...
首页> 外文期刊>African Journal of Agricultural Research >Numerical solution of the Boussinesq equation: Application to the agricultural drainage
【24h】

Numerical solution of the Boussinesq equation: Application to the agricultural drainage

机译:Boussinesq方程的数值解:在农业排水中的应用

获取原文

摘要

Water flow to subterranean drains is described by the Boussinesq equation. To solve this equation, analytical solutions comprising constants, such as the transmissivity and drainable porosity have been developed; however, these solutions assume that free surface of the water falls instantly over the drains. The aim of this investigation is to present a finite difference solution of the differential equation using a drainable porosity variable and a fractal radiation condition. Here, two schemes are presented: the first one, with an explicit head and drainable porosity, both joined by a functional relationship, called mixed formulation; and the second one, called head formulation, with only the head. By using a lineal analytical solution, both methods have been validated and the nonlinear part was stable and brief. The proposed numerical solution is useful for the hydraulic characterization of soils with inverse modelation and to improve the designs of agricultural drainage systems, when taking into consideration that the assumptions of the classical solution have been eliminated. To evaluate the descriptive capacity of the numerical solution, these solutions were used to describe a drainage experiment performed in the laboratory. The results show that the cumulative drained depth is well represented by these solutions with the fractal radiation and the variable drainable porosity.?Key?words:?Fractal radiation condition, variable drainable porosity, analytical solution, mixed formulation, head formulation.
机译:Boussinesq方程描述了流向地下排水管的水量。为了求解该方程,已经开发了包括常数的解析解,例如透射率和可排水孔隙率。但是,这些解决方案假定水的自由表面立即落在排水管上方。这项研究的目的是提出一种利用可排空孔隙度变量和分形辐射条件的微分方程的有限差分解决方案。在这里,提出了两种方案:第一种方案,具有明确的压头和可排水的孔隙度,两者通过功能关系结合在一起,称为混合配方;第二个叫做头部公式,只有头部。通过使用线性分析解决方案,两种方法都得到了验证,非线性部分稳定且简短。考虑到已经消除了经典解的假设,所提出的数值解对于利用逆模型进行土壤的水力表征和改善农业排水系统的设计非常有用。为了评估数字解的描述能力,这些解用于描述在实验室中进行的排水实验。结果表明,利用分形辐射和可变的孔隙度,这些解可以很好地代表累积的排水深度。关键词:分形辐射条件,可变的孔隙度,分析溶液,混合配方,顶头配方。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号