发明申请
US20100192702A1 MULTILAYER FLOW PATH MEMBER OF ULTRASONIC FLUID MEASUREMENT APPARATUS AND ULTRASONIC FLUID MEASUREMENT APPARATUS 失效
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

  • 专利标题: MULTILAYER FLOW PATH MEMBER OF ULTRASONIC FLUID MEASUREMENT APPARATUS AND ULTRASONIC FLUID MEASUREMENT APPARATUS
  • 专利标题(中): 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
  • 申请号: US12668171
    申请日: 2008-07-09
  • 公开(公告)号: US20100192702A1
    公开(公告)日: 2010-08-05
  • 发明人: Masato SatouYukinori OzakiAkihisa Adachi
  • 申请人: Masato SatouYukinori OzakiAkihisa Adachi
  • 申请人地址: JP Kadoma-shi
  • 专利权人: Panasonic Corproation
  • 当前专利权人: Panasonic Corproation
  • 当前专利权人地址: JP Kadoma-shi
  • 优先权: JP2007-179695 20070709; JP2007-179696 20070709; JP2007-179697 20070709; JP2007-179952 20070709; JP2007-179953 20070709
  • 国际申请: PCT/JP2008/001838 WO 20080709
  • 主分类号: G01F1/66
  • IPC分类号: G01F1/66
MULTILAYER FLOW PATH MEMBER OF ULTRASONIC FLUID MEASUREMENT APPARATUS AND ULTRASONIC FLUID MEASUREMENT APPARATUS
摘要:
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.
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