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WATER REPELLENCY OF ORGANIC GROWING MEDIA ITS INFLUENCE ON HYSTERETIC HYDRAULIC PROPERTIES

机译:有机生长介质的防水性及其对滞后液压特性的影响

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As for soils, most of growing media can present hysteresis phenomena during drying/wetting cycles, which greatly affect hydraulic properties. In case of organic substrates, the acquisition of a hydrophobic character during desiccation can be considered as one of the main factors conditioning hysteresis phenomena. The purpose of this study is then to estimate the influence of the wettability by contact angle measurements (capillary rise method of Michel et al. 2001) on their hydraulic properties (q(y) and K(y)) measured by the Instantaneous Profile Method (IPM) during evaporation and infiltration experiments as well. Peat showed a large evolution of wettability related to water content and important hysteresis phenomena in contact angles measurements but also in the hydraulic conductivity K(y) and water retention q(y)? curves. On the other hand, the wettability of pine bark also varied with water content, but no hysteresis phenomena were observed in contact angles measurement and in the q(y) and the K(y) curves. The whole of these results seemed to indicate that hydraulic properties (water retention and hydraulic conductivity) were influenced by wettability of substrates.
机译:至于土壤,大多数生长介质可以在干燥/润湿循环期间呈现滞后现象,这极大地影响了液压性能。在有机底物的情况下,在干燥期间获取疏水性特征可以被认为是调理滞后现象的主要因素之一。然后,本研究的目的是通过瞬时剖面方法测量的其液压性能(Q(y)和k(k(y))估计润湿性对润湿性的影响(IPM)在蒸发和渗透实验期间。泥炭展示了与水含量相关的润湿性和关联角度测量的重要滞后演变,但也在液压导电性K(Y)和水保留Q(Y)中?曲线。另一方面,松树的润湿性也随含水量而变化,但在接触角测量和Q(Y)和K(Y)曲线中没有观察到滞后现象。这些结果的整体似乎表明液压性能(水保持和液压导率)受底物润湿性的影响。

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