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    • 4. 发明授权
    • Apparatus and a method for regulation of the energy potential in a fluid column located within a pipeline
    • 用于调节位于管道内的流体塔中的能量势的装置和方法
    • US08348623B2
    • 2013-01-08
    • US12307329
    • 2007-06-28
    • Jan Kristian VasshusTrond Melhus
    • Jan Kristian VasshusTrond Melhus
    • F04B41/06F01C19/00F03C2/00F03C4/00F04C15/00F04C27/00F17D1/16F17D1/18F03B13/00H02P9/04
    • F03B7/00F03B13/00F05B2220/602F05B2240/40Y02B10/50Y02E10/223Y02E10/28Y10T137/0396
    • The present invention describes an apparatus (1) and a method for use in regulation of the energy potential in a fluid column located within a pipeline (13), the apparatus (1) including two impellers (2), either one including a rotatable shaft (6) which is provided with a plurality of vanes or plate-shaped blades (8), the impellers (2) being disposed in a housing (4) which constitutes a portion of the pipeline (13), the apparatus (1) communicating with a load (19, 21) and/or an energy source, so that the impellers (2) of the apparatus (1) are arranged to influence the movement of the fluid column within the pipeline (13), the apparatus (1) being arranged to receive the fluid column between the shafts (6) of the impellers (2), the centre axis of said shafts (6) being substantially in the same plane as wall portions of the housing (4) upstream and downstream of the vanes, whereby the rate of the fluid column through the apparatus substantially corresponds to the rate of the fluid column immediately upstream and/or downstream of the impellers (2) of the apparatus (1).
    • 本发明描述了一种用于调节位于管道(13)内的流体塔中的能量势的装置(1)和方法,所述装置(1)包括两个叶轮(2),任一个包括可旋转的轴 (6),其设置有多个叶片或板状叶片(8),所述叶轮(2)设置在构成所述管道(13)的一部分的壳体(4)中,所述装置(1)连通 具有负载(19,21)和/或能量源,使得装置(1)的叶轮(2)布置成影响流体柱在管道(13)内的运动,装置(1) 布置成在叶轮(2)的轴(6)之间接收流体柱,所述轴(6)的中心轴线基本上与叶片上部和下游的壳体(4)的壁部相同的平面 ,由此通过设备的流体柱的速率基本上对应于流体柱的速率 紧挨着设备(1)的叶轮(2)的上游和/或下游。
    • 7. 发明申请
    • APPARATUS AND A METHOD FOR REGULATION OF THE ENERGY POTENTIAL IN A FLUID COLUMN LOCATED WITHIN A PIPELINE
    • 装置和方法,用于调节位于管道内的流体池中的能量潜力
    • US20090314353A1
    • 2009-12-24
    • US12307329
    • 2007-06-28
    • Jan Kristian VasshusTrond Melhus
    • Jan Kristian VasshusTrond Melhus
    • F17D1/14E03B7/02F03B17/06
    • F03B7/00F03B13/00F05B2220/602F05B2240/40Y02B10/50Y02E10/223Y02E10/28Y10T137/0396
    • The present invention describes an apparatus (1) and a method for use in regulation of the energy potential in a fluid column located within a pipeline (13), the apparatus (1) including two impellers (2), either one including a rotatable shaft (6) which is provided with a plurality of vanes or plate-shaped blades (8), the impellers (2) being disposed in a housing (4) which constitutes a portion of the pipeline (13), the apparatus (1) communicating with a load (19, 21) and/or an energy source, so that the impellers (2) of the apparatus (1) are arranged to influence the movement of the fluid column within the pipeline (13), the apparatus (1) being arranged to receive the fluid column between the shafts (6) of the impellers (2), the centre axis of said shafts (6) being substantially in the same plane as wall portions of the housing (4) upstream and downstream of the vanes, whereby the rate of the fluid column through the apparatus substantially corresponds to the rate of the fluid column immediately upstream and/or downstream of the impellers (2) of the apparatus (1).
    • 本发明描述了一种用于调节位于管道(13)内的流体塔中的能量势的装置(1)和方法,所述装置(1)包括两个叶轮(2),任一个包括可旋转的轴 (6),其设置有多个叶片或板状叶片(8),所述叶轮(2)设置在构成所述管道(13)的一部分的壳体(4)中,所述装置(1)连通 具有负载(19,21)和/或能量源,使得装置(1)的叶轮(2)布置成影响流体柱在管道(13)内的运动,装置(1) 布置成在叶轮(2)的轴(6)之间接收流体柱,所述轴(6)的中心轴线基本上与叶片上部和下游的壳体(4)的壁部相同的平面 ,由此通过设备的流体柱的速率基本上对应于流体柱的速率 紧挨着设备(1)的叶轮(2)的上游和/或下游。
    • 8. 发明申请
    • Fluid Treatment and Method and Use of Same
    • 流体处理及其使用方法
    • US20090107931A1
    • 2009-04-30
    • US12297740
    • 2007-04-19
    • Jan Kristian VasshusTrond Melhus
    • Jan Kristian VasshusTrond Melhus
    • B01D33/048
    • B01D33/04B01D2201/204B07B1/10B07B15/00B07B2230/01
    • A system (1) for the treatment of a fluid comprising at least two of the fractions solid particles, liquid and/or gas is described, the system (1) being defined by at least one inlet portion (3) and two or more outlet portions (5, 7, 9), and the system (1) being arranged to separate solid particles over a predetermined size from the liquid by means of at least one screening apparatus (23, 25) and then carry said fractions out of the system (1), the system (1) for the treatment of fluid being substantially fluid-tight between said at' least one inlet portion (3) and the outlet portions (5, 7, 9) and being provided with at least one underpressure-generating device (11, 13) which is arranged to provide an underpressure in the system (1) between said at least one inlet portion (3) and the outlet portions (5, 7, 9), the at least one screening apparatus (23, 25) being arranged to separate the fluid into fractions substantially including solids, liquid and/or gas, the fractions of the fluid being kept separate as the fractions are carried out of the system (1). Also described is a method of using the system (1).
    • 描述了用于处理包含至少两个部分固体颗粒,液体和/或气体的流体的系统(1),系统(1)由至少一个入口部分(3)和两个或更多个出口 部分(5,7,9)和系统(1)被布置成通过至少一个筛选装置(23,25)从液体中分离出预定尺寸的固体颗粒,然后将所述馏分从系统 (1)中,用于处理流体的系统(1)在所述至少一个入口部分(3)和出口部分(5,7,9)之间基本上是流体密封的,并且设置有至少一个负压 - 发生装置(11,13),其被设置成在所述至少一个入口部分(3)和出口部分(5,7,9)之间在所述系统(1)中提供负压,所述至少一个筛选装置(23 ,25)被布置成将流体分离成基本上包括固体,液体和/或气体的馏分,流体b的部分 在系统(1)中执行分数时,保持分离。 还描述了使用系统(1)的方法。