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Soil losses in rainfed Mediterranean vineyards under climate change scenarios. The effects of drainage terraces.

机译:气候变化情景下地中海雨养葡萄园的土壤流失。排水平台的影响。

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Most vines in the Mediterranean are cultivated on bare soils, due to the scarcity of water. In addition, most traditional soil conservation measures have been eliminated to facilitate the movement of machinery in the fields. In such conditions, high erosion rates are recorded. Given the predicted changes in precipitation and an increasing number of extreme events, an increase in erosion processes is expected. In this study, erosion processes under different climate change scenarios were evaluated as well as the effects of implementing drainage terraces in vineyards. Soil losses were simulated using the WEPP model. The results confirmed the relevance of extreme events on annual soil losses. The WEPP model gave satisfactory results in predicting runoff and soil losses, although the soil losses recorded after some extreme events were under-predicted. The model responded to changes in precipitation and because of that a decrease in precipitation gave rise to a decrease in soil losses. For the scenario in 2050, runoff volumes decreased between 19.1 and 50.1%, while erosion rates decreased between 34 and 56%. However, the expected increase in rainfall intensity may contribute to higher erosion rates than at present. The construction of drainage terraces, perpendicular to the maximum slope, 3 m wide and 30 m between terraces, may lead to an average decrease in soil losses of about 45%.
机译:由于缺水,地中海地区的大多数葡萄藤都在裸露的土壤上种植。此外,大多数传统的水土保持措施已被取消,以促进机械在田间的移动。在这种情况下,记录到高腐蚀速率。考虑到预计的降水变化和极端事件数量的增加,预计侵蚀过程将增加。在这项研究中,评估了在不同气候变化情景下的侵蚀过程以及在葡萄园中实施排水平台的影响。使用WEPP模型模拟了土壤流失。结果证实了极端事件与每年土壤流失的相关性。 WEPP模型在预测径流和土壤流失方面给出了令人满意的结果,尽管在某些极端事件之后记录的土壤流失被低估了。该模型响应了降水量的变化,因此,降水量的减少导致土壤流失的减少。对于2050年的情景,径流量减少了19.1至50.1%,而侵蚀率减少了34至56%。但是,降雨强度的预期增加可能会导致比目前更高的侵蚀率。垂直于最大坡度,梯田之间3 m宽和30 m的排水梯田的建设可能导致平均土壤流失减少约45%。

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