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    • 3. 发明申请
    • Fluid Conduit
    • 流体导管
    • US20140182737A1
    • 2014-07-03
    • US14116260
    • 2012-05-10
    • SALUNDA LIMITEDMAGMA GLOBAL LIMITED
    • Martin Peter William JonesCharles Alexander TavnerAlan David ParkerJohn Francis Gregg
    • F16L9/14
    • F16L9/14G01F1/32G01F1/44G01F1/58G01F1/66G01F15/14G01N22/00G01N29/222
    • A fluid conduit (2) comprises a wall (4) defining a fluid flow path (6) and a confinement feature (24) within the wall (4) and being configured to confine energy within a cavity (26), wherein at least a portion of the fluid flow path (6) extends through the cavity (26). The confinement feature (24) may be configured to confine electromagnetic energy. The fluid conduit (2) may comprise an oscillator defined by the cavity (26) and a positive feedback arrangement (34). The fluid conduit (2) may be configured for sensing a property of a fluid present in or flowing through the fluid conduit (2) or for use in sensing a property of a fluid present in or flowing through the fluid conduit (2). More specifically, the present invention deals with a microwave cavity sensor wherein the cavity member (24) is embedded in the wall (4) of the fluid conduit (2), the wall (4) including a composite region (20).
    • 流体导管(2)包括在壁(4)内限定流体流动路径(6)和限制特征(24)的壁(4),并且构造成将能量限制在空腔(26)内,其中至少一个 流体流动路径(6)的一部分延伸穿过空腔(26)。 约束特征(24)可以被配置为限制电磁能量。 流体导管(2)可以包括由空腔(26)和正反馈装置(34)限定的振荡器。 流体导管(2)可以被配置为感测出现在流体导管(2)中或流过流体导管(2)的流体的性质,或用于感测存在于或流过流体导管(2)的流体的性质。 更具体地,本发明涉及一种微波空腔传感器,其中空腔构件(24)嵌入在流体导管(2)的壁(4)中,壁(4)包括复合区域(20)。