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Plant root templated irrigation.

机译:植物根模板灌溉。

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摘要

Due to the decreasing availability of water resources and the increasing competition for water between residential, industrial, and agricultural users, increasing irrigation efficiency, by modern efficient irrigation technologies such as subsurface drip irrigation (SDI), is a pressing concern for agricultural authorities. In this study, a new method is explored for subsurface irrigation; the plant root template structure is used as the subsurface water distribution system. Plants are severed from the stem part and then attached to a pressurized water source such that water may permeate into surrounding soil through the existing buried root system. This pressurized root system then serves as well distributed buried irrigation water source to the other nearby growing plants up taking water. The feasibility of using an existing root structure being able to supply water at rates necessary to satisfy other growing plants was determined by conducting laboratory water permeability studies. Laboratory growth studies were used to directly test the proposed root templated irrigation (RTI) approach. Modeling simulations are also utilized to extend laboratory findings to other scenarios and compare expected water use efficiency benefits associated with this proposed irrigation method with SDI and surface irrigation (SI) practices.;Irrigation study measurements showed that, RTI provides more efficient water use as compared to SI. After 25 days of irrigation, it was shown that RTI of tomato plants provided 1100% increase in growth rate and 54% increase in plant stem density in comparison to SI. Modeling calculations were in qualitative agreement with the experimental studies indicating that RTI has 142% improvement in root water uptake over the SI. A modeling comparison of SDI waster use at various source spacing to RTI water use in loam and clay was performed and results showed that RTI is superior to SDI unless SDI source spacing is narrow (25 cm).
机译:由于水资源的减少以及住宅,工业和农业用户之间对水的竞争日益激烈,通过诸如地下滴灌(SDI)之类的现代高效灌溉技术提高灌溉效率已成为农业当局的紧迫问题。在这项研究中,探索了一种用于地下灌溉的新方法。植物根部模板结构用作地下水分配系统。从茎部切下植物,然后将其附着到加压水源上,以使水可以通过现有的地下根系渗透到周围的土壤中。然后,这种加压的根系作为分布良好的埋地灌溉水源,可以吸收附近的其他正在生长的植物。通过进行实验室水渗透性研究,确定使用能够以满足其他生长植物所需速率供水的现有根系结构的可行性。实验室生长研究用于直接测试建议的根模板灌溉(RTI)方法。建模模拟还用于将实验室发现扩展到其他情况,并比较与SDI和地面灌溉(SI)的这种拟议灌溉方法相关的预期用水效率收益。灌溉研究测量表明,与之相比,RTI提供了更高的用水效率到SI。灌溉25天后,与SI相比,番茄RTI的生长速率提高了1100%,植物茎密度提高了54%。建模计算与实验研究在质量上吻合,表明RTI的根系吸水量比SI改善了142%。进行了不同来源间距下SDI浪费量与壤土和黏土中RTI用水的模型比较,结果表明,除非SDI来源间距窄(25 cm),RTI优于SDI。

著录项

  • 作者单位

    The University of Texas at San Antonio.;

  • 授予单位 The University of Texas at San Antonio.;
  • 学科 Engineering Agricultural.;Engineering Environmental.;Water Resource Management.;Engineering Civil.
  • 学位 M.S.
  • 年度 2012
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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