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    • 31. 发明申请
    • COMPRESSION METHOD AND MEANS
    • 压缩方法与手段
    • WO2010094936A1
    • 2010-08-26
    • PCT/GB2010/000309
    • 2010-02-22
    • HAMMERBECK, John, Philip, Roger
    • HAMMERBECK, John, Philip, Roger
    • F04D21/00F04D23/00F04D27/02F01D1/34F01D1/32
    • F04D23/00F04D21/00F04D27/0246F04D29/052
    • The invention is a compression method having characteristics of smooth compression and internal cooling of the gas. Embodiments of the invention employ a cylindrical chamber and an orbiting rotor to create a moving duct or chamber whose walls converge, relative to a static gas packet drawn into the moving duct, at a "pinch point". Preferably the closing speed of the walls is subsonic and the speed of the pinch point is supersonic. This enables high pressure to co-exist, at the narrowing end of the duct, with low pressure elsewhere in the duct, because of the pressure information barrier produced by the supersonic advance of the pinch point. The invention also discloses means for providing gas inlet and outlet functionality, and means for providing a variable flow compressor.
    • 本发明是具有气体平滑压缩和内部冷却特性的压缩方法。 本发明的实施例采用圆柱形腔室和绕动转子来产生移动的管道或腔室,其相对于被吸入移动管道的静态气体组件以“夹点”收敛。 优选地,壁的闭合速度是亚音速的,夹点的速度是超音速的。 这是因为压缩信息障碍是通过夹点的超音速提前产生的,因此能够在管道的狭窄端部共同存在管道的其它部分的低压力。 本发明还公开了用于提供气体入口和出口功能的装置,以及用于提供可变流量压缩机的装置。
    • 32. 发明申请
    • COMPRESSION METHOD AND MEANS
    • 压缩方法与手段
    • WO2008122781A1
    • 2008-10-16
    • PCT/GB2008/001193
    • 2008-04-03
    • HAMMERBECK, John, Philip, Roger
    • HAMMERBECK, John, Philip, Roger
    • F04D21/00F04D23/00
    • F04D23/00F04D21/00
    • The invention is a compression method having characteristics of smooth compression and internal cooling of the gas. Embodiments of the invention employ a cylindrical chamber and an orbiting rotor to create a moving duct or chamber whose walls converge, relative to a static gas packet drawn into the moving duct, at a 'pinch point'. Preferably the closing speed of the walls is subsonic and the speed of the pinch point is supersonic. This enables high pressure to co-exist, at the narrowing end of the duct, with low pressure elsewhere in the duct, because of the pressure information barrier produced by the supersonic advance of the pinch point. The invention also discloses means for adjusting the running clearance between the cylinder and the rotor, and means for counterbalancing the rotor.
    • 本发明是一种具有气体平滑压缩和内部冷却特性的压缩方法。 本发明的实施例采用圆柱形腔室和绕动转子来产生移动的管道或腔室,其相对于被吸入移动管道中的静态气体组件在“夹点”处会聚。 优选地,壁的闭合速度是亚音速的,夹点的速度是超音速的。 这是因为压力信息障碍物由压缩点的超音速提前产生,因此能够在管道的狭窄端处共同存在管道的其它部分的低压。 本发明还公开了用于调节气缸和转子之间的运行间隙的装置,以及用于平衡转子的装置。
    • 40. 发明申请
    • FAN
    • 风扇
    • US20130280061A1
    • 2013-10-24
    • US13880657
    • 2011-09-26
    • Timothy Nicholas Stickney
    • Timothy Nicholas Stickney
    • F04D23/00
    • F04D23/00F04D25/08F04D27/00F04F5/16F04F5/461
    • A fan includes a nozzle and a device for creating a primary air flow through the nozzle. The nozzle includes a mouth for emitting the primary air flow, and defines a bore through which a secondary air flow from outside the fan is drawn by the primary air flow emitted from the mouth and which combines with the primary air flow to produce a combined air flow. To allow a user to adjust at least one parameter, for example at least one of the profile, orientation and the direction, of the combined air flow, the fan comprises an insert which is locatable at least partially within the bore of the nozzle. The fan may be provided with a set of such inserts.
    • 风扇包括喷嘴和用于产生通过喷嘴的一次空气流的装置。 喷嘴包括用于发射一次空气流的口,并且限定了一个孔,通过该孔从风扇外部抽取由二次空气流发出的一次空气流吸入的二次空气流,并与第一空气流组合以产生组合空气 流。 为了允许使用者调整至少一个参数,例如组合空气流的轮廓,取向和方向中的至少一个参数,风扇包括可至少部分地位于喷嘴的孔内的插入件。 风扇可以设置有一组这样的插入件。