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Feasibility evaluation of solar photovoltaic pumping irrigation system based on analysis of dynamic variation of groundwater table

机译:基于地下水位动态变化分析的太阳能光伏抽水灌溉系统可行性评估

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摘要

Solar photovoltaic (PV) pumping irrigation system has become a widely applied solar energy technology over the past decades, in which the pump is driven by electricity produced by solar energy and lifts groundwater or surface water to irrigate the crop or grassland for agriculture. Qinghai Province, located in the Qinghai-Tibet Plateau, features abundant solar energy, but the problem of local grassland degradation and ecological deterioration has become increasingly serious. Using the clean solar energy to pump groundwater or surface water is of great significance for grassland recovery, environment protection and ecological restoration. In this study, we selected a demonstration site (with an area of 3.15 ha) in Tibetan Autonomous Prefecture of Golog at the southern part of Qinghai Province and evaluated the feasibility and performance of the PV pumping irrigation system at field scale. Firstly, water demand of pasture was predicted in different hydrological level years to determine water deficiency, which should be replenished mainly by pumping groundwater according to the local water resources conditions. Secondly, through modeling the unsteady flow of partially penetrating well in unconfined aquifer, we analyzed the change of groundwater table of the pumping well in both irrigation season and non-irrigation season, and then evaluated whether the groundwater resources can satisfy the pumping water demand for the growth of grassland. Results show that groundwater resources in the demonstration area are satisfactory and water yield in the pumping well can generally fulfill the water demand of grassland. Finally, based on balance analysis between solar energy supply and demand, a set of technical parameters were given to design the PV pumping irrigation system in the demonstration area. We also made the benefit analysis for the PV pumping irrigation system. It is concluded that, the PV system has good economic and ecological performance in the demonstration site compared to the diesel engine irrigation system, showing promising prospects to be popularized in Western China at large scale.
机译:在过去的几十年中,太阳能光伏(PV)抽水灌溉系统已成为一种广泛应用的太阳能技术,其中,泵由太阳能产生的电力驱动,并提起地下水或地表水以灌溉农作物或草地以供农业使用。青藏高原地处青藏高原,拥有丰富的太阳能,但是当地草地退化和生态恶化的问题日益严重。利用清洁的太阳能泵送地下水或地表水对草原恢复,环境保护和生态恢复具有重要意义。在这项研究中,我们在青海省南部的戈洛藏族自治州选择了一个示范点(面积为3.15公顷),并在实地规模上评估了光伏抽水灌溉系统的可行性和性能。首先,通过预测不同水文学年的牧场需水量来确定缺水量,应根据当地水资源条件主要通过抽水补充水量。其次,通过对无限制含水层中的部分渗透井的非恒定流进行建模,分析了灌溉季节和非灌溉季节抽水井地下水位的变化,进而评价地下水资源是否满足抽水需求。草原的成长。结果表明,示范区地下水资源良好,抽水井出水量一般可以满足草地的需水量。最后,在太阳能供需平衡分析的基础上,给出了一套技术参数来设计示范区的光伏抽水灌溉系统。我们还对光伏抽水灌溉系统进行了收益分析。结论是,与柴油机灌溉系统相比,光伏发电系统在示范点具有良好的经济和生态性能,在中国西部大规模推广具有广阔的前景。

著录项

  • 来源
    《Applied Energy》 |2013年第5期|182-193|共12页
  • 作者单位

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

    Royal Institute of Technology, TR 50, SE-100 44 Stockholm. Sweden;

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

    State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research. Beijing 100038, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PV pumping irrigation system; grassland; water demand; groundwater resources; unsteady flow of partially penetrating well; economic benefit;

    机译:光伏抽水灌溉系统;草原;需水量地下水资源;部分渗透井不稳定流动;经济效益;
  • 入库时间 2022-08-18 00:09:27

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