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Estimation and evaluation of dynamic properties as indicators of changes on soil structure in sugarcane fields of Sao Paulo State - Brazil.

机译:动态特性的评估和评估,作为巴西圣保罗州甘蔗田土壤结构变化的指标。

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The indiscriminate management and use of soils without moisture control has changed the structure of it due to the increment of the traffic by agricultural machines through the years, causing in consequence, a soil compaction and yield reduction in the areas of intensive traffic. The purpose of this work was to estimate and to evaluate the performance of preconsolidation pressure of the soil and shear stress as indicators of changes on soil structure in fields cropped with sugarcane, as well as the impact of management processes in an Eutrorthox soil structure located in Sao Paulo State. The experimental field was located in Piracicaba's rural area (Sao Paulo State, Brazil) and has been cropped with sugarcane, in the second harvest cycle. The soil was classified by EMBRAPA [EMBRAPA, 1999. Centro Nacional de Pesquisa de Solos. Sistema Brasileiro de Classificacao de Solos, Embrapa, Brasilia, 412 pp.] as an Eutrorthox. Undisturbed samples were collected and georeferenced in a grid of 60 m x 60 m from two depths: 0-0.10 m (superficial layer - SL) and in the layer of greatest mechanical resistance (LGMR), previously identified by cone index (CI). The investigated variables were pressure preconsolidation ( sigma p), apparent cohesion (c) and internal friction angle ( phi ). The conclusions from the results were that the SLSC was predicted satisfactorily from sigma p as a function of soil moisture; thus, decisions about machinery size and loading (contact pressures) can be taken. Apparent cohesion (c), internal friction angle ( phi ) and the Coulomb equation were significantly altered by traffic intensity. The sigma p, c and phi maps were shown to be important tools to localize and visualize soil compaction and mechanical resistance zones. They constitute a valuable resource to evaluate the traffic impact in areas cropped with sugarcane in State of Sao Paulo, Brazil.
机译:由于多年来农业机械运输量的增加,无节制地对土壤的不加区别的管理和使用改变了土壤的结构,结果导致了密集运输地区的土壤压实和单产下降。这项工作的目的是评估和评估土壤的预固结压力和剪切应力的性能,这些性能是改变甘蔗种植田地土壤结构变化的指标,以及管理过程对位于加拿大的Eutrthoxox土壤结构的影响。圣保罗州。该试验田位于Piracicaba的农村地区(巴西圣保罗州),在第二个收获周期中已种植了甘蔗。 EMBRAPA [EMBRAPA,1999年对土壤进行了分类。Pesquisade Solos国家中心。 Sistema Brasileiro de Classificacao de Solos,巴西利亚,恩布拉帕,412页]。在60 m x 60 m的网格中,从两个深度0-0.10 m(表层-SL)和最大机械阻力(LGMR)层(先前通过圆锥指数(CI)识别)中采集未受干扰的样品并进行地理参考。研究的变量是压力预固结(sigma p ),表观内聚力( c )和内摩擦角(phi)。从结果得出的结论是,根据土壤水分的函数sigma p 可以令人满意地预测SLSC。因此,可以决定机械尺寸和负载(接触压力)。交通强度明显改变了表观内聚力( c ),内摩擦角(phi)和库仑方程。 sigma p , c 和phi映射是定位和可视化土壤压实度和机械阻力区的重要工具。它们是评估巴西圣保罗州种植甘蔗地区交通影响的宝贵资源。

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