指数。此外,按月尺度计算了最多1、2、3、5和10天的降水指数。结合使用Mann-Kendall和预先增白的Mann-Kendall检验,可以在0.05置信水平下检测趋势。偏相关和逐步回归用于检测影响Ouémé三角洲的蒸发皿的气象变量集。结果表明,瓦埃梅三角洲的强降雨加剧。而且,在温度上检测到明显的增加趋势。结果,昼夜温度显着下降,证明了全球变暖。锅内平均蒸发量显示出该地区明显的增加趋势。锅蒸发的变化可以用风速和日照时间来解释,风速和日照持续时间几乎占锅蒸发变化的50%。随着未来温度的升高,锅的蒸发量可能会大大增加。因此,必须在瓦美三角洲地区加强适应措施,那里的农民被用来为粮食安全提供雨养农业。此外,必须制定OuéméDelta计划以实现资源可持续性。

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