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Using EM and VERIS technology to assess land suitability for orchard and vineyard development

机译:使用EM和VERIS技术评估土地是否适合果园和葡萄园发展

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Orchard and vineyard producers conduct preplant site evaluations to help prevent planting permanent tree and vine crops on lands where the crop will not perform to its highest potential or attain its full life expectancy. Physical soil characteristics within specific soil profiles and spatially throughout an orchard influence decisions on land preparation, irrigation system selection, horticultural choices, and nutrient management. Producers depend on soil surveys to help them understand the soil characteristics of the land and may be interested in technology that provides additional information. Electromagnetic induction (EM38) and four-probe soil resistance sensors (VERIS) are being used in combination with global positioning systems to map spatial variability of soils using apparent soil electrical conductivity (ECa). The hypothesis evaluated in this study is whether rapid, in situ, and relatively low-cost methods of measuring ECa (EM38 and VERIS) can effectively identify and map physical soil variability in non-saline soils. The supposition is that in non-saline soils, ECa levels will relate well to soil texture and water-holding capacity and can be used to map physical soil variability. In turn, the information can be used to guide decisions on preplant tillage, irrigation system design, water and nutritional management, and other horticultural considerations. Two sites in the Sacramento Valley were mapped each with EM38 and VERIS methods. Site-specific management zones were identified by each provider on ECa maps for each site, and then soil samples were collected by University of California researchers to verify these zones. Results showed that on non-saline soils, ECa measured with both EM38 and VERIS correlate with physical soil properties such as gravel, sand, silt, and clay content but the relationship between conductivity and these physical soil properties varied from moderately strong to weak. The strength of the correlation may be affected by several factors including how dominant soil texture is on conductivity relative to other soil properties and on methods of equipment operation, data analysis and interpretation. Overall, the commercial providers of ECa surveys in this study delivered reasonable levels of accuracy that were consistent with results reported in previous studies. At one site, an ECa map developed with VERIS provided more detail on physical soil variability to supplement published soil surveys and aided in the planning and development of a walnut orchard. At a second site, almond yield appeared to correlate well with distinctly different soil zones identified with EM38 mapping.
机译:果园和葡萄园生产者进行种植前现场评估,以帮助防止在作物无法发挥最大潜力或无法达到其预期寿命的土地上种植永久性树木和藤本植物。在特定土壤剖面内以及整个果园中的空间土壤物理特性会影响土地整备,灌溉系统选择,园艺选择和养分管理的决策。生产者依靠土壤调查来帮助他们了解土地的土壤特征,并且可能对提供附加信息的技术感兴趣。电磁感应(EM38)和四探针土壤电阻传感器(VERIS)与全球定位系统结合使用,可使用表观土壤电导率(ECa)绘制土壤的空间变异性。在这项研究中评估的假设是,快速,原位和相对低成本的ECa测量方法(EM38和VERIS)是否可以有效地识别和绘制非盐渍土壤的物理土壤变异性。假设是在非盐渍土壤中,ECa水平与土壤质地和持水能力密切相关,可用于绘制土壤物理变异性的图。反过来,这些信息可用于指导有关种植前耕作,灌溉系统设计,水和营养管理以及其他园艺注意事项的决策。萨克拉曼多河谷的两个地点分别用EM38和VERIS方法绘制了地图。每个提供商在每个站点的ECa地图上确定了特定于站点的管理区域,然后加利福尼亚大学研究人员收集了土壤样本以验证这些区域。结果表明,在非盐渍土壤上,用EM38和VERIS测得的ECa与诸如砂砾,沙子,淤泥和粘土含量等物理土壤特性相关,但是电导率与这些物理土壤特性之间的关系从中强到弱变化。相关性的强度可能受到几个因素的影响,包括主要的土壤质地相对于其他土壤特性的电导率以及设备操作,数据分析和解释的方法。总体而言,本研究中的ECa调查的商业提供商提供了合理的准确度,与先前研究中报告的结果一致。在一个站点上,由VERIS开发的ECa地图提供了有关土壤物理变异性的更多详细信息,以补充已发布的土壤调查结果,并有助于核桃果园的规划和开发。在第二个位置,杏仁产量似乎与通过EM38测绘鉴定出的截然不同的土壤带密切相关。

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