Multi-scale assimilation of root zone soil water predictions

被引:14
作者
Lu, Haishen [1 ]
Yu, Zhongbo [2 ]
Horton, Robert [3 ]
Zhu, Yonghua [1 ]
Wang, Zhenlong [4 ]
Hao, Zhenchun [1 ]
Xiang, Long [1 ]
机构
[1] Hohai Univ, State Key Lab Hydrol Water Resources & Hydraul En, Nanjing 210098, Peoples R China
[2] Univ Nevada, Dept Geosci, Las Vegas, NV 89154 USA
[3] Iowa State Univ, Dept Agron, Ames, IA 50011 USA
[4] Key Lab Water Resources Anhui Prov, Bengbu 233000, Peoples R China
基金
中国国家自然科学基金;
关键词
surface soil water content; root zone soil water content; Richards equation; multi-scale assimilation method; particle swarm optimisation algorithm; CONSERVATIVE NUMERICAL-SOLUTIONS; LAND DATA ASSIMILATION; HYDRAULIC PARAMETERS; MOISTURE DATA; SURFACE; MODEL; TEMPERATURE; CALIBRATION; TRANSPORT; EQUATION;
D O I
10.1002/hyp.8034
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
When hydrology model parameters are determined, a traditional data assimilation method (such as Kalman filter) and a hydrology model can estimate the root zone soil water with uncertain state variables (such as initial soil water content). The simulated result can be quite good. However, when a key soil hydraulic property, such as the saturated hydraulic conductivity, is overestimated or underestimated, the traditional soil water assimilation process will produce a persistent bias in its predictions. In this paper, we present and demonstrate a new multi-scale assimilation method by combining the direct insertion assimilation method, particle swarm optimisation (PSO) algorithm and Richards equation. We study the possibility of estimating root zone soil water with a multi-scale assimilation method by using observed in situ data from the Wudaogou experiment station, Huaihe River Basin, China. The results indicate there is a persistent bias between simulated and observed values when the direct insertion assimilation surface soil water content is used to estimate root zone soil water contents. Using a multi-scale assimilation method (PSO algorithm and direct insertion assimilation) and an assumed bottom boundary condition, the results show some obvious improvement, but the root mean square error is still relatively large. When the bottom boundary condition is similar to the actual situation, the multi-scale assimilation method can well represent the root zone soil water content. The results indicate that the method is useful in estimating root zone soil water when available soil water data are limited to the surface layer and the initial soil water content even when the soil hydraulic conductivities are uncertain. Copyright (C) 2011 John Wiley & Sons, Ltd.
引用
收藏
页码:3158 / 3172
页数:15
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