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A 2D electrical resistivity tomography survey of a vineyard plot of the Gaillac appellation (France): interpretation with respect to possible implications on vine water supply

机译:盖拉克产区葡萄园地块的二维电阻率层析成像调查(法国):对葡萄藤供水的潜在影响的解释

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Aims: The aim of this 2D electrical resistivity tomography (ERT) survey performed on a vineyard plot of the Gaillac appellation was to investigate spatial and temporal variations in subsurface water supply in relation with pedo-geological and morphological features.Methods and results: The ERT surveys were carried out under two contrasted - dry and humid - climatic conditions. All the resistivity profiles showed the superposition of two layers: a lower layer characterized by very low resistivity values (< 40 Ω.m) corresponding to a marly molassic subsoil overlaid by an upper layer characterized by moderate to high resistivity values (300 Ω.m to 1500 Ω.m) corresponding to a silty-sandy and gravely-pebbly soil sequence. The resistivity values of the molassic subsoil stayed very low independently of water supply conditions whereas those of the soil sequence decreased by a factor 2 (300/750 Ω.m versus 750/1500 Ω.m) when the plot was close to field capacity.Conclusion: The ERT results coupled with pedological and morphological data strongly suggest that the water flow is preferentially restricted at the molassic subsoil/soil sequence interface, short-lived and of low amplitude.Significance and impact of the study: Consequently, the water supply regime, which points out a potential risk of drought stress for vine crops, implies a minimization strategy when choosing vegetal material and viticultural management operations.
机译:目的:在Gaillac产区的葡萄园地块上进行的二维电阻率层析成像(ERT)调查的目的是调查地下水供应的时空变化及其与人为地质和形态特征的关系。方法与结果:ERT调查是在两个对比的条件下进行的-干燥和潮湿-气候条件。所有的电阻率曲线都显示出两层的叠加:一个下层,其电阻率值非常低(<40Ω.m),对应于一个沼泽化的泥质黏土,上层覆盖了一个中等至较高的电阻率值(300Ω.m)至1500Ω.m)对应于粉质沙质和卵石质土壤序列。当绘图接近于田间持水量时,与供水条件无关,糖质底土的电阻率值保持非常低,而土壤序列的电阻率值降低了2倍(300/750Ω.m对750/1500Ω.m)。结论:ERT结果与土壤学和形态学数据相结合,强烈表明水流被优先限制在黏性土壤/土壤序列界面上,寿命短且幅度低。研究的意义和影响:因此,供水体制指出了葡萄作物干旱胁迫的潜在风险,这意味着在选择植物材料和葡萄栽培管理措施时应采取最小化策略。

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