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Modeling two-dimensional infiltration from furrows.

机译:模拟犁沟的二维渗透。

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摘要

Numerical simulations were performed to study two-dimensional infiltration from furrows. The simulations were carried out using the models SWMS_2D, HYDRUS-2D and HYDRUS-1D. The first model was used to evaluate the individual effect of soil and furrow parameters on cumulative infiltration and deep seepage. Cumulative infiltration was found to be more sensitive to saturated hydraulic conductivity, wetted perimeter and furrow spacing than the other parameters for relatively long times, while cumulative deep seepage was more sensitive to the same parameters except to the furrow spacing.; It was verified that two-dimensional cumulative infiltration can be approximated using one-dimensional models, for example HYDRUS-1D, by combining the vertical and horizontal infiltrations. The two-dimensional cumulative infiltration is underpredicted by no more than 35% using this calculation. When steady state is reached the steady infiltration rate may be linearly related to the depth of the furrow. As a result, steady infiltration rate is dependent only on type of soil, water depth in the furrow and furrow width.; Broocks-Corey soil hydraulic parameters were matched to the van Genuchten parameters by four different procedures. The method based on matching sorptivities produced the closest results to the van Genuchten solution for one- and two-dimensional cumulative infiltration. However, cumulative deep seepage was not accurately simulated. The SCS infiltration parameters were also matched but using an inverse problem methodology. The parameters obtained described cumulative infiltration reasonably well.
机译:进行数值模拟以研究犁沟的二维渗透。使用模型SWMS_2D,HYDRUS-2D和HYDRUS-1D进行了仿真。第一个模型用于评估土壤和犁沟参数对累积入渗和深层渗流的单独影响。在相对较长的时间内,累积入渗对饱和导水率,湿润周长和犁沟间距比其他参数更敏感,而累积深层渗漏对相同参数除了犁沟间距更敏感。证实了可以使用一维模型(例如HYDRUS-1D)通过组合垂直和水平渗透来近似二维累积渗透。使用此计算,二维累积渗透被低估了不超过35%。当达到稳态时,稳态渗透率可能与犁沟的深度成线性关系。结果,稳定的渗透率仅取决于土壤类型,犁沟中的水深和犁沟宽度。 Broocks-Corey土壤水力参数通过四种不同的程序与van Genuchten参数匹配。对于一维和二维累积入渗,基于匹配吸附度的方法产生的结果与van Genuchten解最接近。但是,累积的深层渗流没有得到精确的模拟。 SCS渗透参数也被匹配,但是使用反问题方法。获得的参数描述了很好的累积渗透。

著录项

  • 作者

    Pimentel-Lopez, Jose.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

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