...
首页> 外文期刊>Vadose zone journal VZJ >3DMGAR: A Transient Quasi-3D Point-Source Green-Ampt Infiltration and Redistribution Model
【24h】

3DMGAR: A Transient Quasi-3D Point-Source Green-Ampt Infiltration and Redistribution Model

机译:3DMGAR:瞬态准3D点源绿色舒适渗透和再分配模型

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Although Richards' equation (RE) generally provides a good description of infiltration and water redistribution in soils, its numerical solutions can be computationally intensive or suffer from numerical instability and require extensive soil data. Simplified physically based approaches are often used in many practical settings after validation against RE used as a benchmark. The purpose of this research was to develop and test an approximated physical model for simulating transient point-source infiltration and redistribution in a quasi three-dimensional flow domain. An existing three-dimensional Green-Ampt model that simulates only the infiltration phase is extended based on the one-dimensional modified Green-Ampt with redistribution (MGAR) method to calculate the three-dimensional soil water redistribution phase between point-source events. Comparison with the HYDRUS-2D numerical solution of RE showed the proposed model (3DMGAR) to provide satisfactory results for a broad range of soils. The ability of 3DMGAR to accurately and robustly simulate infiltration and redistribution for point-source water application time series is particularly important for cases with difficult Richards solutions, such as in sandy soils, to improve water application efficiency and decrease chemical leaching in many settings like crop fertigation, waste water disposal, and mitigation of climate-induced coastal salinization.
机译:虽然Richards的等式(RE)通常提供良好的渗透和水再分配的良好描述,但其数值解决方案可以计算密集或患有数值不稳定性,并且需要广泛的土壤数据。简化的物理基础方法通常在验证重新用作基准后的许多实际设置中使用。该研究的目的是开发和测试用于模拟瞬态点源渗透和准分配在准立体流域中的近似物理模型。一种现有的三维绿色AMPT模型,即仅模拟渗透阶段,基于具有再分配(MGAR)方法的一维修改的绿色AMPT来扩展,以计算点源事件之间的三维土壤水再分配相位。与RE的Hydrus-2D数值溶液的比较显示了拟议的模型(3DMGAR),为广泛的土壤提供令人满意的结果。 3DMGAR准确且鲁棒地模拟渗透和点源水应用时间序列再分配的能力对于困难的理查兹解决方案(例如沙质土壤)的情况尤为重要,以提高水应用效率,并在许多环境中降低化学浸出灌溉,废水处理和气候沿海盐渍化的缓解。

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