高级检索

    亚高山草甸侵蚀沟土壤入渗特性的空间分异研究

    Study on spatial differentiation of soil infiltration characteristics in subalpine meadow erosion gully

    • 摘要: 目的探究亚高山草甸侵蚀沟不同分段部位土壤入渗特性及其影响因素,为防治亚高山草甸水土流失及控制侵蚀沟发展提供科学依据。方法以亚高山草甸侵蚀沟为研究对象,采用简易双环法测定侵蚀沟不同分段(沟头段、沟中段和沟口段)沟顶、沟壁和沟底部位土壤入渗特征参数,并结合冗余分析(RDA)对侵蚀沟不同分段及部位土壤入渗特征参数与土壤理化性质间的响应关系进行解析。结果侵蚀沟不同分段部位土壤入渗过程表现出较强的一致性,入渗速率变化均呈先快速递减,最后在100 min左右趋于稳定的变化趋势;累积入渗量均随着入渗时间的持续呈现线性增长趋势,其大小关系为:沟顶>沟壁>沟底。侵蚀沟不同分段部位土壤入渗特征参数存在较大差异(p<0.05),沟顶初始入渗率和入渗速率均较大,沟底反之;其次,土壤饱和导水率总体表现为:沟顶>沟底>沟壁。在4种土壤入渗模型中,Horton模型对侵蚀沟不同分段部位土壤入渗过程的拟合效果最好,拟合决定系数R2均在0.96以上。侵蚀沟不同分段部位土壤理化性质存在显著差异性(p<0.05),RDA分析表明,土壤入渗能力与容重、含水率呈显著负相关(p<0.05),与MWD、GMD和有机质含量呈显著正相关(p<0.05);其中,土壤容重和有机质含量对亚高山草甸侵蚀沟不同分段部位土壤入渗特征参数的影响最为显著。结论亚高山草甸侵蚀沟不同分段部位的沟顶土壤容重均较小,孔隙状况良好,且有机质含量丰富,土壤入渗能力最强,在持续性雨水冲刷和入渗水分的影响下加快水力侵蚀和重力侵蚀过程,进而促进侵蚀沟发育;沟头段是亚高山草甸侵蚀沟发育的活跃区,而其沟顶部位是控制亚高山草甸侵蚀沟发育的关键区。

       

      Abstract: ObjectiveTo explore the spatial differentiation of soil infiltration characteristics and its influencing factors in subalpine meadow erosion gully, and to provide scientific basis for the prevention and control of soil erosion and erosion gully in subalpine meadow. Method Taking different parts of subalpine meadow erosion gully as the research object, the soil infiltration characteristic parameters of different parts of gully edge, gully wall and gully floor were determined by simple double ring method, and the response relationship between soil infiltration characteristic parameters and soil physical and chemical properties in different parts was analyzed by redundancy analysis ( RDA ). ResultThe soil infiltration process in different parts of the erosion gully showed a strong consistency. The infiltration rate decreased rapidly with time, and finally tended to be stable at about 100 min. Except for the middle part of the gully, the relationship between the infiltration rate was: gully edge > gully wall > gully floor, and the middle part of the gully was: gully floor > gully edge > gully wall. The cumulative infiltration amount showed a linear growth trend with the duration of infiltration time, and the relationship was: gully edge > gully wall > gully floor. There were significant differences in soil infiltration characteristic parameters among different segmented parts (p < 0.05). The initial infiltration rate and steady infiltration rate at the gully top were relatively high, while the opposite was true at the gully bottom. Secondly, the overall order of saturated hydraulic conductivity of soil was: gully edge > gully floor > gully wall. It can be seen that the top of the ditch is more conducive to increasing rainfall infiltration and accelerating the process of soil erosion. Among the four soil infiltration models, the Horton model had the best fitting effect on the soil infiltration process in different segmented parts of the erosion gully, with the coefficient of determination (R²) all above 0.96. There were significant differences in soil physical and chemical properties among different segmented parts of the erosion gully (p < 0.05), The soil bulk density of the ditch wall and the bottom of the ditch is the largest, and the water content is the largest at the bottom of the ditch; The contents of soil total nitrogen and organic matter were generally as follows: gully middle>gully outlet>gully head, available phosphorus and available potassium are: gully head>gully middle>gully outlet, gully head>gully outlet>gully middle; RDA analysis showed that soil infiltration capacity was significantly negatively correlated with bulk density and water content (p < 0.05), and significantly positively correlated with MWD, GMD and organic matter content (p < 0.05). Among them, soil bulk density and organic matter content had the most significant effect on soil infiltration characteristic parameters in different sections of erosion gully in subalpine meadow. ConclusionThe soil bulk density of the gully top in different sections of the subalpine meadow erosion gully is small, the pore condition is good, and the organic matter content is rich, and the soil infiltration capacity is the strongest. Under the influence of continuous rainwater scouring and infiltration water, the process of hydraulic erosion and gravity erosion is accelerated, and then the development of erosion gully is promoted. The gully head section is an active area for the development of erosion gully in subalpine meadow, and the gully top is the key part to control the development of erosion gully in subalpine meadow.

       

    /

    返回文章
    返回