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首页> 外文期刊>Irrigation Science >Water and nitrate distributions as affected by layered-textural soil and buried dripline depth under subsurface drip fertigation
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Water and nitrate distributions as affected by layered-textural soil and buried dripline depth under subsurface drip fertigation

机译:地下滴灌施肥条件下层状土壤和埋滴线深度对水和硝酸盐分布的影响

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摘要

Laboratory experiments were conducted to investigate the distributions of water and nitrate from a buried dripline discharging an ammonium nitrate solution in uniform and layered-textural soils. Two layered soils, a sandy-over-loam soil (SL) and a loam-sandy-loam soil (LSL), and two uniform soils of sandy (S) and loam (L) were tested. The experimental results demonstrated that dripline depth and layered-textural soil greatly affected water and nitrate distribution. Wetted depth increased with dripline depth and initial soil water content for both uniform and layered soils. The distribution pattern of water in the layered soils was controlled by the layering sequence and the dripline position relative to the interface between two soil layers. Water accumulation occurred in the fine-textural layer of soil for the layered soils. For the sandy-over-loam soil (SL), positioning the dripline below the interface led to much water (89%) moving to the sublayer of loam soil than positioning the dripline above the interface (73%). For the loam-sandy-loam soil (LSL), positioning the dripline in the top layer of loam soil resulted in 77% of water applied distributed in the top layer, while positioning the dripline in the bottom layer of loam soil resulted in 93% of water applied distributed in the bottom layer. Measurements of nitrate distribution showed that nitrate concentration in the proximity of the dripline and of the water accumulation zone approximated the input concentration while nitrate accumulated at the boundary of the wetted volume for both uniform and layered soils tested. The results from this study suggest that the dripline depth should be carefully selected in the design of subsurface drip irrigation systems for layered soils to obtain a target distribution of water and nitrate.
机译:进行了实验室实验,以研究在均匀且层状结构的土壤中排放硝酸铵溶液的地下滴水线中水和硝酸盐的分布。测试了两层土壤,分别是砂质壤土(SL)和壤土-砂壤土(LSL),以及两种均质的沙质土壤(S)和壤土(L)。实验结果表明,滴水线深度和层状质地土壤对水和硝酸盐的分布影响很大。对于均匀土壤和分层土壤,湿润深度随滴水线深度和初始土壤含水量而增加。分层土壤中水分的分布模式由分层顺序和相对于两个土壤层之间的界面的滴水线位置控制。对于层状土壤,水分积累发生在土壤的细纹理层中。对于壤土上的滴灌土壤(SL),将滴水线放置在界面下方会比将滴水线放置在界面上方导致更多的水(89%)转移到壤土的子层。对于壤土-砂壤土-壤土(LSL),将滴水线放置在壤土的顶层会导致77%的水分配到顶层,而将滴水线放置在壤土的底层会导致93%施加的水分布在底层。硝酸盐分布的测量结果表明,对于均匀和分层的土壤,滴水线和集水区附近的硝酸盐浓度接近输入浓度,而硝酸盐则在湿润体积的边界处累积。这项研究的结果表明,在设计用于分层土壤的地下滴灌系统时,应谨慎选择滴水线深度,以获得水和硝酸盐的目标分布。

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