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崔翔, 朱长歧, 胡明鉴, 汪稔, 刘海峰. 珊瑚砂渗透性的微观机理研究[J]. 岩土工程学报, 2020, 42(12): 2336-2341. DOI: 10.11779/CJGE202012022
引用本文: 崔翔, 朱长歧, 胡明鉴, 汪稔, 刘海峰. 珊瑚砂渗透性的微观机理研究[J]. 岩土工程学报, 2020, 42(12): 2336-2341. DOI: 10.11779/CJGE202012022
CUI Xiang, ZHU Chang-qi, HU Ming-jian, WANG Ren, LIU Hai-feng. Microscopic mechanism of permeability of coral sand[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(12): 2336-2341. DOI: 10.11779/CJGE202012022
Citation: CUI Xiang, ZHU Chang-qi, HU Ming-jian, WANG Ren, LIU Hai-feng. Microscopic mechanism of permeability of coral sand[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(12): 2336-2341. DOI: 10.11779/CJGE202012022

珊瑚砂渗透性的微观机理研究

Microscopic mechanism of permeability of coral sand

  • 摘要: 珊瑚砂是一种海洋特殊土。特殊的物质来源和形成过程,导致了其水文物理性质与陆源砂存在差异。文中设置了珊瑚砂和石英砂作为对照组,通过一系列微观试验,从微观角度定量研究并揭示了珊瑚砂特殊性质的原因。研究发现,导致珊瑚砂特殊性质的微观因素包括颗粒表面性质和颗粒形状性质两方面。其中,颗粒表面性质包括颗粒带电性和表面亲疏水性。颗粒带电性显示,石英砂较珊瑚砂颗粒更易发生聚集和凝聚;表面亲疏水性显示,珊瑚砂较石英砂颗粒表面亲水性差。颗粒形状性质包括颗粒整体形状和颗粒表面粗糙度,并呈现分段性规律。粒径≤0.25 mm时,珊瑚砂较石英砂颗粒形状规则,且表面光滑;粒径介于0.25~0.75 mm时,珊瑚砂较石英砂颗粒形状规则,但表面粗糙;粒径≥0.75 mm时,珊瑚砂较石英砂颗粒形状不规则,且表面粗糙。最后,通过上述微观结论对珊瑚砂和石英砂渗透性差异机理作出合理解释,并总结出颗粒微观性质对珊瑚砂渗透性影响的分段性规律。

     

    Abstract: Coral sand is a kind of special marine soil. The special material source and formation process lead to the difference of hydrophysical properties between coral sand and terrestrial sand. The coral sand and quartz sand are set as the control group. Through a series of microscopic experiments, the reasons for the special properties of coral sand are quantitatively studied and revealed. It is found that the microscopic factors leading to the particularity of coral sand include two aspects: particle surface properties and particle shape properties. The surface properties of particles include particle electrification and surface hydrophilicity. The particle electrification shows that quartz sand is more likely to aggregate and agglomerate than the coral sand. The hydrophilicity of surface shows that the hydrophilicity of coral sand is worse than that of quartz sand. The shape properties of particles include the overall shape of particles and the surface roughness of particles which show a piecewise rule. When the particle size is less than 0.25 mm, the coral sand has relatively regular shape and smooth surface compared with the quartz sand. When the particle size is 0.25~0.75 mm, the coral sand has relatively regular shape but rough surface compared with the quartz sand. When the particle size ≥0.75 mm, the coral sand is relatively irregular in shape and rough in surface compared with the quartz sand. Finally, the mechanism of the difference permeabilities between the coral sand and the quartz sand is reasonably explained by the above microscopic conclusions, and the piecewise rules of the influences of particle microscopic properties on the permeability of the coral sand are summarized.

     

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