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Using data on soil ECa, soil water properties, and response of tree root system for spatial water balancing in an apple orchard

机译:利用土壤ECA,土壤水分性能和树根系统对苹果园空间水平的响应

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摘要

The study aims at spatial analysis of water deficit of fruit trees under semi-humid climate conditions. Differences of soil, root, and their relation with the spatial variability of crop evapotranspiration (ETa) were analyzed. Measurements took place in a six hectare apple orchard (Malus x domestica 'Gala') located in fruit production area of Brandenburg (latitude: 52.606 degrees N, longitude: 13.817 degrees E). Data of apparent soil electrical conductivity (ECa) in 25 cm were used for guided sampling of soil texture, bulk density, rooting depth, root water potential, and volumetric water content. Soil ECa showed high correlation with root depth. The readily available soil water content (RAW) was calculated considering three cases utilizing (i) uniform root depth of 1 m, (ii) measured values of root depth, and (iii) root water potential measured during full bloom, fruit cell division stage, at harvest. The RAW set the thresholds for irrigation. The ETa was calculated based on data from a weather station in the field and RAW cases in high, medium and low ECa conditions. ETa values obtained were utilized to quantify how fruit trees cope with spatial soil variability. The RAW-based irrigation thresholds for locations of low and high ECa value differed. The implementation of plant parameters (rooting depth, root water potential) in the water balance provided a more representative figure of water needs of fruit trees Consequently, the precise adjustment of irrigation including plant data can optimize the water use.
机译:该研究旨在半湿润气候条件下果树水赤字的空间分析。分析了土壤,根系及其与作物蒸散(ETA)的空间变异性的关系的差异。测量在六公顷的苹果园(Malus x Domestica'Gala')举行,位于勃兰登堡的水果生产区(纬度:52.606度N,经度:13.817摄氏度)。 25厘米的表观土导(ECA)的数据用于土壤纹理,散装密度,生根深度,根水势和体积含水量的引导采样。土壤ECA与根深的相关性高。考虑到三种情况下,易于获得的土壤含水量(原料)利用(i)均匀的根深度为1 m,(ii)测量的根深,(iii)果实细胞分裂阶段测量,收获。 RAW设置灌溉的阈值。 ETA是基于来自现场气象站的数据和高,中等和低ECA条件的原始案例的数据计算。获得的ETA值用于量化果树如何应对空间土壤变异性。基于原始的低和高ECA值的灌溉阈值不同。在水平衡中实施植物参数(生根深度,根水位)为果树的水平更具代表性的需求图,因此,包括植物数据在内的灌溉的精确调整可以优化用水。

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