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A comparative analysis of water application and energy consumption at the irrigated field level

机译:农田灌溉用水与能源消耗的比较分析

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Most government policies and community perception of the irrigation sector promotes the conversion from gravity-fed to pressurised irrigation methods as a way of reducing water consumption by the irrigation sector. However, optimising for one aspect of a system can have unintended resource and environmental consequences e.g. an increase in energy consumption patterns of irrigated crops. Two Australian irrigation areas were studied: a surface-water supplied region in New South Wales; and a groundwater dependent region in South Australia. The water and energy budgets for crop production from land preparation to harvest were quantified on several farms. Converting from flood to pressurised systems resulted in a reduction in water application of between 10% and 66%. However, in the surface-water supplied region, it also resulted in energy consumption being increased by up to 163%. In the groundwater dependent region, energy consumption was reduced by 12% to 44%. There is potential to reduce energy consumption due to increased water use efficiency, resulting in less water being pumped due to efficiency gains. Therefore, to optimise energy and water use, it is recommended that pressurised irrigation systems be used in areas requiring pressurised extraction of groundwater, while efficient gravity based irrigation methods, coupled with good management practices, be promoted in surface-water supplied areas
机译:大多数政府政策和社区对灌溉部门的看法都促使人们从重力灌溉方式转变为加压灌溉方式,以减少灌溉部门的用水量。但是,针对系统的一个方面进行优化可能会产生意想不到的资源和环境后果,例如灌溉作物的能源消耗方式增加。研究了两个澳大利亚的灌溉区:新南威尔士州的地表水供应区;以及南澳大利亚的一个依赖地下水的地区。在几个农场上,对从整地到收获的作物生产所需的水和能源预算进行了量化。从洪水转换为加压系统导致用水量减少了10%至66%。但是,在地表水供应区域,这也导致能源消耗最多增加了163%。在依赖地下水的地区,能源消耗减少了12%至44%。由于用水效率的提高,有可能减少能源消耗,由于效率的提高,抽水量也将减少。因此,为了优化能源和水的使用,建议在需要对地下水进行加压提取的区域中使用加压灌溉系统,同时在地表水供应区域推广基于重力的有效灌溉方法以及良好的管理规范

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