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    • 1. 发明授权
    • Meter calibration accuracy
    • 仪表校准精度
    • US06925397B2
    • 2005-08-02
    • US09822770
    • 2001-03-30
    • Warren F. RogersJohn R. CollinsJillanne B. JonesWilliam P. Jones
    • Warren F. RogersJohn R. CollinsJillanne B. JonesWilliam P. Jones
    • G01F17/00G01F23/00G01F25/00
    • G01F23/0076G01F17/00G01F23/0069G01F25/0092
    • A method of estimating the measuring accuracy of each of a plurality of dispensing meters which dispense fluid from a fluid dispensing system including a storage tank includes measuring a volume of fluid dispensed through each of the plurality of dispensing meters during a plurality of time intervals during which fluid is simultaneously dispensed through the plurality of dispensing meters; measuring a volume of fluid dispensed from the storage tank during each of the plurality of time intervals; and calculating a fraction of the volume of fluid dispensed through each of the dispensing meters by performing a regression analysis with respect to the measured volume of fluid dispensed from the storage tank equated with a fraction of a sum of the measured volumes of fluid dispensed through the plurality of dispensing meters during each of the plurality of time intervals. The fraction of the sum of the measured volumes of fluid dispensed through the plurality of dispensing meters equals the sum of the fractions of the measured volumes of fluid dispensed through each of the dispensing meters on average over the plurality of time intervals.
    • 估计从包括储罐的流体分配系统分配流体的多个分配计量器中的每一个的测量精度的方法包括在多个时间间隔期间测量在多个分配计量器中分配的流体的体积, 通过多个分配仪器同时分配流体; 测量在所述多个时间间隔期间的每个期间从所述储存箱分配的流体的体积; 并且通过对从储罐分配的流体的测量体积进行回归分析,计算通过每个分配计量器分配的流体体积的一部分,其等同于通过 在多个时间间隔的每个期间,多个分配计量器。 通过多个分配仪器分配的流体的测量体积的总和的分数等于在多个时间间隔上平均分配的每个分配计量器的测量体积的分数之和。
    • 7. 发明申请
    • System, Method and Apparatus for Monitoring Fluid Storage and Dispensing Systems
    • 用于监测流体储存和分配系统的系统,方法和装置
    • US20140316723A1
    • 2014-10-23
    • US14157124
    • 2014-01-16
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • G01F23/00
    • B67D7/3281B67D7/04B67D7/16B67D7/222B67D7/3209B67D7/34G01M3/2815G01M3/2892
    • In one aspect, the invention relates to a system for monitoring a fluid dispensing system having a storage tank and a piping system having a maximum output flow rate threshold. The system includes a dispenser configured to dispense fluid from the fluid dispensing system during a dispensing time interval, a metering device in fluid communication with piping system, the metering device configured to measure a plurality of sample flow rates over time in response to fluid passing through the metering device, a gauge for measuring a volume of fluid dispensed from the storage tank during the dispensing time interval and a processor for executing a monitoring application which generates an alert within a substantially real-time period in response to an event of interest, the monitoring application comparing the maximum output flow rate threshold to the plurality of sample flow rates over time to generate the alert when one of the sample flow rates exceeds the maximum output flow rate threshold.
    • 一方面,本发明涉及一种用于监测具有储罐的流体分配系统和具有最大输出流量阈值的管道系统的系统。 该系统包括分配器,其被配置为在分配时间间隔期间从流体分配系统分配流体,与管道系统流体连通的计量装置,该计量装置被配置成响应于流体通过而随时间测量多个样品流速 计量装置,用于在分配时间间隔期间测量从储罐分配的流体体积的量表和用于执行监测应用的处理器,所述监测应用在响应于感兴趣的事件的基本上实时的周期内产生警报, 将所述最大输出流量阈值与所述多个采样流速随时间比较的监视应用,以在所述采样流量之一超过所述最大输出流量阈值时产生所述警报。
    • 8. 发明授权
    • System, method and apparatus for monitoring fluid storage and dispensing systems
    • 用于监测液体储存和分配系统的系统,方法和装置
    • US08666683B2
    • 2014-03-04
    • US12702927
    • 2010-02-09
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • G01F23/00
    • B67D7/3281B67D7/04B67D7/16B67D7/222B67D7/3209B67D7/34G01M3/2815G01M3/2892
    • In one aspect, the invention relates to a system for monitoring a fluid dispensing system having a storage tank and a piping system having a maximum output flow rate threshold. The system includes a dispenser configured to dispense fluid from the fluid dispensing system during a dispensing time interval, a metering device in fluid communication with piping system, the metering device configured to measure a plurality of sample flow rates over time in response to fluid passing through the metering device, a gauge for measuring a volume of fluid dispensed from the storage tank during the dispensing time interval and a processor for executing a monitoring application which generates an alert within a substantially real-time period in response to an event of interest, the monitoring application comparing the maximum output flow rate threshold to the plurality of sample flow rates over time to generate the alert when one of the sample flow rates exceeds the maximum output flow rate threshold.
    • 一方面,本发明涉及一种用于监测具有储罐的流体分配系统和具有最大输出流量阈值的管道系统的系统。 该系统包括分配器,其被配置为在分配时间间隔期间从流体分配系统分配流体,与管道系统流体连通的计量装置,该计量装置被配置成响应于流体通过而随时间测量多个样品流速 计量装置,用于在分配时间间隔期间测量从储罐分配的流体体积的量表和用于执行监测应用的处理器,所述监测应用在响应于感兴趣的事件的基本上实时的周期内产生警报, 将所述最大输出流量阈值与所述多个采样流速随时间比较的监视应用,以在所述采样流量之一超过所述最大输出流量阈值时产生所述警报。
    • 9. 发明申请
    • SYSTEM, METHOD AND APPARATUS FOR MONITORING FLUID STORAGE AND DISPENSING SYSTEMS
    • 用于监测流体储存和分配系统的系统,方法和装置
    • US20110040503A1
    • 2011-02-17
    • US12702927
    • 2010-02-09
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • Warren F. RogersJohn R. CollinsJillianne B. JonesWilliam P. JonesMichael A. Lenox
    • G01F23/00
    • B67D7/3281B67D7/04B67D7/16B67D7/222B67D7/3209B67D7/34G01M3/2815G01M3/2892
    • In one aspect, the invention relates to a system for monitoring a fluid dispensing system having a storage tank and a piping system having a maximum output flow rate threshold. The system includes a dispenser configured to dispense fluid from the fluid dispensing system during a dispensing time interval, a metering device in fluid communication with piping system, the metering device configured to measure a plurality of sample flow rates over time in response to fluid passing through the metering device, a gauge for measuring a volume of fluid dispensed from the storage tank during the dispensing time interval and a processor for executing a monitoring application which generates an alert within a substantially real-time period in response to an event of interest, the monitoring application comparing the maximum output flow rate threshold to the plurality of sample flow rates over time to generate the alert when one of the sample flow rates exceeds the maximum output flow rate threshold.
    • 一方面,本发明涉及一种用于监测具有储罐的流体分配系统和具有最大输出流量阈值的管道系统的系统。 该系统包括分配器,其被配置为在分配时间间隔期间从流体分配系统分配流体,与管道系统流体连通的计量装置,该计量装置被配置成响应于流体通过而随时间测量多个样品流速 计量装置,用于在分配时间间隔期间测量从储罐分配的流体体积的量表和用于执行监测应用的处理器,所述监测应用在响应于感兴趣的事件的基本上实时的周期内产生警报, 将所述最大输出流量阈值与所述多个采样流速随时间比较的监视应用,以在所述采样流量之一超过所述最大输出流量阈值时产生所述警报。