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Inverse modeling approach for determining soil hydraulic properties as affected by application of cattle manure

机译:用于确定受牛粪影响的土壤水力学特性的逆建模方法

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Numerical codes are extensively used in the modeling of water and solute transport in the vadose zone. The application of these codes depends on knowledge of soil hydraulic properties such as soil water retention curve and hydraulic conductivity. Application of cattle manure to the soil can increase soil organic matter (SOM) contents. Increases in SOM associated with changes in the structure and adsorption properties of soil and, thus, their hydraulic properties. In this study the effect of cattle manure on soil hydraulic properties was investigated using inverse method. Applied inverse method was based on Levenberg-Marquart optimization algorithm to estimate hydraulic properties of soil in transient condition using C++ programming language along with forward model (HydroGeoSphere) as a numerical code. Nine iron cylinders of 57 cm in inner diameter and about 40 cm in height were filled with Sandy clay loam soil of 30 cm in height. Cattle manure applied at 0, 30, and 60 Mg/ha at three replications in a completely random design. One year after cattle manure application, saturated hydraulic conductivity, porosity, and water retention curve parameters (van Genuchten function, α and β) were estimated using inverse method. Statistical analysis showed that the automatic calibration is sensitive to α more than the other parameters. The results showed that porosity, saturated hydraulic conductivity, residual water content, α and β increased significantly (P value is less than 0.05) with application 30 and 60 Mg/ha cattle manure. But there was no significant difference (P value is less than 0.05) in β between application of 30 and 60 Mg/ha cattle manure. The study also indicated that α was 25.0% and 50.0% higher and β was 9.6% and 12.6% lower than control treatment in 30 and 60 Mg/ha treatments. In addition, application cattle manure showed positive effect on hydraulic parameters of soil. Keywords: soil hydraulic property, parameter estimation, inverse method, HydroGeoSphere, unsaturated flow, cattle manure DOI: 10.3965/j.ijabe.20140702.004 Citation: Ali Rasoulzadeh, Ali Yaghoubi. Inverse modeling approach for determining soil hydraulic properties as affected by application of cattle manure. Int J Agric & Biol Eng, 2014; 7(2): 27-35.
机译:在渗流区内水和溶质运移的建模中广泛使用数字代码。这些规范的应用取决于对土壤水力特性的了解,例如土壤保水曲线和水力传导率。将牛粪施用到土壤中可增加土壤有机质(SOM)含量。 SOM的增加与土壤结构和吸附特性的变化有关,从而与土壤的水硬特性有关。在这项研究中,使用逆方法研究了牛粪对土壤水力学特性的影响。应用的逆方法基于Levenberg-Marquart优化算法,使用C ++编程语言以及正向模型(HydroGeoSphere)作为数字代码来估算瞬态条件下的土壤水力特性。内径为57厘米,高约40厘米的9个铁瓶中装有30厘米高的桑迪粘土壤土。牛粪肥以完全随机的设计在三个重复中分别以0、30和60 Mg / ha施用。施用牛粪一年后,使用逆方法估算了饱和导水率,孔隙率和保水曲线参数(van Genuchten函数,α和β)。统计分析表明,自动校准比其他参数对α更为敏感。结果表明,施用30和60 Mg / ha牛粪肥后,孔隙率,饱和导水率,残留水含量,α和β显着增加(P值小于0.05)。但施用30和60 Mg / ha牛粪之间的β值没有显着差异(P值小于0.05)。研究还表明,在30和60 Mg / ha处理中,α分别比对照处理高25.0%和50.0%,β降低9.6%和12.6%。此外,施用牛粪肥对土壤水力参数具有积极作用。关键词:土壤水力学特性,参数估计,反演方法,HydroGeoSphere,非饱和流,牛粪DOI:10.3965 / j.ijabe.20140702.004引用:Ali Rasoulzadeh,Ali Yaghoubi。用于确定受牛粪施用影响的土壤水力学特性的逆建模方法。农业与生物工程学杂志,2014; 7(2):27-35。

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