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    • 31. 发明申请
    • OSCILLATING SPRAY DEVICE
    • 振荡喷雾装置
    • WO1979000236A1
    • 1979-05-03
    • PCT/US1978000121
    • 1978-10-25
    • BOWLES FLUIDICS CORP
    • BOWLES FLUIDICS CORPSTOUFFER R
    • B05B01/08
    • B05B1/08F15C1/22G10K5/02Y10T137/2104Y10T137/2185
    • A fluid dispersal device (10) utilizes the Karman Vortex street phenomenon to cyclically oscillate a fluid stream before issuing the stream in a desired flow pattern. A chamber (13) includes an inlet (11) and outlet (12) with an obstacle or island (14) disposed therebetween to establish the vortex street. The vortex street causes the stream to be cyclically swept transversely of its flow direction in a manner largely determined by the size and shape of the obstacle relative to the inlet and outlet, the spacing between the obstacle and the outlet, the outlet area, and the Reynolds number of the stream. Depending on these factors, the flow pattern of the stream issued from the outlet may be either: a swept jet, residing wholly in the plane of the device and which breaks up into droplets solely as a result of the cyclic sweeping, the resulting spray pattern forming a line when impinging on a target; or a swept sheet, the sheet being normal to the plane of the device and being swept in the plane of the device, the resulting pattern containing smaller droplets than the swept jet pattern and covering a two-dimensional area when impinging upon a target.
    • 32. 发明申请
    • FULL COVERAGE FLUIDIC OSCILLATOR WITH AUTOMATED CLEANING SYSTEM AND METHOD
    • 全自动清洗系统和方法覆盖流体振荡器
    • WO2008076346A3
    • 2008-08-28
    • PCT/US2007025579
    • 2007-12-14
    • BOWLES FLUIDICS CORPGOPALAN SHRIDARRUSSELL GREGORY
    • GOPALAN SHRIDARRUSSELL GREGORY
    • B05B1/08A62C5/00A62C31/00B05B1/26B05B7/04B05B17/04F23D11/10F23D11/36F23D11/40F23D14/62
    • B05B1/08B08B5/02B60S1/52E03D9/002E03D2201/40
    • A full coverage fluidic oscillator (2) includes a fluidic circuit member preferably having an oscillation inducing internal chamber, at least one inlet (8) or source of fluid under pressure, at least a pair of output nozzles (14, 16) connected to the source of fluid for projecting at least first and second impinging fluid jets into free space, where the first and second impinging jets collide or impinge upon one another at a selected jet angle to generate a substantially omni-directional sheet jet having selected thickness. The first and second jets are aimed at a pre-selected intersection point in free space where impingement is to occur. The sheet jet's thickness ?y is determined by the time-varying path or oscillation of each of the first and second impinging jets. The first and second impinging jets can be made to oscillate or pulsate by use of vortex generating amplifier structures (68, 70, 72, 149) within the internal chamber's fluid flow paths.
    • 全覆盖流体振荡器(2)包括流体回路构件,该流体回路构件优选具有引起振荡的内部腔室,至少一个入口(8)或压力流体源,至少一对输出喷嘴(14,16) 用于将至少第一和第二冲击流体射流喷射到自由空间中的流体源,其中第一和第二冲击射流以选定射流角度相互碰撞或冲击,以产生具有选定厚度的基本上全向的射流。 第一和第二射流瞄准将要发生冲击的自由空间中的预选交叉点。 片状射流的厚度Δy由第一和第二冲击射流中的每一个的时变路径或振荡确定。 通过使用内部腔室的流体流动路径内的涡流产生放大器结构(68,70,72,149),可以使第一冲击射流和第二冲击射流振荡或脉动。
    • 33. 发明申请
    • ENCLOSURES FOR FLUIDIC OSCILLATORS
    • 流体振荡器的外壳
    • WO2007044354A3
    • 2007-07-26
    • PCT/US2006038683
    • 2006-10-03
    • BOWLES FLUIDICS CORP
    • RUSSELL GREGORYBERNING KEITHHESTER RUSSELL D
    • B05B1/08B05B1/14B05B1/18B60S1/52
    • B05B1/08B05B1/14B05B1/18B60S1/52Y10T137/2224
    • For those spray applications that use a fluidic oscillator (4) of the type that generates a spray by having a pressurized liquid flow through the oscillator and exhaust into a surrounding environment, and where such an oscillator has a boundary surface (4b) which has fabricated into it a channel (4c) in the form of what is referred to herein as fluidic circuit, an improved enclosure (2) for this oscillator includes: a body (10) having an interior (13) and an exterior (12) surface, wherein a portion of this interior surface (13) is configured to attach to the oscillator boundary surface (4b) so as to form with the oscillator's channel (4c) an enclosed pathway through which the to-be-sprayed liquid may flow, and wherein a segment (23) of this interior surface is configured so as to yield specified properties of the resulting spray.
    • 对于那些使用流体振荡器(4)的喷雾应用,该流体振荡器(4)通过使加压液体流过振荡器并排出到周围环境中而产生喷雾,并且其中这种振荡器具有制造出的边界表面(4b) 以其中形成为本文称为流体回路的形式的通道(4c),用于该振荡器的改进的外壳(2)包括:具有内部(13)和外部(12)表面的主体(10) 其中该内表面(13)的一部分被配置为附接到振荡器边界表面(4b),以与振荡器的通道(4c)一起形成封闭通道,待喷射液体可通过该封闭通道流动,并且其中 该内表面的区段(23)被构造成产生所得到的喷雾的指定特性。
    • 34. 发明申请
    • BACKLOAD FLUIDIC SWITCH WITH IMPROVED PRESSURE RECOVERY
    • 带有改进压力恢复功能的BACKLOAD FLUIDIC开关
    • WO0234195B1
    • 2002-09-06
    • PCT/US0127777
    • 2001-10-22
    • BOWLES FLUIDICS CORP
    • STOUFFER RONALD DRUSSELL GREGORY ASANTAMARINA ALAND
    • A61H7/00A61H23/04F15C1/14F15C1/22A61H1/00F15C1/08
    • F15C1/22A61H9/0078Y10T137/2076
    • a backload-responsive fluidic switch having high pressure recovery of more than 50% comprises a body member with a power nozzle (PN) having a width W and a centerline CL which is adapted to be coupled to a source of fluid under pressure for issuing a jet of fluid along the centerline (CL). A pair of diverging fluid flow passages (16, 18) have a common connection with said power nozzle (PN) and respective bounding walls, each respective bounding wall diverging from the centerline (CL) no more than about 50 degrees, and a splitter (40) defining respective inner walls of said pair of diverging walls (A2), the splitter (40) being spaced a distance of about 3W from the power nozzle. Inflatable bladder(s) (12, 13) connected to the diverging fluid flow passage(s), and a vent (V1, V2) connected to the other of said fluid flow passages.
    • 具有高于50%的高压恢复的反向负载流体开关包括具有宽度为W的动力喷嘴(PN)和中心线CL的主体构件,该主体构件适于联接到压力流体源上以发出 沿着中心线(CL)的流体射流。 一对发散流体流动通道(16,18)与所述动力喷嘴(PN)和相应的边界壁具有公共连接,每个相应的边界壁从中心线(CL)偏离不超过约50度,并且分流器 40)限定所述一对发散壁(A2)的相应内壁,所述分离器(40)与所述动力喷嘴隔开大约3W的距离。 连接至发散流体流动通道的可膨胀囊(12,13)以及连接至所述流体流动通道中的另一个的通气口(V1,V2)。