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首页> 外文期刊>Computers and Electronics in Agriculture >Modeling water infiltration in a large layered soil column with a modified Green-Ampt model and HYDRUS-1D
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Modeling water infiltration in a large layered soil column with a modified Green-Ampt model and HYDRUS-1D

机译:使用改进的Green-Ampt模型和HYDRUS-1D模拟大层土壤柱中的水分入渗

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摘要

A modified Green-Ampt model was developed in this study to describe water infiltration through a 300-cm long and five-layered soil column. In the modified Green-Ampt model, a saturation coefficient was introduced to determine the water content and hydraulic conductivity of the wetted zone. The saturation coefficient was determined by the ratio between measured moisture volume and total saturated moisture volume of the wetted zone, and it should be less than 1. In this experiment, the calculated saturation coefficient was 0.8. The wetting front suction head was determined by Bouwer and Neuman methods. For comparison, the infiltration process was also simulated by traditional Green-Ampt model and HYDRUS-1D code which was based on the Richards equation. It was found that the traditional Green-Ampt model was unable to describe the infiltration process adequately. The HYDRUS-1D provided good simulation results of infiltration rate and accumulative infiltration. However, it was difficult to track the movement of wetting front along the soil profile and the corresponding root mean square error (RMSE) value was up to 57.17cm. For the modified Green-Ampt model with Bouwer method, the RMSE values of simulated infiltration rate, accumulative infiltration and wetting front depth were 2.01E3cm/min, 1.28 and 8.29cm, respectively, which were much smaller than those of traditional Green-Ampt model and HYDRUS-1D. Moreover, the modified Green-Ampt model with Bouwer method could adequately capture the infiltration rate, the accumulative infiltration and the movement process of wetting front in the large layered soil column. Therefore, it appears that the modified Green-Ampt model presented in this study is a highly effective approach to simulate water infiltration in layered soils.
机译:在本研究中开发了一种改良的Green-Ampt模型,以描述水通过300厘米长的五层土壤柱的渗透。在改进的Green-Ampt模型中,引入饱和系数来确定湿区的水含量和水力传导率。饱和系数由测得的湿润区域的湿气量与总饱和湿气量之比确定,且应小于1。在本实验中,计算得出的饱和系数为0.8。湿润的前吸头通过Bouwer和Neuman方法确定。为了进行比较,还使用传统的Green-Ampt模型和基于Richards方程的HYDRUS-1D代码模拟了渗透过程。发现传统的Green-Ampt模型无法充分描述渗透过程。 HYDRUS-1D提供了良好的入渗速率和累积入渗模拟结果。但是,很难跟踪润湿锋沿土壤剖面的运动,相应的均方根误差(RMSE)值高达57.17cm。对于采用Bouwer方法的改进型Green-Ampt模型,模拟入渗速率,累积入渗量和湿润前沿深度的RMSE值分别为2.01E3cm / min,1.28和8.29cm,比传统的Green-Ampt模型要小得多。和HYDRUS-1D。此外,采用Bouwer方法改进的Green-Ampt模型可以充分捕捉大层土柱中的入渗速率,累积入渗量和湿润锋的运动过程。因此,看来本研究中提出的改进的Green-Ampt模型是模拟层状土壤中水分入渗的高效方法。

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