(水工环专辑)旱区不同季节农田表层土壤水盐协同变化差异特征及其动力机制
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中国地质科学院水文地质环境地质研究所

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国家重点研发计划项目(2017YFC0406100);河北省青年科学基金(D2021504040);中国地质调查局基本科研业务费(SK202215);海河流域等重点地区水文地质与水资源调查评价项目(DD20221752)第一作者刘鹏飞(1986-),男,助理研究员,硕士,主要从事干旱区土壤水盐调控理论与关键技术研究。E-mailliupengfei0701@163.com※通讯作者张光辉(1959-),男,二级研究员,博导,长期从事水循环演化与水土资源合理开发利用研究。E-mailHuanjing59@163.com


Differentiation Characteristics and Dynamic Mechanism of Synergistic Changes of Surface Soil Water and Its Salt in Different Seasons in Arid Area
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Institute of Hydrogeology and Environmental Geology,CAGS

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    摘要:

    提要:【研究目的】围绕西北内陆流域地下水浅埋区不同季节表层土壤水盐协同变化差异特征及其动力机制。【研究方法】基于野外原位多要素高频率监测数据的综合分析研究,【研究结果与结论】得出如下认识:(1)春末→夏季→秋初表层土壤含水率越来越小,春末和夏季时段内表层土壤含水率日际变化呈降低趋势,秋初时段内呈小幅增大趋势;春末→夏季→秋初土壤孔隙水电导率(ECp)越来越大,各季节时段内20cm、40cm深度土壤ECp日际变化趋势不同;三个季节时段表层土壤饱和浸取液电导率(ECe)大小变化具有分层差异性,春末→夏季→秋初40cm深度土壤ECe越来越大,20cm深度土壤ECe越来越小,春末、夏季、秋初季节时段内土壤ECe日际变化特点分别为:深稳浅降、深增浅降、深浅均稳。(2)在春末和夏季灌溉能够有效维持表层土壤含水量和淋洗表层土壤盐分,夏季高温条件下蒸散发是导致表层土壤含水率降低和积盐的主要因素,地下位埋深大小是影响地下水向表层土壤的输送水盐的重要和可调控因素,夏秋季节凝结水对浅表20cm深度土壤盐分具有一定的溶滤效应。(3)每年夏季高温时段,尤其该时段每天9:00~19:00,是旱区表层土壤蒸散发及表层土壤积盐最为强烈时段,将地下水位埋深调控至1.9m以下可有效降低表层土壤积盐速率,能够确保表层土壤含盐量不大于农作物耐盐阈值。

    Abstract:

    【Obiective】Focusing on the characteristics and dynamic mechanism of the same variation of surface soil water and its salt in different seasons in groundwater level buried depth area of the northwest inland basin, 【Methods】based on the comprehensive study of a series of in-situ monitoring data for many years,【Results and conclusions】the following conclusions are drawn: Surface soil moisture content of later spring,summer and early autumn are arranged in descending order. Day variation trends of moisture content of 20cm and 40cm depth soil are the same. Moisture content in later spring and summer presents decreasing tendency, which presents increasing tendency in early autumn. Surface soil pore water electronic conductivity later spring,summer and early autumn are arranged in increasing order. Day variation trends of electronic conductivity of 20cm and 40cm depth soil are different;The size changes of electronic conductivity of saturated leach solution (ECe) in three seasons have stratification differences. 40cm depth soil ECe in later spring,summer and early autumn are arranged in increasing order and 20cm depth soil ECe in three seasons are arranged in decreasing order. Daily changes of surface ECe in later spring period are stable in deep layer and present decreasing trend in shallow layer. In summer period daily changes of surface soil ECe present increasing trend in deep layer and present decreasing trend in shallow layer. In early autumn period day changes of surface ECe are stable in deep and shallow layers. (2) Irrigation can maintain moisture content of surface soil and elute its salty in later spring and summer. Evapotranspiration is the major factor of resulting in decreasing of surface soil moisture content and accumulating salt under high temperature in summer. The size of groundwater depth is a regulable factor of influencing the transporting water and salt from groundwater to topsoil. Condensation water has effect of leaching salt of 20cm depth soil. (3) Irrigation is the leading factor of surface soil moisture content in three seasons period. groundwater depth and of surface soil are important influencing factors. Moisture content and salty of 20cm depth soil are easily affected by condensation water. Irrigation is also an effective measure for leaching surface soil salt. Surface soil presents obvious salt deposition when irrigate stops in early autumn. Evapotranspiration is the key factor of surface soil deposition. The biggest increase of electronic conductivity of surface soil occurs in high temperature summer. Groundwater depth is an important and regulable factor. Therefore, the high temperature period from 9:00 to 19:00 every day in summer should be the main period to control and reduce the buried depth of the groundwater in farmland area to more than 1.9m, which can reduce the salt deposition rate and ensure that the salt content of topsoil is smaller than the salt tolerance threshold of crops.

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  • 收稿日期:2022-04-01
  • 最后修改日期:2023-01-09
  • 录用日期:2023-04-30
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