...
首页> 外文期刊>Applied Engineering in Agriculture >Collector Design for Measuring High-Intensity Time Variant Sprinkler Application Rates
【24h】

Collector Design for Measuring High-Intensity Time Variant Sprinkler Application Rates

机译:用于测量高强度时变喷头使用率的收集器设计

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Peak water application rate in relation to soil water infiltration rate and soil surface storage capacity is important in the design of center pivot sprinkler irrigation systems for efficient irrigation and soil erosion control. Measurement of application rates of center pivot irrigation systems has traditionally used tipping bucket rain gauges. Calculation of application rate from tipping bucket rain gauge measurements restricts computed application rate to a discrete multiple of the rain gauge resolution and time interval. This limits the resolution of application rate measurement, especially for time intervals less than 15 min. A collector was designed to measure time variant high-intensity sprinkler application rates under field conditions with greater resolution than a tipping bucket rain gauge. The collector funneled water into a 50-mm (2-in.) diameter tube providing a depth multiplication factor of 18.26:1. The depth of water in the tube was measured with a low pressure piezo-resistive pressure sensor connected to a differential amplifier circuit. Combination of the depth multiplication factor of the collector and differential amplifier circuit provided a collector resolution of 1.4 mm/mV (0.055 in./mV). A data logger was used to record water depth in the collector tube during an irrigation event. A digital differentiating filter was designed and used to reduce the effect of random electrical noise in the sensor output on calculated application rate. The collector was tested in the laboratory and under field conditions simulating center pivot sprinkler irrigation. For a range in application rates from 15 to 200 mm/h (0.7 to 8 in./h) and application depths from 20 to 35 mm (0.8 to 1.4 in.) in the laboratory, the maximum collector error was 2.1 mm/h (0.08 in./h). Collector-measured application rate patterns under field conditions were well-correlated to simulated application rate patterns using radial application rate profiles for the sprinklers tested. Collector-measured peak application rates were not significantly different from those predicted by the Kincaid (2005) model. The collector functioned as designed in field tests and provided an effective and efficient means of measuring high-intensity application rates from center pivot irrigation systems under field conditions
机译:峰值施水量与土壤水分渗透率和土壤表层储水量有关,对于设计中心枢轴喷灌系统以实现有效灌溉和土壤侵蚀控制至关重要。传统上,对中心枢轴灌溉系统的使用率进行测量的方法是使用翻斗式雨量计。根据翻斗式雨量计测量值计算施用量,将计算出的施用量限制为雨量计分辨率和时间间隔的离散倍数。这限制了施用率测量的分辨率,尤其是对于少于15分钟的时间间隔。设计了一个收集器,以在田间条件下测量时变高强度喷头的施用率,其分辨率比翻斗式雨量计大。收集器将水倒入直径为50毫米(2英寸)的管中,从而提供了18.26:1的深度倍增系数。用连接到差分放大器电路的低压压阻式压力传感器测量管中的水深。集电极和差分放大器电路的深度倍增系数的组合提供了1.4 mm / mV(0.055 in./mV)的集电极分辨率。在灌溉事件期间,使用数据记录器记录收集管中的水深。设计了一个数字微分滤波器,用于减少传感器输出中随机电噪声对计算出的应用率的影响。该收集器在实验室中进行了测试,并在模拟中心枢轴喷头灌溉的野外条件下进行了测试。对于实验室中15至200 mm / h(0.7至8 in./h)的应用速率范围和20至35 mm(0.8至1.4 in。)的应用深度,最大收集器误差为2.1 mm / h (0.08英寸/小时)。收集器在野外条件下测得的施用率模式与使用径向洒水率曲线进行模拟的施用率模式具有良好的相关性。收集器测量的峰值施用率与Kincaid(2005)模型预测的峰值施用率没有显着差异。该收集器的功能与现场测试中的设计相同,并提供了一种有效的方法,可以在现场条件下测量中心枢轴灌溉系统的高强度施用量

著录项

  • 来源
    《Applied Engineering in Agriculture》 |2010年第1期|p.85-95|共11页
  • 作者单位

    their institutions and does not imply approval of product to the exclusion of others that may be suitable. The authors are Bradley A. King, ASABE Member Engineer, Research Agricultural Engineer, USDA ARS NWISRL, Kimberly, Idaho;

    Richard W. Wall, Professor, Department of Electrical and Computer Engineering, University of Idaho, Moscow, Idaho;

    Troy W. Winward, Hydrologic Technician, and David L. Bjorneberg, ASABE Member Engineer, Supervisory Research Agricultural Engineer, USDA ARS NWISRL, Kimberly Idaho. Corresponding author: Bradley A. King, USDA ARS NWISRL, 3793 N. 3600 E., Kimberly, ID 83341-5076;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sprinkler irrigation; Center pivot; Application rate;

    机译:喷灌;中心枢轴;应用率;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号