均质SAP复合土质覆盖层水分运移规律研究
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TU443

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国家自然科学基金资助项目(51608152);中央高校基本科研业务费专项资金资助(B210202034,B200204036,B200204032)


Study on Rainfall Infiltration of a Homogeneous SAP-Enhanced Cover
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    摘要:

    为了提高覆盖层的防渗性能,提出采用高性能吸水性树脂(SAP)颗粒提升土体的储水能力,掺入土中构建均质SAP复合土质覆盖层,然而其水分运移规律尚不明确。开展了一系列简易蒸发单元试验和土柱模型试验,测量了SAP复合土质覆盖层不同深度孔隙水压力和体积含水量的变化。研究表明,质量分数1%的SAP颗粒掺入土中形成的SAP混合土体,饱和体积含水量增加了29%,土水特征曲线中下降段的斜率绝对值增加了36%,但进气值几乎无变化。在失水过程中孔隙水压力降低较快,而体积含水量降低明显较慢,存在较强的滞回效应。覆盖层中的SAP混合土体的体积含水量(储水量)随着深度的增加而减少。在南京地区百年一遇的极端降雨条件下,均质SAP复合土层下渗量仅为12.7 mL,而均质砂土层渗流量高达2 510 mL,说明防渗性能良好。

    Abstract:

    In order to improve the anti-seepage performance of the cover, this paper aims to use super absorbent polymer (SAP) particles to improve the water storage capacity of the soil, and to mix them into the soil to build an SAP composite soil cover, but the law of water movement is still unclear. In this paper, a series of simple evaporation unit tests and soil column model tests were carried out to measure the changes of the pore water pressure and volume water content in SAP composite soil cover at different depths. The results showed that the saturated volume water content of SAP mixed soil formed by mixing 1% SAP particles into the soil increased by 29%, and the absolute value of the slope in the descending section of the soil water characteristic curve increased by 36%, but the air intake value hardly changed. In the process of water loss, the pore water pressure decreased rapidly, while the volume water content decreased slowly, and there was a strong hysteresis effect. The volume water content (water storage) of SAP composite soil cover decreased with the increase of depth. Under the extreme rainfall condition of once-in-a-century in Nanjing, the infiltration amount of SAP was only 12.7 ml, while that of homogeneous sandy soil cover is 2 510 ml, indicating that the anti-seepage performance is good.

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吴跃东,陆韶鹏,刘坚,吴回国.均质SAP复合土质覆盖层水分运移规律研究[J].河北工程大学自然版,2023,(1):21-28

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  • 收稿日期:2022-06-23
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  • 在线发布日期: 2023-03-31
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