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Model-based evaluation of irrigation needs in Mediterranean vineyards. (Special Issue: Water management in grapevines.)

机译:基于模型的地中海葡萄园灌溉需求评估。 (特刊:葡萄中的水管理。)

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摘要

The irregular rainfall distribution causes interannual variation of water status in Mediterranean vineyards. A frequential analysis of irrigation needs was carried out from continuous simulation of the soil water balance during 39 years in south France. The off-season soil water refilling was often incomplete, with a higher frequency in soils with a high total transpirable soil water (TTSW) and/or susceptible to runoff and high evaporation. On soils with high TTSW (over 250 mm), the irrigation need was nil or small (except in situations of high runoff) and focused on the beginning of the crop cycle. On soils with lower TTSW, the irrigation need increased on average and was spread all along the grapevine cycle due to the limited buffering effect of the soil water reservoir. For 100 mm TTSW, the irrigation need was 40-60 mm for half of the years. The calculated irrigation needs were sensitive to the soil (TTSW, susceptibility to runoff and evaporation) and canopy (crop coefficient) properties. Therefore, soil and canopy management should be considered together with irrigation for an integrated approach of water management.
机译:不规则的降雨分布导致地中海葡萄园水位的年际变化。通过对法国南部39年间土壤水平衡的连续模拟,对灌溉需求进行了频繁分析。淡季土壤补水通常不完全,在总可蒸发土壤水(TTSW)较高和/或易于径流和高蒸发的土壤中,补给频率较高。在TTSW较高(超过250毫米)的土壤上,灌溉需求为零或很小(高径流量情况除外),并着眼于作物周期的开始。在TTSW较低的土壤上,由于土壤水库的有限缓冲作用,灌溉需求平均增加,并在整个葡萄循环中扩散。对于100毫米TTSW,半年的灌溉需求为40-60毫米。计算得出的灌溉需求对土壤(TTSW,径流和蒸发的敏感性)和冠层(作物系数)的特性敏感。因此,应将土壤和林冠管理与灌溉一起考虑,以采取综合的水管理方法。

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