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    • 34. 发明授权
    • High-efficiency jet ejector and propulsive jet
    • 高效喷射器和推进射流
    • US07780099B2
    • 2010-08-24
    • US10755570
    • 2004-01-12
    • Mark T. HoltzappleOthon Rediniotis
    • Mark T. HoltzappleOthon Rediniotis
    • B05B7/06
    • F02K7/12F02C3/32F05D2250/292F05D2250/311F05D2260/601Y02T50/671
    • According to one embodiment of the invention, a system for altering fluid flow includes a main body having a first fluid flowing therethrough, a plurality of conduits disposed within the main body to form a plurality of flow paths, and a nozzle directing a second fluid through the innermost conduit. The second fluid has a greater velocity than the first fluid. The second fluid successively entrains the first fluid flowing through the flow paths in such a manner that the portion of the first fluid flowing through the innermost flow path existing between the innermost conduit and its adjacent conduit is entrained first and the portion of the first fluid flowing through the outermost flow path existing between the outermost conduit and the main body is last.
    • 根据本发明的一个实施例,用于改变流体流动的系统包括具有流过其中的第一流体的主体,设置在主体内的多个导管,以形成多个流路,以及将第二流体引导通过的喷嘴 最内层的导管。 第二流体具有比第一流体更大的速度。 第二流体依次夹持第一流体流过流动路径,使得流过最内流道的第一流体的部分流过最内导管及其相邻导管之间,并且第一流体的一部分流动 通过存在于最外面的导管和主体之间的最外面的流路是最后的。
    • 35. 发明授权
    • Vapor-compression evaporation system and method
    • 蒸气压缩蒸发系统及方法
    • US07708865B2
    • 2010-05-04
    • US10944317
    • 2004-09-17
    • Mark T. HoltzappleGary P. NoyesGeorge A. Rabroker
    • Mark T. HoltzappleGary P. NoyesGeorge A. Rabroker
    • B01D1/26B01D1/28B01D3/00
    • F28D9/0037F04F5/466F04F5/467F04F5/54Y10S159/08Y10S203/08
    • According to one embodiment of the invention, a vapor-compression evaporation system includes a plurality of vessels in series each containing a feed having a nonvolatile component, a mechanical compressor coupled to the last vessel in the series and operable to receive a vapor from the last vessel in the series, a pump operable to deliver a cooling liquid to the mechanical compressor, a tank coupled to the mechanical compressor and operable to separate liquid and vapor received from the mechanical compressor, a plurality of heat exchangers coupled inside respective ones of the vessels, the heat exchanger in the first vessel in the series operable to receive the vapor from the tank, at least some of the vapor condensing therein, whereby the heat of condensation provides the heat of evaporation to the first vessel in the series, and wherein at least some of the vapor inside the first vessel in the series is delivered to the heat exchanger in the next vessel in the series, whereby the condensing, evaporating, and delivering steps continue until the last vessel in the series is reached.
    • 根据本发明的一个实施例,蒸气压缩蒸发系统包括多个串联的容器,每个容器包含具有非挥发性组分的进料,机械压缩机,其耦合到该系列中的最后一个容器,并可操作以从最后的容器接收蒸汽 串联的容器,可操作以将冷却液体输送到机械压缩机的泵,耦合到机械压缩机并可操作以分离从机械压缩机接收的液体和蒸汽的罐,耦合在相应的一个容器内的多个热交换器 该系列中的第一容器中的热交换器可操作以从罐接收蒸气,其中至少一些蒸汽在其中冷凝,由此冷凝热量将蒸发热量提供给该系列中的第一容器,并且其中在 该系列中的第一容器内部的至少一部分蒸汽被输送到该系列的下一个容器中的热交换器, 继电器,蒸发和输送步骤继续,直到达到系列中的最后一个容器。
    • 37. 发明申请
    • System and Method for Maintaining Relative Axial Positioning Between Two Rotating Assemblies
    • 在两个旋转组件之间维持相对轴向定位的系统和方法
    • US20080026855A1
    • 2008-01-31
    • US11828905
    • 2007-07-26
    • Mark T. HoltzappleGeorge A. Rabroker
    • Mark T. HoltzappleGeorge A. Rabroker
    • F16C3/00
    • F01C21/008F01C1/10
    • According to one embodiment of the invention, a system for maintaining relative axial positioning between two rotating assemblies comprises a first rotatable assembly and a second rotatable assembly. The first rotatable assembly has captor plates. The captor plates form a cavity between a first of the captors plates and a second of the captor plates. The second rotatable assembly has a thrust plate. The thrust plate comprises a disc positioned within the cavity of the captor plates. The first rotatable assembly is axially positioned with respect to the second rotatable assembly through a rolling interaction between the thrust plate and the captor plates, or the second rotatable assembly is axially positioned with respect to the first rotatable assembly through a rolling interaction between the thrust plate and the captor plates.
    • 根据本发明的一个实施例,用于维持两个旋转组件之间的相对轴向定位的系统包括第一可旋转组件和第二可旋转组件。 第一可旋转组件具有捕获板。 捕获板在第一个捕获板和第二个捕获板之间形成一个空腔。 第二可旋转组件具有止推板。 推力板包括一个盘,该盘位于捕获板的空腔内。 第一可旋转组件通过推力板和夹板之间的滚动相互作用相对于第二可旋转组件轴向定位,或者第二可旋转组件相对于第一可旋转组件通过推力板之间的滚动相互作用轴向定位 和捕鼠板。