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首页> 外文期刊>Environmental Geology >The variation of soil temperature and water content of seasonal frozen soil with different vegetation coverage in the headwater region of the Yellow River, China
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The variation of soil temperature and water content of seasonal frozen soil with different vegetation coverage in the headwater region of the Yellow River, China

机译:黄河源区不同植被覆盖下季节冻土的土壤温度和水分变化。

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The variation and distribution of temperature and water moisture in the seasonal frozen soil is an important factor in the study of both the soil water cycle and heat balance within the source region of the Yellow River, especially under the different conditions of vegetation coverage. In this study, the impact of various degrees of vegetation coverage on soil water content and temperature was assessed. Soil moisture (θ_v) and soil temperature (T_s) were monitored on a daily basis. Measurements were made under different vegetation coverage (95, 70-80, 40-50 and 10%) and on both thawed and frozen soils. Contour charts of T_s and θ_v as well as a θ_v-T_s coupling model were developed in order to account for the influence of vegetation cover and the interaction between T_s and _θv. It was observed that soil water content affected both the overall range and trend in the soil temperature. The regression analysis of θ_v versus T_S plots indicated that the soil freezing and thawing processes were significantly affected by vegetation cover changes. Vegetation coverage changes also caused variations in the θ_v-T_s interaction. The effect of soil water content on soil temperature during the freezing period was larger than during the thawing period. Moreover, the soil with higher vegetation coverage retained more water than that with lower coverage. In the process of freezing, the higher vegetation coverage reduced the rate of the reduction in the soil temperature because the thermal capacity of water is higher than that of soil. Areas with higher vegetation coverage also functioned better for the purpose of heat-insulating. This phenomenon may thus play an important role in the environmental protection and effective uses of frozen soil.
机译:季节冻土中温度和水分的变化和分布是研究黄河源区土壤水循环和热平衡的重要因素,特别是在不同植被覆盖条件下。在这项研究中,评估了不同程度的植被覆盖对土壤水分和温度的影响。每天监测土壤湿度(θ_v)和土壤温度(T_s)。在不同的植被覆盖率(95%,70-80%,40-50%和10%)以及融化和冷冻的土壤上进行测量。为了考虑植被覆盖的影响以及T_s和_θv之间的相互作用,开发了T_s和θ_v的等高线图以及θ_v-T_s耦合模型。据观察,土壤含水量影响土壤温度的总体范围和趋势。 θ_v与T_S曲线的回归分析表明,植被覆盖变化显着影响了土壤的冻融过程。植被覆盖度的变化也会引起θ_v-T_s相互作用的变化。冻结期土壤水分含量对土壤温度的影响大于解冻期。此外,植被覆盖率较高的土壤比水分覆盖率较低的土壤保留更多的水分。在冻结过程中,较高的植被覆盖率降低了土壤温度的降低速度,因为水的热容量高于土壤的热容量。为了隔热,植被覆盖率较高的区域也表现更好。因此,这种现象可能在环境保护和有效利用冻土中起重要作用。

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