极端暴雨作用下排土场边坡土壤剥蚀率对植被覆盖度的响应
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S157.1

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辽宁省“兴辽英才计划”项目(XLYC2007046)和辽宁工程技术大学双一流学科创新团队建设项目(LNTU20TD-24)资助


Response of Soil Denudation Process to Vegetation Coverage of Dumping Site Under Extreme Rainstorm Conditions
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Supported by the the Liaoning Revitalization Talents Program (No.XLYC2007046) and the Discipline Innovation Team of Liaoning Technical University (No.LNTU20TD-24)

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    摘要:

    排土场是一种典型的人工再塑地貌,由于近年受极端暴雨的影响,边坡极易发生滑坡和泥石流等地质灾害,造成水土流失,导致矿区植被恢复困难。为此,本研究通过人工模拟降雨试验,旨在探究不同降雨强度(50、75、100 mm·h-1)和植被覆盖度(0%、40%、70%)下,排土场坡面土壤剥蚀率随产流时间的变化特征及土壤剥蚀率与水动力学参数之间的定量关系。结果表明,土壤剥蚀率主要受降雨强度及植被覆盖度的影响,对土壤剥蚀率的贡献率分别为50%、36%。3种降雨强度下,植被覆盖度为70%的产流产沙总量较0%分别显著下降18%~27%及84%~87%(P<0.05)。不同植被覆盖度,降雨强度为100 mm·h -1的产流产沙总量较50 mm·h -1分别显著增加1940~2530 mL及66.92~386.14 g(P<0.05)。在0%、40%、70%植被覆盖度下土壤剥蚀率与雷诺数、剪切力和径流功率三个水动力学参数均呈极显著幂函数关系(P<0.01),各水动力学参数间呈极显著线性正相关关系(P<0.01)。就拟合优度而言,不同水力参数植被覆盖度均表现为70%>40%>0%,土壤剥蚀率与径流功率拟合效果最显著,决定系数R2为0.894。该项研究阐明了排土场覆土边坡植被覆盖度与坡面侵蚀动力的关系,揭示了排土场覆土边坡在不同植被覆盖度下的土壤侵蚀过程,研究结果可为矿区排土场植被建设和生态修复提供理论依据。

    Abstract:

    【Objective】 Under the influence of extreme rainstorms, the slope of a dump site(a typical artificial re-plastic landform) is prone to geological disasters such as landslides and debris flow. This has resulted in soil erosion and vegetation restoration difficulties in the nearby mining areas. Therefore, to understand this phenomenon, this study focuses on the soil of an open-pit coal mine as the research object. 【Method】 The soil erosion process on the slope of the dump site was studied using an artificial simulated rainfall test. Runoff and sediment samples were collected when the slope of the dump site began to produce runoff after rainfall. Data on the flow velocity, flow width, flow depth, runoff, sediment content, etc., were collected once every 3 min. The runoff and sediment samples were collected and the volume was measured with a graduated measuring cup. Then, the cups were allowed to stand, and when the upper liquid was static and precipitated, the liquid was removed, and the erosion was measured by drying method (105 ℃). Furthermore, Reynolds number, runoff shear force, runoff power, and soil erosion rate were calculated from the collected data. Based on the data analysis of different rainfall intensities (50, 75, 100 mm·h-1) and vegetation coverage (0%, 40%, and 70%), the change characteristics of slope denudation rate with water flow generation time and the quantitative relationship between soil denudation rate and hydrodynamic parameters were explored. 【Result】 (1) The soil erosion rate increased with the increase of rainfall intensity, and decreased with the increase of vegetation coverage. The contribution rates of the two factors to the soil erosion rate were 50% and 36%, respectively. (2) Under the three rainfall intensifies, the total sediment yield of 70% vegetation coverage decreased significantly by 18%~27% and 84%~87% compared with 0% (P < 0.05), respectively. Compared with 50 mm·h-1, the total sediment yield of 100 mm·h-1 was significantly increased by 1940~2530 mL and 66.92~386.14 g, respectively (P < 0.05). (3) At 0%, 40%, and 70% vegetation coverage, soil denudation rate showed a significant power function relationship with Reynolds number, runoff shear force, and runoff power(P < 0.01) while the hydrodynamic parameters showed a significant linear positive correlation (P < 0.01). In terms of goodness of fit, the vegetation coverage of different hydraulic parameters was 70% > 40% > 0%. The fitting effect between soil denudation rate and runoff power was the most significant, and the determining coefficient R2 was 0.894, followed by runoff shear force. 【Conclusion】 Rainfall intensity is the main factor affecting soil erosion rate and with an increase in rainfall intensity, the rate of soil erosion also increases. The increase in vegetation cover led to a decrease in soil erosion rate. Under 70% vegetation coverage, the regression relationship between runoff power and soil erosion rate was most significant, and this parameter was the best hydraulic index to describe runoff erosion of the mine dump slope.

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熊姝臻,吕刚,李叶鑫,王京行,李坤衡.极端暴雨作用下排土场边坡土壤剥蚀率对植被覆盖度的响应[J].土壤学报,2025,62(5):1271-1281. DOI:10.11766/trxb202409270378 XIONG Shuzhen, Lü Gang, LI Yexin, Wang Jinghang, Li Kunheng. Response of Soil Denudation Process to Vegetation Coverage of Dumping Site Under Extreme Rainstorm Conditions[J]. Acta Pedologica Sinica,2025,62(5):1271-1281.

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  • 收稿日期:2024-09-27
  • 最后修改日期:2025-02-20
  • 录用日期:2025-04-01
  • 在线发布日期: 2025-04-10
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