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Water Retention and Preferential States of Soil Moisture in a Cultivated Vertisol

机译:垂直生长耕作中水分的持水率和土壤水分优先状态

摘要

Vertisols are well suited for rainfed agriculture in water-limited environments as a result of their unique water transfer and retention characteristics. Despite their importance, the agro-hydrological behavior of these soils under seasonally dry climates is not yet fully understood. We collected water retention data for a Vertisol, measured from saturation to oven dryness on 27 undisturbed topsoil (0–0.05 m) samples from an experimental field in south-central Spain and related this information to the occurrence of field-observed preferential soil moisture states. A continuous function was fitted to the mean gravimetric water retention data, Θ, consisting of the sum of a double exponential model and the Groenevelt and Grant model. An inflection point at pressure head |h| = 1.1 × 105 cm, Θ = 0.12 kg kg−1, and an equivalent pore radius, δ = 14 nm, was interpreted as the boundary between the clay inter- and intra-aggregate pore spaces, corresponding with the transition from the intermediate to the dry field soil moisture state. The mode of the textural pore space (|h| = 7.3 × 103 cm, Θ = 0.21 kg kg−1, and δ = 200 nm) matched the transition from the wet to the intermediate field soil moisture state. We related these characteristics of the soil water retention curve with the spatiotemporal soil moisture dynamics and patterns observed in the field, characterized by fast transitions between preferential soil moisture states. The proposed framework is suitable for comparing the effects of different soil management strategies on the agro-hydrological performance of Vertisols.
机译:Vertisols具有独特的调水和保水特性,非常适合在水有限的环境中进行雨养农业。尽管它们很重要,但尚未完全了解这些土壤在季节性干旱气候下的农业水文行为。我们收集了Vertisol的保水数据,该数据是从西班牙中南部一个实验田的27个未扰动表土(0-0.05 m)样品的饱和度到干燥度测量的,并将该信息与现场观察到的优先土壤水分状态的发生相关。将连续函数拟合到平均重量保水数据Θ,该数据由双指数模型与Groenevelt和Grant模型的总和组成。压力头的拐点| h | = 1.1×105 cm,Θ= 0.12 kg kg-1,等效孔隙半径δ= 14 nm被解释为粘土内部和内部聚集体孔隙空间的边界,对应于从中间层到中间层的过渡旱田土壤水分状态。纹理孔隙空间的模式(| h | = 7.3×103 cm,Θ= 0.21 kg kg-1,δ= 200 nm)与从湿态到中田土壤水分状态的转变相匹配。我们将土壤保水曲线的这些特征与田间观察到的时空土壤水分动力学和模式相关联,其特征在于优先土壤水分状态之间的快速过渡。拟议的框架适合比较不同土壤管理策略对Vertisols农业水文性能的影响。

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