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    • 51. 发明授权
    • Ultrasonic waveguide pump and method of pumping liquid
    • 超声波波导泵和泵送液体的方法
    • US08191732B2
    • 2012-06-05
    • US12335332
    • 2008-12-15
    • Thomas David EhlertPatrick Sean McNichols
    • Thomas David EhlertPatrick Sean McNichols
    • F04B17/00
    • F04B15/02F04B19/20F04F7/00
    • In a waveguide pump and method of pumping liquid, at least a portion of an elongate ultrasonic waveguide is immersed in a liquid reservoir. The waveguide has first and second ends, a nodal region located longitudinally therebetween, and an internal passage extending longitudinally within the waveguide from the first end to a location beyond the nodal region toward the second end of the waveguide. The waveguide also has an inlet at the first end in fluid communication with the internal passage and an outlet in fluid communication with the internal passage and spaced longitudinally from the inlet beyond the nodal region of the waveguide. The immersed portion of the waveguide extends from the inlet to a location that is one of generally longitudinally adjacent, at and beyond the nodal region of the waveguide. The waveguide is ultrasonically excited to cause the waveguide to vibrate at an ultrasonic frequency.
    • 在波导泵和泵送液体的方法中,将细长超声波导的至少一部分浸入液体储存器中。 波导具有第一和第二端,纵向位于其间的节点区域以及在波导内从第一端纵向延伸到超过节点区域朝向波导的第二端的位置的内部通道。 波导还在第一端处具有与内部通道流体连通的入口和与内部通道流体连通的出口,并且与入口的纵向间隔超过波导的节点区域。 波导的浸入部分从入口延伸到大致纵向相邻,在波导的节点区域和之外的位置之一。 波导被超声波激发,使波导以超声频率振动。
    • 57. 发明授权
    • Ultrasonic liquid delivery device
    • 超声波液体输送装置
    • US07810743B2
    • 2010-10-12
    • US11780860
    • 2007-07-20
    • Patrick Sean McNicholsThomas David EhlertRobert Allen Janssen
    • Patrick Sean McNicholsThomas David EhlertRobert Allen Janssen
    • B05B1/08B05B3/04
    • F02M69/041A61K9/0024F02M47/027F02M51/005F02M51/0603F02M61/168F02M2547/003F23D11/345
    • An ultrasonic liquid delivery device has an elongate housing with an internal chamber, an inlet in fluid communication with the internal chamber of the housing, and an outlet in fluid communication with the internal chamber of the housing. An elongate ultrasonic waveguide is disposed at least in part within the internal chamber of the housing to ultrasonically energize liquid within the internal chamber prior to the liquid being exhausted from the housing through the outlet. The ultrasonic waveguide has an agitating member extending outward from the ultrasonic waveguide within the internal chamber of the housing intermediate the inlet and the outlet. The agitating member and the ultrasonic waveguide are constructed and arranged for dynamic motion of the agitating member relative to the ultrasonic waveguide upon ultrasonic vibration of the ultrasonic waveguide. An excitation device is operable to ultrasonically excite the ultrasonic waveguide and the agitating member.
    • 超声波液体输送装置具有细长壳体,其具有内部腔室,与壳体的内部腔室流体连通的入口以及与壳体的内部腔室流体连通的出口。 细长的超声波波导至少部分地设置在壳体的内部腔室内,以在液体通过出口从壳体排出之前对内部腔室内的液体进行超声波激励。 该超声波波导具有一个搅拌构件,该搅拌构件从入口和出口中部的壳体的内部腔室内的超声波导向外延伸。 搅拌构件和超声波导被构造和布置成用于在超声波波导的超声波振动时搅拌构件相对于超声波导的动态运动。 励磁装置可操作以超声波激发超声波导和搅拌构件。
    • 59. 发明申请
    • ULTRASONIC TREATMENT CHAMBER FOR INITIATING THERMONUCLEAR FUSION
    • 用于启动热熔融的超声波处理室
    • US20090147905A1
    • 2009-06-11
    • US11950943
    • 2007-12-05
    • Robert Allen JanssenJohn Glen AhlesThomas David EhlertJohn Gavin MacDonaldEarl C. McCraw, JR.Patrick Sean McNicholsPaul Warren RasmussenSteve Roffers
    • Robert Allen JanssenJohn Glen AhlesThomas David EhlertJohn Gavin MacDonaldEarl C. McCraw, JR.Patrick Sean McNicholsPaul Warren RasmussenSteve Roffers
    • G21B1/11
    • G21B3/00Y02E30/18
    • A thermonuclear fusion system having a treatment chamber in which gas isotopes are fused to initiate a thermonuclear fusion reaction is disclosed. Specifically, the treatment chamber has an elongate housing through which liquid and gas isotopes flow longitudinally from an inlet port to an outlet port thereof. An elongate ultrasonic waveguide assembly extends within the housing and is operable at a predetermined ultrasonic frequency and a predetermined electrode potential to ultrasonically enhance the concentration of dissolved hydrogen gas isotopes within the housing or energize and electrolyze the liquid and gas isotopes within the housing. An elongate ultrasonic horn of the waveguide assembly is disposed at least in part intermediate the inlet and outlet ports, and has a plurality of discrete agitating members in contact with and extending transversely outward from the horn intermediate the inlet and outlet ports in longitudinally spaced relationship with each other. The horn and agitating members are constructed and arranged for dynamic motion of the agitating members relative to the horn at the predetermined frequency and to operate in an ultrasonic cavitation mode of the agitating members corresponding to the predetermined frequency and the liquid and gas isotopes being treated in the chamber.
    • 公开了一种具有处理室的热核聚变系统,其中气体同位素被熔合以引发热核聚变反应。 具体地说,处理室具有细长的壳体,液体和气体同位素通过该壳体从入口端口到其出口纵向流动。 细长的超声波波导组件在壳体内延伸并且可以预定的超声波频率和预定的电极电位工作,以超声波地增强壳体内溶解的氢气同位素的浓度,或激励和电解壳体内的液体和气体同位素。 波导组件的细长超声波喇叭至少部分地设置在入口和出口的中间,并且具有多个离散的搅拌构件,其与入口和出口端口处的喇叭中的接触并横向向外延伸,与纵向间隔开的关系 彼此。 喇叭和搅拌构件被构造和布置成用于以预定频率相对于喇叭的搅动构件的动态运动,并且在对应于预定频率的搅拌构件的超声空化模式和被处理的液体和气体同位素 房间。