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Accuracy of Round Meter Gates for On-Farm Deliveries

机译:用于农场交付的圆形米门的准确性

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摘要

Recent California legislation requires irrigation water agencies larger than 25,000 acres to measure volumetric water deliveries within specified levels of relative uncertainty. Although the meter gate is one of the most widely used flow measurement devices in California, little investigation has been conducted into the accuracy, limitations, and uncertainties of the rating tables developed over 60 years ago. A meter gate testing facility was constructed at the Cal Poly Irrigation Training and Research Center’s Water Resources Facility capable of testing gates up to 0.76 m (30 in.). The facility was constructed with gates oriented perpendicular to the supply channel flow to match actual field conditions. Three commonly used gate sizes of 0.30 m (12 in.), 0.46 m (18 in.), and 0.61 m (24 in.) were examined under a variety of upstream head, head loss, and gate opening conditions. Based on the limitations, guidelines are included to assist users and lower the uncertainty of these devices. It was found that meter gates can be an accurate flow measurement device if installed and operated correctly according to guidelines provided. Limitations were found: upstream head above the top of the turnout pipe must be maintained equivalent to at least half the pipe diameter, and gate openings less than 25% open can lead to large uncertainties. Using the new rating tables for the three gates examined, the relative uncertainty is less than ±5to ±7%at the 95% confidence level with the new rating tables, as compared with less than ±10%at a 95% confidence level using common published tables. Uncertainties are lower than the required estimated 10.7% instantaneous flow rate uncertainty that will be needed to meet current SB X7-7 requirements.
机译:最近的加州立法需要大于25,000英亩的灌溉水机构,以测量特定水平的相对不确定性的体积水交付。虽然仪表门是加利福尼亚州最广泛使用的流量测量装置之一,但已经进入了60多年前开发的评级表的准确性,限制和不确定性的几乎没有调查。米门测试设施是在CAL Poly灌溉培训和研究中心的水资源机构中构建,能够测试高达0.76米(30英寸)的栅极。该设施由垂直于供应通道流定向的栅极构造,以匹配实际情况。三种常用的栅极尺寸为0.30米(12英寸),0.46米(18英寸)和0.61米(24英寸)。在各种上游头部,头部损耗和门口条件下检查0.61米(24英寸)。根据限制,包括指南,以帮助用户并降低这些设备的不确定性。如果根据提供的指导原则,可以确定仪表栅极可以是准确的流量测量装置。发现了限制:车岔管顶部上游的头部必须保持相当于管道直径的至少一半,浇口开口不到25%的开口可能导致大的不确定因素。使用新的评级表进行检查的三个门,相对不确定性在95%置信水平与新的评级表中的95%置信水平小于±5至±7%,与使用常见的95%的置信水平小于±10%。发布的表。不确定性低于所需的估计10.7%瞬时流量不确定性,以满足当前的SB X7-7要求。

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