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    • 2. 发明申请
    • MULTILAYER FLOW PATH MEMBER OF ULTRASONIC FLUID MEASUREMENT APPARATUS AND ULTRASONIC FLUID MEASUREMENT APPARATUS
    • 超声波流量测量装置和超声波流体测量装置的多层流路构件
    • US20100192702A1
    • 2010-08-05
    • US12668171
    • 2008-07-09
    • Masato SatouYukinori OzakiAkihisa Adachi
    • Masato SatouYukinori OzakiAkihisa Adachi
    • G01F1/66
    • G01F1/662G01F15/00
    • A multilayer flow path member of an ultrasonic fluid measurement apparatus and an ultrasonic fluid measurement apparatus capable of enhancing the measurement accuracy of the mean flow velocity are provided. When a multilayer flow path member 30 placed in a measurement flow path 14a shaped in a rectangular cross-section pipe of an ultrasonic fluid measurement apparatus 10 is partitioned into a plurality of flat flow paths 14e by partition plates 32 attached to a frame 31 along a flowing direction, the partition plates 32 are provided so as to face inner faces 15f and 17a of the measurement flow path 14a. Thus, the partition plates 32 are exposed and face the inner faces 15f and 17a of the measurement flow path 14a and thus the space between the exposed partition plate 32 and the inner face 15f, 17a of the measurement flow path 14a becomes the highest-stage or lowest-stage flat flow path 14e. Therefore, a problem of degrading the measurement accuracy as a fluid flows into the space between the frame 31 forming a part of the multilayer flow path member 30 and the inner face 15f, 17a of the measurement flow path 14a as before does not occur and accordingly the measurement accuracy can be enhanced.
    • 提供了能够提高平均流速的测量精度的超声波流体测量装置和超声波流体测量装置的多层流路构件。 当设置在超声波流体测量装置10的矩形截面管中的测量流路14a中的多层流路构件30被分隔成多个平坦的流路14e时,隔板32沿着框架31沿着 分隔板32设置成面对测量流路14a的内表面15f和17a。 因此,分隔板32暴露并且面对测量流路14a的内表面15f和17a,因此暴露的隔板32与测量流路14a的内表面15f,17a之间的空间变为最高级 或最低级平流路14e。 因此,作为流体的降低测量精度的问题流入形成多层流路构件30的一部分的框架31与以前的测量流路14a的内表面15f,17a之间的空间不相应地发生 可以提高测量精度。
    • 3. 发明授权
    • Multilayer flow path member of ultrasonic fluid measurement apparatus and ultrasonic fluid measurement apparatus
    • 超声波流体测量装置和超声波流体测量装置的多层流路构件
    • US08161824B2
    • 2012-04-24
    • US12668171
    • 2008-07-09
    • Masato SatouYukinori OzakiAkihisa Adachi
    • Masato SatouYukinori OzakiAkihisa Adachi
    • G01F1/66
    • G01F1/662G01F15/00
    • A multilayer flow path member of an ultrasonic fluid measurement apparatus and an ultrasonic fluid measurement apparatus capable of enhancing the measurement accuracy of the mean flow velocity are provided. When a multilayer flow path member 30 placed in a measurement flow path 14a shaped in a rectangular cross-section pipe of an ultrasonic fluid measurement apparatus 10 is partitioned into a plurality of flat flow paths 14e by partition plates 32 attached to a frame 31 along a flowing direction, the partition plates 32 are provided so as to face inner faces 15f and 17a of the measurement flow path 14a. Thus, the partition plates 32 are exposed and face the inner faces 15f and 17a of the measurement flow path 14a and thus the space between the exposed partition plate 32 and the inner face 15f, 17a of the measurement flow path 14a becomes the highest-stage or lowest-stage flat flow path 14e. Therefore, a problem of degrading the measurement accuracy as a fluid flows into the space between the frame 31 forming a part of the multilayer flow path member 30 and the inner face 15f, 17a of the measurement flow path 14a as before does not occur and accordingly the measurement accuracy can be enhanced.
    • 提供了能够提高平均流速的测量精度的超声波流体测量装置和超声波流体测量装置的多层流路构件。 当设置在超声波流体测量装置10的矩形截面管中的测量流路14a中的多层流路构件30被分隔成多个平坦的流路14e时,隔板32沿着框架31沿着 分隔板32设置成面对测量流路14a的内表面15f和17a。 因此,分隔板32暴露并且面对测量流路14a的内表面15f和17a,因此暴露的隔板32与测量流路14a的内表面15f,17a之间的空间变为最高级 或最下阶段平流路14e。 因此,作为流体的降低测量精度的问题流入形成多层流路构件30的一部分的框架31与以前的测量流路14a的内表面15f,17a之间的空间不相应地发生 可以提高测量精度。
    • 5. 发明申请
    • ULTRASONIC FLOW RATE MEASUREMENT DEVICE
    • 超声波流量测量装置
    • US20130167655A1
    • 2013-07-04
    • US13821915
    • 2011-11-02
    • Yuji FujiiYukinori OzakiMasato SatouHirokazu Gotou
    • Yuji FujiiYukinori OzakiMasato SatouHirokazu Gotou
    • G01F1/66
    • G01F1/662G01F15/185
    • Ultrasonic flow rate measurement device includes measurement flow path in which a fluid to be measured flows, and a pair of ultrasonic vibrators that are disposed in directions such that a propagation path of an ultrasonic wave forms a V-shape relative to measurement flow path. Moreover, the device includes measurement circuit which measures a flow rate of the fluid to be measured by measuring a propagation time of the ultrasonic wave between the pair of ultrasonic vibrators, and inlet-side rectification part which is disposed, in the inlet side of measurement flow path, to stabilize the flow of the fluid to be measured. Furthermore, the device includes outlet-side coupling part which is disposed in the outlet side of measurement flow path, and signal lead-out part which outputs a flow rate value measured with measurement circuit.
    • 超声波流量测量装置包括要测量的流体流动的测量流动路径,以及一对超声波振动器,其布置在使得超声波的传播路径相对于测量流路形成V形的方向上。 此外,该装置包括测量电路,其通过测量在一对超声波振动器之间的超声波的传播时间和设置在测量入口侧的入口侧整流部来测量待测量的流体的流量 流动路径,以稳定要测量的流体的流动。 此外,该装置包括设置在测量流路的出口侧的出口侧联接部和输出利用测量电路测量的流量值的信号导出部。
    • 6. 发明授权
    • Ultrasonic flow rate measurement device having inlet side flow rectification part and outlet side coupling part
    • 超声波流量测量装置具有入口侧流量整流部分和出口侧耦合部分
    • US08984960B2
    • 2015-03-24
    • US13821915
    • 2011-11-02
    • Yuji FujiiYukinori OzakiMasato SatouHirokazu Gotou
    • Yuji FujiiYukinori OzakiMasato SatouHirokazu Gotou
    • G01F1/66G01F15/18
    • G01F1/662G01F15/185
    • Ultrasonic flow rate measurement device includes measurement flow path in which a fluid to be measured flows, and a pair of ultrasonic vibrators that are disposed in directions such that a propagation path of an ultrasonic wave forms a V-shape relative to measurement flow path. Moreover, the device includes measurement circuit which measures a flow rate of the fluid to be measured by measuring a propagation time of the ultrasonic wave between the pair of ultrasonic vibrators, and inlet-side rectification part which is disposed, in the inlet side of measurement flow path, to stabilize the flow of the fluid to be measured. Furthermore, the device includes outlet-side coupling part which is disposed in the outlet side of measurement flow path, and signal lead-out part which outputs a flow rate value measured with measurement circuit.
    • 超声波流量测量装置包括要测量的流体流动的测量流动路径,以及一对超声波振动器,其布置在使得超声波的传播路径相对于测量流路形成V形的方向上。 此外,该装置包括测量电路,其通过测量在一对超声波振动器之间的超声波的传播时间和设置在测量入口侧的入口侧整流部来测量待测量的流体的流量 流动路径,以稳定要测量的流体的流动。 此外,该装置包括设置在测量流路的出口侧的出口侧联接部和输出利用测量电路测量的流量值的信号导出部。
    • 9. 发明申请
    • ULTRASONIC FLOW-METER
    • 超声波流量计
    • US20140230568A1
    • 2014-08-21
    • US14128866
    • 2012-07-09
    • Akihisa AdachiMasato SatouAoi WatanabeHajime Miyata
    • Akihisa AdachiMasato SatouAoi WatanabeHajime Miyata
    • G01F1/66
    • G01F1/66G01F1/667G01F5/00
    • An ultrasonic flow-meter of the present invention includes a partition plate which partitions a passage of a target fluid into a measurement passage and a non-measurement passage, a pair of ultrasonic transducers which is disposed in the measurement passage, a measuring unit which measures a propagation time of an ultrasonic wave between the pair of ultrasonic transducers, and a calculating unit which calculates a flow rate of the target fluid. Further, the calculating unit has a computing unit which computes at least one of a flow velocity and a flow rate of the target fluid in the measurement passage based on the propagation time and an estimating unit which estimates the flow rate of the target fluid in the passage based on the flow velocity or the flow rate in the measurement passage. As a result, an ultrasonic flow-meter which highly accurately measures a target fluid by using a simple configuration can be realized.
    • 本发明的超声波流量计包括将目标流体的通道分隔成测量通道和非测量通道的隔板,设置在测量通道中的一对超声波换能器,测量单元,其测量 一对超声波换能器之间的超声波的传播时间和计算目标流体的流量的计算单元。 此外,计算单元具​​有计算单元,该计算单元基于传播时间计算测量通道中的目标流体的流速和流量中的至少一个,以及估计单元,其估计目标流体的流速 基于测量通道中的流速或流量。 结果,可以实现通过简单的结构高精度地测量目标流体的超声波流量计。