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A binary mixing model for characterizing stony-soil water retention

机译:一种用于表征石土水保留的二元混合模型

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Highlights ? Water retention curve (WRC) of 7 stone types were measured in laboratory. ? WRC of various stony soils with 5%–40% of stone contents were measured. ? Stones with higher and lower porosities than the soil were considered. ? A mixing model is proposed to predict WRC of the stone-soil mixtures. Abstract A century of research focused primarily on agricultural soils has largely ignored stony soils, which dominate some forests and are poorly understood in terms of the stone influence on soil hydraulic properties. Motivated by this knowledge gap, we quantified the influence of soil-containing stone fragments on bulk soil hydraulic properties by determining the water retention curve (WRC) of soil, stone and stone-soil mixtures with varied volumetric stone content. The measured WRC for seven different stone types based on their composition showed maximum and minimum saturated water contents of 0.55m3 m?3 in pumice and 0.025m3 m?3 in fine sandstone, respectively. The stony soil water retention function was measured using the simplified evaporation method. Contrasting scenarios were studied considering a broad range of stone inclusions; (i) negligibly porous, (ii) significantly porous but less porous than the background soil, (iii) more porous than the background soil. An averaging scheme to describe the WRC of stony soil was proposed based on the individual WRC of the background and stone inclusion which was in good agreement with the experimental data. The HYDRUS-3D model was also employed to simulate the evaporation experiment used for the WRC measurements. The model simulations supported the basic assumptions of the proposed averaging scheme. ]]>
机译:<![cdata [ 突出显示 在实验室中测量了7种石类型的水保留曲线(wrc)。 各种石土的WRC,5%-40%测量石内容。 考虑了较高和较低的孔隙座的石头。 提出混合模型预测石土混合物的WRC。 抽象 < CE:简单 - 符号ID =“SPAR0040”视图=“全部”>主要在农业土壤上专注的一个世纪,主要忽略了石块,这在土壤液压特性的石材影响方面占据了一些森林,并在石材对土壤的影响方面难以理解。通过这种知识差距激励,我们通过测定土壤,石材和石材混合物的水保留曲线(WRC)量化含有土壤,石材和石材混合物的水潴态,量化的土壤液压特性的影响。基于它们的组成的七种不同的石类型的测量WRC显示出最大和最小饱和的水含量为0.55 m 3 m ?3 在浮石中,0.025 m 3 m ?3 在细砂岩中。使用简化的蒸发方法测量石土壤水保留功能。考虑到广泛的石材夹杂物研究了对比情景; ( i )可忽略的多孔,( ii )明显多孔但比背景土壤更少,( iii )比背景土壤更多孔。基于背景和石头纳入的个​​体WRC,提出了一种描述石材WRC的平均方案,与实验数据吻合良好。还采用了氢 - 3D模型来模拟用于WRC测量的蒸发实验。模型模拟支持所提出的平均方案的基本假设。 ]]>

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