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首页> 外文期刊>Transactions of the ASABE >RECALIBRATION METHODOLOGY TO COMPENSATE FOR CHANGING FLUID PROPERTIES IN AN INDIVIDUAL NOZZLE DIRECT INJECTION SYSTEM
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RECALIBRATION METHODOLOGY TO COMPENSATE FOR CHANGING FLUID PROPERTIES IN AN INDIVIDUAL NOZZLE DIRECT INJECTION SYSTEM

机译:补偿单个喷嘴直接喷射系统中不断变化的流体特性的重新标定方法

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Limited advancement of direct injection pesticide application systems has been made in recent years, which has hindered further commercialization of this technology. One approach to solving the lag and mixing issues typically associated with injection-based systems is high-pressure individual nozzle injection. However, accurate monitoring of the chemical concentrate flow rate can pose a challenge due to the high pressure, low flow, and changing viscosities of the fluid. A methodology was developed for recalibrating high-pressure chemical concentrate injectors to compensate for fluid property variations and evaluate the performance of this technique for operating injectors in an open-loop configuration. Specific objectives were to (1) develop a method for continuous recalibration of the chemical concentrate injectors to ensure accurate metering of chemicals of varying viscosities and (2) evaluate the recalibration method for estimating individual injector flow rates from a system of multiple injectors to assess potential errors. Test results indicated that the recalibration method was able to compensate for changes in fluid kinematic viscosity (e.g., from temperature changes and/or product variation). Errors were less than 3.4% for the minimum injector duty cycle (DCi) (at 10%) and dropped 0.2% for the maximum DCi (at 90%) for temperature changes of up to 20 degrees C. While larger temperature changes may be expected, these test results showed that the proposed method could be successfully implemented to meet desired injection rates. Because multiple injectors would be used in commercial deployment of this technology, a method was developed to calculate the desired injector flow rate using initial injector calibration factors. Using this multi-injector recalibration method, errors ranged from 0.23% to 0.66% between predicted and actual flow rates for all three injectors.
机译:近年来,直喷农药施用系统的发展有限,这阻碍了该技术的进一步商业化。解决通常与基于喷射的系统相关的滞后和混合问题的一种方法是高压单喷嘴喷射。然而,由于流体的高压,低流量和变化的粘度,对化学浓缩液流速的精确监控可能会带来挑战。开发了一种用于重新校准高压化学浓缩液喷射器的方法,以补偿流体特性的变化并评估该技术在开环配置下操作喷射器的性能。具体目标是(1)开发一种连续重新校准化学浓缩液注射器的方法,以确保准确计量各种粘度的化学药品;(2)评估该重新校准方法,以估计来自多个注射器的系统中各个注射器的流量,以评估其潜力。错误。测试结果表明,重新校准方法能够补偿流体运动粘度的变化(例如,由于温度变化和/或产品变化而引起的变化)。最小喷射器占空比(DCi)的误差小于3.4%(在10%时),最大DCi(在90%时)的误差在最高20摄氏度时下降了0.2%。尽管可能会有更大的温度变化,这些测试结果表明,所提出的方法可以成功实现,以达到所需的注入速率。由于在该技术的商业部署中将使用多个喷油器,因此开发了一种使用初始喷油器校准因子来计算所需喷油器流速的方法。使用这种多进样器重新校准方法,所有三个进样器的预测流量与实际流量之间的误差范围为0.23%至0.66%。

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