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Using SEBAL to Investigate How Variations in Climate Impact on Crop Evapotranspiration

机译:使用SEBAL调查气候变化对作物蒸散的影响

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Water allocation to crops, and especially to the most water intensive ones, has always been of great importance in agricultural processes. Deficit or excessive irrigation could create either crop health-related problems or water over-consumption, respectively. The latter could lead to groundwater depletion and deterioration of its quality through deep percolation of agrichemical residuals. In this context, and under the current conditions where Cyprus is facing effects of possible climate changes, the purpose of this study seeks to estimate the needed crop water requirements of the past (1995?¢????2004) and the corresponding ones of the present (2005?¢????2015) in order to test if there were any significant changes regarding the crop water requirements of the most water-intensive trees in Cyprus. The Mediterranean region has been identified as the region that will suffer the most from variations of climate. Thus the paper refers to effects of these variations on crop evapotranspiration (ETc) using remotely-sensed data from Landsat TM/ETM+/OLI employing a sound methodology used worldwide, the Surface Energy Balance Algorithm for Land (SEBAL). Though the general feeling is that of changes on climate will consequently affect ETc, our results indicate that there is no significant effect of climate variation on crop evapotranspiration, despite the fact that some climatic factors have changed. Applying Student?¢????s t -test, the mean values for the most water-intensive trees in Cyprus of the 1994?¢????2004 decade have shown no statistical difference from the mean values of 2005?¢????2015 for all the cases, concluding that the climate change taking place in the past decades in Cyprus have either not affected the crop evapotranspiration or the crops have managed to adapt to the new environmental conditions through time.
机译:在农作过程中,向农作物,尤其是对水分最密集的农作物的调水一直非常重要。灌溉不足或过多可能分别造成与作物健康有关的问题或水的过度消费。后者可能会由于农业化学残留物的深度渗滤而导致地下水枯竭并降低其质量。在这种情况下,在塞浦路斯正面临可能的气候变化影响的当前条件下,本研究的目的是估算过去(1995年至2004年)和农业生产中相应的作物需水量。目前(2005年– 2015年),以测试塞浦路斯水耗最大的树木的作物需水量是否有重大变化。地中海地区被确定为受气候变化影响最大的地区。因此,本文利用来自Landsat TM / ETM + / OLI的遥感数据,采用了世界范围内使用的一种可靠方法,即土地表面能平衡算法(SEBAL),来研究这些变化对作物蒸散量(ETc)的影响。尽管人们普遍认为气候变化将因此影响ETc,但我们的结果表明,尽管某些气候因素发生了变化,但气候变化对作物蒸散量没有显着影响。应用Student st检验,1994到2004十年塞浦路斯最耗水的树木的平均值与2005的平均值没有统计学差异。 2015年的所有情况都得出结论,塞浦路斯过去几十年来发生的气候变化并没有影响农作物的蒸散量,或者农作物已经设法适应了新的环境条件。

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