上覆蓄水陶土层对黄土高原土壤水分入渗与蒸发的影响
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S152.7

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国家自然科学基金项目(52079085);山西省水利科学技术研究与推广项目"蓄水陶土调控黄土高原坡面径流关键技术研究"(2022GM016)


Effect of Overlying Water Storage Clay Layer on Soil Water Infiltration and Evaporation on the Loess Plateau
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    摘要:

    为探究蓄水陶土持水能力及改良黄土高原土壤水分运移特性,进行了蓄水陶土持水特性试验及室内上覆蓄水陶土层的土柱入渗和蒸发试验。蓄水陶土设置3个粒径水平(20~30,5,2 mm),土柱试验上覆蓄水陶土层厚5 cm,并以不覆盖蓄水陶土的处理为对照(CK)。结果表明:室温15 ℃下,3种粒径的蓄水陶土40 s内均能达到饱和,且蓄水陶土吸水倍率介于30%~90%,同时释水速率较为缓慢,蓄水陶土持水性较好;就土柱入渗而言,不同粒径的蓄水陶土均显著促进土壤湿润锋运移距离,累积入渗量较CK处理增加40%~60%,且随粒径的增大而增大;在土柱蒸发方面,连续蒸发7天时,不同粒径蓄水陶土均在不同程度上抑制土壤蒸发,且粒径为5 mm时的效果最明显,其累积蒸发量比CK减小67.23%;上覆蓄水陶土层可减少土壤水分散失,上覆不同粒径蓄水陶土的土柱,在10—25 cm土层内的土壤含水率较CK可提高4~5倍。综合考虑土壤入渗及蒸发过程,上覆蓄水陶土的粒径为5 mm时效果最佳。研究结果能够为构建提高黄土高原坡面渗蓄能力的方法提供理论依据。

    Abstract:

    In order to explore water hold capacity of water storage clay and improve soil water movement characteristics of the Loess Plateau, the water retention test of water storage clay and the indoor infiltration and evaporation test of soil column with water storage clay layer were carried out. Three particle size levels (20~30, 5 and 2 mm) were set for water storage clay. The thickness of water storage clay layer over the soil column was 5 cm, and the treatment without water storage clay was used as control (CK). The results showed that when the room temperature was 15 ℃, three particle sizes of water storage clay could reach saturation within 40s, and the water absorption rate was between 30%~90%. Meanwhile, the water release rate was relatively slow, so it indicated that the water retention of water storage clay was better. In terms of the infiltration of the soil column, the migration distance of wetting front was significantly promoted by water storage clay with different particle sizes, and the cumulative infiltration amount increased by 40%~60% compared with CK, and it increased with the increasing of the particle size. In terms of soil column evaporation, after continuous evaporation of seven days, soil evaporation was inhibited in varying degrees by water storage clay with different particle sizes. Moreover, the inhibition effect was the most obvious when the particle size was 5 mm, its accumulated evaporation was 67.23% lower than that of CK. The overlying water storage clay layer could reduce the loss of soil water. The soil moisture content in the 10—25 cm soil layer of the soil column covered by water storage clay with different particle sizes increased by 4~5 times compared with CK. With comprehensive consideration of soil infiltration and evaporation, the effect was the best when the particle size of water storage clay was 5 mm. This study could provide theoretical basis for constructing methods to improve the infiltration and storage capacity of slope on the Loess Plateau.

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常艺睿,马娟娟,孙西欢,郑利剑,郭向红.上覆蓄水陶土层对黄土高原土壤水分入渗与蒸发的影响[J].水土保持学报,2022,36(6):101~109

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  • 收稿日期:2022-04-25
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  • 在线发布日期: 2022-12-01
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