首页> 外文期刊>Transactions of the ASABE >ENERGY CONSERVATION USING VARIABLE FREQUENCY DRIVES FOR CENTER-PIVOT IRRIGATION SYSTEMS EQUIPPED WITH CORNER WATERING ATTACHMENTS
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ENERGY CONSERVATION USING VARIABLE FREQUENCY DRIVES FOR CENTER-PIVOT IRRIGATION SYSTEMS EQUIPPED WITH CORNER WATERING ATTACHMENTS

机译:使用拐角浇水附件的中心枢轴灌溉系统使用可变频率驱动的节能

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摘要

Corner watering attachments, specifically end guns and corner extensions, attached to center-pivot systems are a common means to irrigate the corners of square fields. The pumping plant is designed to supply water to all sprinklers when the center pivot is irrigating the point of maximum elevation. Most designs include powering the irrigation pump at a fixed speed, which can lead to excessive energy use. Variable-frequency drives (VFDs) were introduced to adjust the pump speed in response to changes in pressure requirements. In this study, three scenarios were analyzed: scenario 1, end gun attached at end of center-pivot lateral; scenario 2, corner extension attached at end of center-pivot lateral; and scenario 3, corner extension attached at end of center-pivot lateral and end gun attached at the end of the corner extension. This study was conducted on 1000 randomly selected center-pivot irrigation systems located in ten counties of Nebraska using GIS-based tools. High-resolution digital elevation maps were used to investigate the impact of flow rate changes and topographical variations on energy requirements. Reductions in the energy required, obtained through varying the pump speed, and annual monetary savings were calculated for each scenario. Average payback periods for VFDs were calculated for each county. The major factors contributing to energy savings and annual returns include large topographical changes, duration of corner attachment operation, hours of operation, and electricity cost. Scenario 3 resulted in the maximum energy reduction, maximum annual monetary savings, and minimum payback period compared to the other scenarios. This approach allows investigation of the potential savings associated with installation of a VFD for center pivots equipped with end guns and corner arm extensions.
机译:连接到中心枢轴系统的拐角浇水附件,特别是端枪和角延伸,是灌溉平方田角的常用方法。当中心枢轴灌溉最大升高点时,泵浦工厂设计用于供水到所有喷头。大多数设计包括以固定速度为灌溉泵供电,这可能导致能量过多。引入可变频率驱动器(VFDS)以响应于压力要求的变化调节泵速度。在这项研究中,分析了三种情况:场景1,附着在中心枢轴侧面末端的端枪;场景2,连接在中心枢轴结束时的转角扩展;和场景3,连接在中心枢轴侧面和端枪端的拐角延伸部,连接在拐角延伸的末端。本研究在1000个随机选择的中心枢轴灌溉系统上,位于内布拉斯加州的十次,使用基于GIS的工具。高分辨率数字高度地图用于调查流速变化的影响和能源要求的地形变化。通过改变泵速度获得所需的能量,以及为每种情况计算每年的货币储蓄。为每个县计算VFD的平均投资回收期。有助于节能和年度返回的主要因素包括大的地形变化,拐角持续时间,操作时间和电力成本。与其他方案相比,方案3导致最高能量减少,最高年度货币储蓄和最低投资回收期。这种方法允许调查与配备有端枪和角臂扩展的中心枢轴的VFD安装相关的潜在节省。

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