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Computer Based Geostatistical Strategies in Assessing of Spatial Variability of Agricultural Phosphorus on A Sugarheet Field

机译:基于计算机的地统计学策略评估甘草领域农业磷空间变异性

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Evaluating the computer based geostatiscial methods will eliminate the unequal soil phosphorus variability on agricultural fields. These methods may commonly be useable for simulation of spatial variability of agricultural phosphorus on these areas. It will be valuable for balanced phosphorus consumption by crops and reduced environmental pollution. In this study, topsoil (0-20 cm) and subsoil (20-40 cm) samples based on 20 × 20 m grids were collected from the plots under the sugarbeet plants. Plant samples were also collected from the same plots. The soil and plant samples were prepared for analysis. The data concerning with phosphorus levels were analyzed through Kriging interpolations, which are the computer based geostatistical methods. To achieve cross-validation, distribution percentages were formed by using all Kriging methods. As a result of cross validations, the best optimal method was found to be Simple Kriging interpolation method for each data group (Ordinary RMS, ±6.38, Simple RMS, ±5.98 Universal RMS, ±6.41). By using this method, semivariogram models were tested, and exponential semivariogram model was found as the most suitable model for the experimental data group. Soil and plant phosphorus distribution faces were adequately determined by using selected simple Kriging interpolation method and suitable semivariogram model. These distribution faces were processed by software 3D analyst modul to enable three dimensional mapping.
机译:评估基于计算机的地升方法将消除农业领域的不等土壤磷差异。这些方法通常可以用于模拟这些区域上农业磷的空间变异性。通过作物的平衡消耗和减少环境污染将是有价值的。在该研究中,从甜菜植物下的图中收集基于20×20μm网格的表土(0-20cm)和底层(20-40cm)样品。还从同一地块收集植物样品。制备土壤和植物样品进行分析。通过Kriging插值分析有关磷水平的数据,这是基于计算机的地质稳流方法。为了实现交叉验证,通过使用所有Kriging方法形成分配百分比。由于交叉验证,发现最佳的最佳方法是每个数据组的简单Kriging插值方法(普通RMS,±6.38,简单的RMS,±5.98通用RMS,±6.41)。通过使用该方法,测试半啮盘型模型,并发现指数半造型模型是实验数据组最合适的模型。通过使用所选简单的Kriging插值方法和合适的半啮盘模型,通过使用所选简单的克里格模型来充分确定土壤和植物磷分布面。这些分发面由软件3D分析师Modul处理,以启用三维映射。

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