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公开(公告)号:US20240288012A1
公开(公告)日:2024-08-29
申请号:US18657522
申请日:2024-05-07
发明人: Paul Wayne Schmidt , Avijit Ghosh
IPC分类号: F15C1/18 , B01F25/4314 , B01F25/432 , B01F25/433 , B01F25/435
CPC分类号: F15C1/18 , B01F25/4314 , B01F25/432 , B01F25/4334 , B01F25/435
摘要: Material flow amplifiers overcome drawbacks associated with known adverse flow conditions (e.g., surface erosion and head losses) that arise from flow of certain types of materials (e.g., fluids, slurries, particulates, flowable aggregate, and the like) through a material flow conduit. Such material flow amplifiers provide for flow of flowable material within a flow passage of a material flow conduit (e.g., a portion of a pipeline, tubing or the like) to have a cyclonic flow (i.e., vortex or swirling) profile. Advantageously, the cyclonic flow profile centralizes flow toward the central portion of the flow passage, thereby reducing magnitude of laminar flow. Such cyclonic flow profile provides a variety of other advantages as compared to a parabolic flow profile (e.g., increased flow rate, reduce inner pipeline wear, more uniform inner pipe wear, reduction in energy consumption, reduced or eliminated slugging and the like).
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公开(公告)号:US12006957B2
公开(公告)日:2024-06-11
申请号:US17832611
申请日:2022-06-04
发明人: Paul Wayne Schmidt , Avijit Ghosh
IPC分类号: F15C1/18 , B01F25/4314 , B01F25/432 , B01F25/433 , B01F25/435
CPC分类号: F15C1/18 , B01F25/4314 , B01F25/432 , B01F25/4334 , B01F25/435
摘要: Material flow amplifiers overcome drawbacks associated with known adverse flow conditions (e.g., surface erosion and head losses) that arise from flow of certain types of materials (e.g., fluids, slurries, particulates, flowable aggregate, and the like) through a material flow conduit. Such material flow amplifiers provide for flow of flowable material within a flow passage of a material flow conduit (e.g., a portion of a pipeline, tubing or the like) to have a cyclonic flow (i.e., vortex or swirling) profile. Advantageously, the cyclonic flow profile centralizes flow toward the central portion of the flow passage, thereby reducing magnitude of laminar flow. Such cyclonic flow profile provides a variety of other advantages as compared to a parabolic flow profile (e.g., increased flow rate, reduce inner pipeline wear, more uniform inner pipe wear, reduction in energy consumption, reduced or eliminated slugging and the like).
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公开(公告)号:US20220299049A1
公开(公告)日:2022-09-22
申请号:US17832611
申请日:2022-06-04
发明人: Paul Wayne Schmidt , Avijit Ghosh
IPC分类号: F15C1/18 , B01F25/432 , B01F25/435 , B01F25/4314 , B01F25/433
摘要: Material flow amplifiers as disclosed herein overcome drawbacks associated with known adverse flow conditions (e.g., surface erosion and head losses) that arise from flow of certain types of materials (e.g., fluids, slurries, particulates, flowable aggregate, and the like) through a material flow conduit. Such material flow amplifiers provide for flow of flowable material within a flow passage of a material flow conduit (e.g., a portion of a pipeline, tubing or the like) to have a cyclonic flow (i.e., vortex or swirling) profile. Advantageously, the cyclonic flow profile centralizes flow toward the central portion of the flow passage, thereby reducing magnitude of laminar flow. Such cyclonic flow profile provides a variety of other advantages as compared to a parabolic flow profile (e.g., increased flow rate, reduce inner pipeline wear, more uniform inner pipe wear, reduction in energy consumption, reduced or eliminated slugging and the like).
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公开(公告)号:US20220090613A1
公开(公告)日:2022-03-24
申请号:US17542200
申请日:2021-12-03
发明人: Paul Wayne Schmidt , Avijit Ghosh
摘要: Disclosed cyclonic flow-inducing pumps overcome drawbacks associated with known adverse flow conditions that arise from flow of certain types of materials through a material flow conduit. Such cyclonic flow-inducing pumps provide for flow of flowable material within a flow passage of a material flow conduit (e.g., a portion of a pipeline, tubing or the like) to have a cyclonic flow (i.e., vortex or swirling) profile. Advantageously, the cyclonic flow profile centralizes flow toward the central portion of the flow passage, thereby reducing magnitude of laminar flow. Such cyclonic flow profile provides a variety of other advantages as compared to a parabolic flow profile such as, for example, increased flow rate, reduce inner pipeline wear, more uniform inner pipe wear, reduction in energy consumption, reduced or eliminated adverse considerations such as slugging.
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公开(公告)号:US10458446B1
公开(公告)日:2019-10-29
申请号:US16445127
申请日:2019-06-18
发明人: Paul Wayne Schmidt , Avijit Ghosh
摘要: Material flow amplifiers as disclosed herein overcome drawbacks associated with known adverse flow conditions (e.g., surface erosion and head losses) that arise from flow of certain types of materials (e.g., fluids, slurries, particulates, flowable aggregate, and the like) through a material flow conduit. Such material flow amplifiers provide for flow of flowable material within a flow passage of a material flow conduit (e.g., a portion of a pipeline, tubing or the like) to have a cyclonic flow (i.e., vortex or swirling) profile. Advantageously, the cyclonic flow profile centralizes flow toward the central portion of the flow passage, thereby reducing magnitude of laminar flow. Such cyclonic flow profile provides a variety of other advantages as compared to a parabolic flow profile (e.g., increased flow rate, reduce inner pipeline wear, more uniform inner pipe wear, reduction in energy consumption, reduced or eliminated slugging and the like).
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公开(公告)号:US09587587B2
公开(公告)日:2017-03-07
申请号:US14260765
申请日:2014-04-24
CPC分类号: F02M21/0239 , F02M21/0242 , F15C1/08 , F15C1/18 , F15C3/005 , F15D1/006 , F15D1/02 , F15D1/025 , F15D1/14 , Y02T10/32
摘要: A pressure reducing device is disclosed for use with a gaseous fuel system. The pressure reducing device may include a body defining an inlet and an outlet, and a converging-diverging nozzle formed between the inlet and the outlet. The pressure reducing device may further include a shockwave inducing element disposed within the body between the venture and the outlet, and an airfoil located inside the body upstream of the shockwave inducing element and connected to move the shockwave inducing element.
摘要翻译: 公开了一种与气体燃料系统一起使用的减压装置。 减压装置可以包括限定入口和出口的主体,以及形成在入口和出口之间的会聚发散喷嘴。 减压装置还可以包括设置在冒口和出口之间的主体内的冲击波诱导元件,以及位于冲击波诱导元件上游的主体内部并连接以移动冲击波诱导元件的翼型件。
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公开(公告)号:US09458006B2
公开(公告)日:2016-10-04
申请号:US14202221
申请日:2014-03-10
申请人: ADEL WIGGINS GROUP
发明人: Christopher Quang
IPC分类号: B65B1/30 , B67D7/46 , G01F23/16 , B65D88/54 , B65D90/26 , F15C1/00 , F15C1/18 , F16K1/12 , F16L37/32 , F16K21/18 , G05D9/04 , B60K15/04 , B60K15/035
CPC分类号: B67D7/465 , B60K15/035 , B60K15/04 , B60K2015/048 , B65D88/54 , B65D90/26 , B67D7/46 , F15C1/005 , F15C1/18 , F16K1/126 , F16K21/18 , F16L37/32 , G01F23/161 , G01F23/165 , G05D9/04
摘要: A non-pressurized fluid level shutoff system for a fuel tank includes a fuel receiver having a flow control valve that opens in a direction opposite a direction of fuel flow, and that cannot be manually overridden. A fuel sensor funnels fuel through a fuel jet outlet orifice to form a stream of fuel across a cutout section, and a supplemental peripheral port connected between an outlet orifice mixing chamber and the interior of the tank is oriented perpendicular to the stream of fuel across the cutout section, to interfere with the stream of fuel when the sensor is submerged in fuel in the tank, to further reduce any residual fluid flow signal when the sensor is fully submerged, allowing the flow control valve in the receiver to close completely.
摘要翻译: 用于燃料箱的非加压流体液位关闭系统包括具有在与燃料流动方向相反的方向打开并且不能被手动覆盖的流量控制阀的燃料接收器。 燃料传感器通过燃料喷射出口孔排出燃料,以在切口部分上形成燃料流,并且连接在出口孔混合室和罐内部之间的补充外围端口垂直于燃料流定向 切断部分,当传感器浸没在油箱中的燃料中时干扰燃料流,以在传感器完全浸没时进一步减少任何残留流体流动信号,从而允许接收器中的流量控制阀完全关闭。
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公开(公告)号:US20090272446A1
公开(公告)日:2009-11-05
申请号:US12295262
申请日:2007-03-21
申请人: Klaus Kolding
发明人: Klaus Kolding
CPC分类号: C02F1/005 , C02F1/74 , C02F2301/024 , C02F2301/026 , Y10T137/2087 , Y10T137/2093
摘要: An apparatus for treating a liquid; such as water or a beverage, in order to improve the quality of the liquid, and in order to ensure that the minerals and nutrients which are naturally present in the liquid are assimilated in a living organism consuming the liquid to the maximum extent. At least two pipe segments are twisted about a common axis in such a manner that each of the pipe segments at least substantially abuts said common axis. Each pipe segment has an inlet opening and an outlet opening, and the pipe segments forms parallel flow paths between a common inlet and a common outlet. The liquid performs spiraling movements when flowing through the pipe segments, and thereby the minerals in the liquid are forced to be in a more absorbable form.
摘要翻译: 一种处理液体的装置; 例如水或饮料,以提高液体的质量,并且为了确保在液体中天然存在的矿物质和营养素在最大限度地消耗液体的生物体中被吸收。 至少两个管段以公共轴线扭转,使得每个管段至少基本上邻接所述公共轴线。 每个管段具有入口和出口,并且管段在公共入口和公共出口之间形成平行的流动路径。 当液体流过管段时,液体进行螺旋运动,从而液体中的矿物质被迫以更可吸收的形式。
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公开(公告)号:US20090104035A1
公开(公告)日:2009-04-23
申请号:US12344776
申请日:2008-12-29
申请人: William Abdel-Messeh , Frank Cunha
发明人: William Abdel-Messeh , Frank Cunha
CPC分类号: F01D5/187 , F05D2250/313 , F05D2250/70 , F05D2260/2212 , F05D2260/22141 , Y10T137/2087
摘要: A passageway is provided through which a cooling fluid flows in a first direction. The passageway has a plurality of trip strips positioned within the passageway. Adjacent one of the trip strips are oriented to converge towards each other at a first end to form an apex portion and to form a region in which turbulence is created. The apex portion is oriented at an angle with respect to the first direction.
摘要翻译: 提供通道,冷却流体沿第一方向流过该通道。 通道具有定位在通道内的多个跳闸条。 相邻的一个行程带在第一端处朝向彼此会聚以形成顶点部分并形成其中产生湍流的区域。 顶点部分相对于第一方向成一角度定向。
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公开(公告)号:US3739814A
公开(公告)日:1973-06-19
申请号:US3739814D
申请日:1971-07-08
发明人: GREBER I
CPC分类号: F15C1/06 , F15C1/08 , Y10T137/2256
摘要: A wall attachment fluidic device operating in the laminar flow range is disclosed. Either bistable or monostable devices can be produced, provided the attachment wall associated with each stable state conforms to a particular shape. That particular shape is one in which the radius of curvature K of the attachment wall is initially substantially equal to x1/2, where x is a nondimensional distance measured along the arc of the wall for the power jet inlet. The radius of curvature K gradually increases until it reaches x3/4. Thereafter, it remains equal to x3/4 until the jet receiver is reached.
摘要翻译: 公开了一种在层流范围内工作的壁附件流体装置。 如果与每个稳定状态相关联的连接壁符合特定形状,则可以生产双稳态或单稳态器件。 该特定形状是其中附接壁的曲率半径K最初基本上等于x1 / 2的形状,其中x是沿着用于动力射流入口的壁的圆弧测量的无量纲距离。 曲率半径K逐渐增加直至达到x3 / 4。 此后,直到达到喷射接收器为止,它保持等于x3 / 4。
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