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    • 1. 发明授权
    • Hydrodynamic fluid divider for fluid measuring devices
    • 用于流体测量装置的流体动力流体分配器
    • US5297426A
    • 1994-03-29
    • US44349
    • 1993-04-07
    • Martin KaneMark Perelshteyn
    • Martin KaneMark Perelshteyn
    • G01F1/84G01F5/00
    • G01F1/8418G01F5/00
    • A hydrodynamic fluid divider is provided whereby by a shunt line directs a portion of the overall flow of a defined fluid stream through a flow measuring device, such as a Coriolis mass flow meter. The proportion of the shunt line flow portion is determined by the relationship of various fluid restrictions within the shunt line and the main line of the divider. The measured flow value for the shunt line flow is utilized along with a scale-up factor to determine the overall flow through the divider. The proportional relationship of the shunt line to the overall flow permits a reduction in the size and operational requirements for the flow measuring device.
    • 提供了一种流体动力流体分配器,由此通过分流线将限定的流体流的整个流的一部分引导通过诸如科里奥利质量流量计的流量测量装置。 分流线流动部分的比例由分流线内的各种流体限制与分流器主线之间的关系决定。 分流线流量的测量流量值与缩放因子一起使用,以确定通过分流器的总流量。 分流管线与整个流量的比例关系允许减小流量测量装置的尺寸和操作要求。
    • 4. 发明申请
    • AUTOMATED VALUATION OF A PLURALITY OF PROPERTIES
    • 自动评估多种性质
    • US20070143132A1
    • 2007-06-21
    • US11611694
    • 2006-12-15
    • Mark LinneMartin Kane
    • Mark LinneMartin Kane
    • G06Q99/00
    • G06Q99/00G06Q30/0278
    • Disclosed are various embodiments of a system and method for valuing a plurality of properties. Assessor data is obtained that indicates a designated subdivision and various criteria for each of the properties. Assessor data is placed into a standard format to create a master data file. Modeling techniques are then used to separate and aggregate properties into modeling areas. Modeling areas are then used to calculate a predicted value for the properties. The predicted values are compared with actual sales values to create sales ratio data. If the deviation of the sales ratio data exceeds a certain amount, the master data file data is analyzed and modified until sales ratio data is achieved that falls within an acceptable deviation.
    • 公开了用于估价多个属性的系统和方法的各种实施例。 获得的评估者数据指示每个属性的指定细分和各种标准。 评估者数据被放置成标准格式以创建主数据文件。 然后使用建模技术将属性分离并聚合到建模区域。 然后使用建模区域来计算属性的预测值。 将预测值与实际销售价值进行比较,以创建销售比率数据。 如果销售比率数据的偏差超过一定量,则对主数据文件数据进行分析和修改,直到达到落在可接受的偏差内的销售率数据为止。
    • 5. 发明授权
    • Mass flow measuring device
    • 质量流量测量装置
    • US5551307A
    • 1996-09-03
    • US543279
    • 1990-06-25
    • Martin KaneWayne PrattJozsef AleszZoltan BiroZoltan Varga
    • Martin KaneWayne PrattJozsef AleszZoltan BiroZoltan Varga
    • G01F1/84G01F1/00
    • G01F1/8413G01F1/8468G01F1/8472G01F1/8477G01F1/8481G01F1/8486
    • Apparatus for measuring the mass flow of a fluid within a defined fluid stream including a conduit having two substantially parallel, flexible and continuous flow tubes fixedly mounted at their ends to a centrally positioned housing forming a flow splitter and a flow converger for directing the flow from the inlet and for directing the flow into the outlet between the apparatus and the fluid stream. The ends of each flow tube positioned proximal to one another and to the center of gravity formed by the shape of the flow tube. Each flow tube substantially forming a "B" shape having a first loop, a connecting portion and a second loop. The first and second loops being symmetrical with respect to the connecting portion and extending laterally from the center of gravity at a greater distance than the displacement of the connecting portion to the center of gravity. The flow tubes being oscillated in opposing modes at the connecting portion so as to produce a measurable Coriolis reaction force by the fluid on the flow tubes. The vibration means being capable of selectively oscillating the flow tube at least one discrete resonant frequency higher than the fundamental resonance of the flow tube so as to create waves along the tube length and form nodal points which are substantially stationary with respect to the vibrating flow tube.
    • 用于测量在限定的流体流中的流体的质量流量的装置,包括具有两个基本上平行的,柔性和连续的流管的导管,所述流管固定地安装在其端部处于中心定位的壳体上,形成分流器和流动收敛器, 入口和用于将流引导到设备和流体流之间的出口中。 每个流管的端部彼此靠近并且由流管的形状形成的重心。 每个流管基本上形成具有第一环的“B”形,连接部和第二环。 第一和第二回路相对于连接部分是对称的,并且以比连接部分到重心的位移更大的距离从重心横向延伸。 流管在连接部分以相反的模式振荡,以便通过流管上的流体产生可测量的科里奥利反作用力。 所述振动装置能够选择性地使所述流管振荡至少一个高于所述流管的基本共振的离散谐振频率,以便沿着所述管的长度产生波浪并形成相对于所述振动流管基本静止的节点 。
    • 6. 发明授权
    • Symmetrical mass flow meter
    • 对称质量流量计
    • US4716771A
    • 1988-01-05
    • US809659
    • 1986-02-11
    • Martin Kane
    • Martin Kane
    • G01F1/84
    • G01F1/8413G01F1/8422G01F1/8427G01F1/8472G01F1/8477G01F1/8486
    • A symmetrical mass flow meter for placement within a defined fluid stream or pre-existing pipe line which defines an axial line. The flow meter including a single conduit tube which forms two substantially symmetrical and free floating loops between the inlet and the outlet of the flow meter. The flow meter conduit directs the fluid through the first loop and crosses the axial line substantially perpendicular to this line. The second loop directs the fluid from the crossing point and returns it into the defined fluid stream. The conduit is deflected perpendicular to the direction of flow at the crossing of the axial line along the axial line. Sensors are positioned on the periphery of each loop to measure the Coriolis reaction force created by the fluid in response to the central deflection of the conduit. The reaction forces are measured without reference to a specific axis of rotation or a fixed position. External vibrational effects on the sensor measurement unrelated to the Coriolis reaction forces are physically and electronically minimized by the conduit design.
    • 一种对称的质量流量计,用于放置在限定的流体流或预先存在的管线中,其限定了轴线。 流量计包括单个导管,其在流量计的入口和出口之间形成两个基本上对称且自由的浮动环路。 流量计导管将流体引导通过第一回路并与基本垂直于该线的轴线交叉。 第二个循环将流体从交叉点引导并将其返回到限定的流体流中。 导管在沿着轴线的轴线交叉处垂直于流动方向偏转。 传感器位于每个环的周边,以测量由流体响应于导管的中心偏转而产生的科里奥利反作用力。 在不参考特定旋转轴或固定位置的情况下测量反作用力。 与科里奥利反应力无关的传感器测量的外部振动效应通过导管设计物理和电子最小化。
    • 7. 发明授权
    • Mass flow measuring device
    • 质量流量测量装置
    • US5423221A
    • 1995-06-13
    • US912893
    • 1986-09-26
    • Martin KaneAndras KissSandor KunZoltan BiroZaltan VargaPeter SalamonWayne PrattLazslo SzaboJozsef Alesz
    • Martin KaneAndras KissSandor KunZoltan BiroZaltan VargaPeter SalamonWayne PrattLazslo SzaboJozsef Alesz
    • G01F1/84
    • G01F1/8413G01F1/8468G01F1/8472G01F1/8477G01F1/8481G01F1/8486
    • A conduit having two substantially parallel, flexible and continuous flow tubes fixedly mounted at their ends to a centrally positioned housing The ends of each flow tube positioned proximal to one another and to the center of gravity formed by the shape of the flow tube. Each flow tube substantially forming a "B" shape having a first loop, a connecting portion and a second loop. The first and second loops being symmetrical with respect to the connecting portion and extending laterally from the center of gravity at a greater distance than the displacement of the connecting portion to the center of gravity. The flow tubes being oscillated in opposing modes at the connecting portion so as to produce a measurable Coriolis reaction force by the fluid on the flow tubes. The vibration means being capable of selectively oscillating the flow tube at least one discrete resonant frequency higher than the fundamental resonance of the flow tube so as to create waves along the tube length and form nodal points which are substantially stantionary with respect to the vibrating flow tube. The nodes form free floating flexible joints within the continuous flow tube to separate the oscillation of a portion of the flow tube partially from the fixed mounting points which are typically subject to unwanted vibrational noise.
    • 具有两个基本上平行的,柔性的和连续的流管的导管,其固定地安装在其端部到中心定位的壳体。每个流管的端部彼此靠近并且由流管的形状形成。 每个流管基本上形成具有第一环的“B”形,连接部和第二环。 第一和第二回路相对于连接部分是对称的,并且以比连接部分到重心的位移更大的距离从重心横向延伸。 流管在连接部分以相反的模式振荡,以便通过流管上的流体产生可测量的科里奥利反作用力。 所述振动装置能够选择性地使所述流管振荡至少一个高于所述流动管的基本共振的离散谐振频率,以便沿着所述管的长度产生波浪并形成相对于所述振动流管基本上相对的节点 。 节点在连续流动管内形成自由浮动柔性接头,以将流动管的一部分的振荡部分地与通常受到不想要的振动噪声的固定安装点分开。
    • 9. 发明授权
    • Mass flow meter
    • 质量流量计
    • US4733569A
    • 1988-03-29
    • US809658
    • 1985-12-16
    • Newton D. KelseyMartin KaneWayne Pratt
    • Newton D. KelseyMartin KaneWayne Pratt
    • G01F1/84
    • G01F1/8427G01F1/8486
    • A mass flow meter for placement in line within a pre-existing process line. The flow meter having a conduit forming a substantially free floating spiral or circular loop which is symmetrical about the axis line defined by the process line. A driving transducer extending radially from a bracket on a support beam which is positioned along the axis line and attached to the inlet and outlet end of the conduit. The driver imparting an alternating deflection to the loop which is substantially perpendicular to the fluid flow within the loop and parallel to the axis line. Sensing transducers are positioned along the periphery of the loop, displaced equidistant from the driving transducer along its circumference for determining the deflection signature of the loop. The deflection of the loop in response to the fluid reaction forces is measured without reference to a specific fixed axis or position of the loop. This acceleration signature is correlated to the mass flow rate of the fluid through the conduit.
    • 一种用于在预先存在的生产线内排放的质量流量计。 流量计具有导管,其形成基本上自由的浮动螺旋或圆形回路,其围绕由过程管线限定的轴线对称。 驱动换能器,其从支撑梁上的支架径向延伸,所述支撑梁沿着轴线定位并附接到导管的入口端和出口端。 驾驶员向环路施加交替偏转,其基本上垂直于环路内的流体流动并且平行于轴线。 感测传感器沿着环的周边定位,沿其圆周与驱动换能器等距离移位,以确定回路的偏转特征。 测量环路响应于流体反作用力的偏转,而不参考具体的固定轴线或环路的位置。 该加速度特征与通过导管的流体的质量流量相关。