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Estimating Soil Water Retention Curve by Inverse Modelling from Combination of In Situ Dynamic Soil Water Content and Soil Potential Data

机译:结合原位动态土壤含水量和土壤势能数据反演估算土壤持水曲线

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Soil water retention curves (SWRCs) are crucial for characterizing soil moisture dynamics, and are particularly relevant in the context of irrigation management. Inverse modelling is one of the methods used to parameterize models representing these curves, which are closest to the field reality. The objective of this study is to estimate the soil hydraulic properties through inverse modelling using the HYDRUS-1D code based on soil moisture and potential data acquired in the field. The in situ SWRCs acquired every 30 min are based on simultaneous soil water content and soil water potential measurements with 10HS and MPS-2 sensors, respectively, in five experimental fields. The fields were planted with drip-irrigated lettuces from February to March 2016 in the Chrey Bak catchment located in the Tonlé Sap Lake region, Cambodia. After calibration of the van Genuchten soil water retention model parameters, we used them to evaluate the performance of HYDRUS-1D to predict soil moisture dynamics in the studied fields. Water flow was reasonably well reproduced in all sites covering a range of soil types (loamy sand and loamy soil) with root mean square errors ranging from 0.02 to 0.03 cm3 cm−3.
机译:土壤水分保持曲线(SWRC)对于表征土壤水分动态至关重要,在灌溉管理中尤其重要。逆建模是用于参数化代表这些曲线的模型的方法之一,这些曲线最接近于现场实际。这项研究的目的是基于土壤水分和在田间获得的潜在数据,通过使用HYDRUS-1D代码进行逆向建模来估算土壤的水力特性。每30分钟采集一次的现场SWRC分别基于在五个实验领域中同时使用10HS和MPS-2传感器对土壤水分和土壤水势进行的测量。从2016年2月至2016年3月,这些田地在Tonlé的Chrey Bak流域种植了滴灌的生菜。柬埔寨萨普湖地区。在对范Genuchten土壤保水模型参数进行校准之后,我们使用它们来评估HYDRUS-1D的性能,以预测研究田间的土壤水分动态。在覆盖一定范围的土壤类型(壤土和壤土)的所有地点,水流都得到了很好的再现,均方根误差在0.02至0.03 cm3 cm?-3之间。

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