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    • 22. 发明申请
    • FLUID LEVEL CONTROL SYSTEM
    • 流体液位控制系统
    • WO2003012209A1
    • 2003-02-13
    • PCT/CA2002/001157
    • 2002-07-26
    • TROJAN TECHNOLOGIES INC.
    • KEZELE, Dusko, AntonioCERNY, Jason, J.ROYCE, Alan, J.TAGHIPOUR, FariborzTRAUBENBERG, GeorgeKAMBULOW, Edward, P.
    • E02B7/40
    • E02B7/40E02B7/205G05D7/0173Y10T137/7287
    • There is described a novel fluid level control system, particularly useful for controlling the level of water flowing in an open channel. The fluid level control system comprises a gate having a flap portion (3) interconnected to a lever portion (5). The flap portion is rotatable about a first pivot point (8) and comprises a first weight. The system further comprises a frame (1) which is fixed with respect to the flap portion. A linkage (11, 12, 13) interconnects the flap portion and the lever portion, and is connected to the frame at a second pivot point (10) different than the first pivot point (8). Under changing flow conditions in the channel, the present system operates by both : absolute movement of the lever portion and the flap portion, and (ii) relative movement between the lever portion and the flap portion. A fluid treatment system comprising the fluid level control system and a method for controlling the level of a flowing fluid are also described.
    • 描述了一种新颖的液位控制系统,特别适用于控制在开放通道中流动的水位。 液位控制系统包括具有互连到杆部分(5)的翼片部分(3)的门。 翼片部分可围绕第一枢转点(8)旋转并且包括第一重物。 该系统还包括相对于翼片部分固定的框架(1)。 连杆(11,12,13)将翼片部分和杆部分互连,并且在与第一枢转点(8)不同的第二枢转点(10)处连接到框架。 在通道中的流动条件变化下,本系统通过杠杆部分和翼片部分的绝对运动,以及(ii)杠杆部分和翼片部分之间的相对运动。 还描述了包括液位控制系统的流体处理系统和用于控制流动流体的水平的方法。
    • 23. 发明申请
    • FLOW REGULATOR
    • 流量调节器
    • WO1984004801A1
    • 1984-12-06
    • PCT/FI1984000035
    • 1984-05-17
    • HALTON OYAALTO, ErkkiYLÄ-HEMMILÄ, Veikko
    • HALTON OY
    • F24F11/04
    • F24F13/1426F24F11/75F24F13/1413F24F2013/1466G05D7/0173Y10T137/7786Y10T137/7871
    • A flow regulator for gaseous substances, particularly a flow regulator intended for air in air-conditioning and ventilation installations, for maintaining the volumetric flow of the gaseous substance at desired magnitude with sufficient accuracy when the differential pressure acting across the flow regulator (10) varies within given limits. The flow regulator (10) comprises an envelope (11) and a regulating member (12) turnably disposed in the flow passage confined by the envelope (11). The torque produced by the flow of gaseous substance on the regulating member (12) and on the other hand a countertorque dependent on the position of the regulating member (12) cause the regulating member (12) turning in the flow passage to assume a position of equilibrium such that the requisite pressure drop is obtained for maintaining the volumetric flow rate at predetermined magnitude. The regulating member (12) is substantially slightly curved at least in the flow surface facing the incoming flow of the gaseous substance. The turning angle between the initial and ultimate positions of the regulating member (12) is substantially the same at volumetric flows of different magnitudes when the differential pressure range is the same. The initial and ultimate positions of the regulating member (12) are dependent on the magnitude of the volumetric flow when the differential pressure is the same.
    • 一种用于气态物质的流量调节器,特别是用于空调和通风设备中的空气的流量调节器,用于当跨过流量调节器(10)作用的压差变化时,以足够的精度将气态物质的体积流量保持在期望的大小 在给定的限度内。 流量调节器(10)包括可旋转地设置在由信封(11)限制的流动通道中的封套(11)和调节构件(12)。 由调节构件(12)上的气态物质的流动产生的扭矩,另一方面取决于调节构件(12)的位置的反转矩使得调节构件(12)在流动通道中转动以呈现位置 的平衡,使得获得必要的压降以将体积流量保持在预定的大小。 调节构件(12)至少在面向气态物质的进入流的流动表面上基本略微弯曲。 当差压范围相同时,调节构件(12)的初始位置和最终位置之间的转动角度在不同大小的体积流量上基本相同。 当差压相同时,调节构件(12)的初始位置和最终位置取决于体积流量的大小。
    • 24. 发明申请
    • 유량조절편의 틸팅 각도 제한 기능을 가지는 유량 조절 유닛
    • 具有限制流量控制倾斜角的功能的流量控制单元
    • WO2015133834A1
    • 2015-09-11
    • PCT/KR2015/002122
    • 2015-03-05
    • 이장우
    • 이장우
    • F16K15/14F16K21/04
    • F16K15/144E03C1/025E03C1/08E03C2001/026G05D7/0173
    • 유량조절편의 틸팅 각도 제한 기능을 가지는 유량 조절 유닛이 개시된다. 본 발명의 일 실시예에 따른 유량조절편의 틸팅 각도 제한 기능을 가지는 유량 조절 유닛은 유로 상에 유체의 이동 방향과 수직하게 배치되며, 상기 유체가 통과하는 하나 이상의 제 1 유체통과홀이 형성되며 상기 제 1 유체통과홀과 대응되는 부분에 상기 유체가 유입되는 방향으로 기울어져 틸팅 가능하게 구비되며 상기 유체의 유압에 의해 가압되어 틸팅 됨으로써 상기 제 1 유체통과홀의 개도를 조절하는 유량조절편이 형성되는 유량조절 플레이트 및 상기 제 1 유체통과홀과 연통되는 제 2 유체통과홀이 형성되며 상기 제 2 유체통과홀의 직경은 상기 제 1 유체통과홀의 직경보다 작게 형성되어 상기 유량조절편이 지지됨으로써 상기 유량조절편의 틸팅 각도를 제한하는 틸팅 각도 제한 플레이트를 포함한다.
    • 公开了具有限制流量控制件的倾斜角的功能的流量控制单元。 根据本发明的一个实施例,具有限制流量控制件的倾斜角度的功能的流量控制单元包括:流动控制板,其垂直于液体的流动方向设置在 流动通道,并且在其上形成有一个或多个流体通过的第一流体通孔,并且在其上形成有流动控制件的第一流体通孔设置在与第一流体通孔对应的部分中, 流体的流入方向能够倾斜,并且通过由于流体的液压施加的压力而倾斜来控制第一流体通孔的开度; 和倾斜角限制板,其上形成有与第一流体通孔连通的第二流体通孔,其中第二流体通孔的直径小于第一流体通孔的直径 允许流动控制件被支撑以限制流动控制件的倾斜角度。
    • 26. 发明申请
    • INHALATOR WITH BREATH FLOW REGULATION
    • 吸入器与呼吸道流量调节
    • WO1995005208A1
    • 1995-02-23
    • PCT/GB1994001812
    • 1994-08-18
    • FISONS PLCCLARKE, Alastair, RobertSLEATH, CliveSHEPHERD, Michael, Trevor
    • FISONS PLC
    • A61M15/00
    • G05D7/0126A61M15/002A61M15/0028A61M2202/064G05D7/0113G05D7/0133G05D7/0173
    • There is provided a device for the administration of an inhalation medicament, including a body defining a through-going air pathway having a longitudinal axis, an air inlet, an air outlet forming a mouthpiece, means for dispensing medicament into the pathway and air flow regulating means, characterised in that the air flow regulating means includes a movable obstructing means adapted to reduce the cross-sectional area of the pathway at a location between the air inlet and the means for dispensing medicament, and biassing means, whereby the obstructing means is biassed into a first resting position in which the cross-sectional area of the pathway is minimum and is adapted to move against the bias of the biassing means to a second position in which the cross-sectional area of the pathway is maximum in response to a pressure fall at the mouthpiece caused by inhalation and is adapted to move further to a third position in which the cross-sectional area of the pathway is less than maximum in response to a greater pressure fall at the mouthpiece caused by inhalation.
    • 提供了一种用于施用吸入药物的装置,其包括限定具有纵向轴线的直通空气通道的主体,空气入口,形成接口管的空气出口,用于将药物分配到通路中的装置和气流调节 装置,其特征在于,所述空气流量调节装置包括适于减小所述通道在所述空气入口与所述用于分配药物的装置之间的位置处的横截面面积的可移动阻塞装置,以及所述阻塞装置被偏压 进入第一静止位置,其中通道的横截面面积最小并且适于抵抗偏压装置的偏压移动到第二位置,在第二位置,响应于压力的通路的横截面积最大 在由吸入引起的嘴部处落下,并且适于进一步移动到第三位置,其中通路的横截面面积小于最大 响应于吸入引起的喉舌压力下降较大。
    • 27. 发明申请
    • FLOW REGULATOR AND ITS USE
    • 流量调节器及其使用
    • WO1984004804A1
    • 1984-12-06
    • PCT/FI1984000038
    • 1984-05-17
    • HALTON OYAALTO, ErkkiYLÄ-HEMMILÄ, Veikko
    • HALTON OY
    • F24F11/04
    • G05D7/0173F24F11/75F24F13/1413F24F13/1426F24F2013/1466Y10T137/7786Y10T137/7871Y10T137/8275
    • A flow regulator, intended for gaseous substances, in particular for air-inconditioning and ventilation installations, for maintaining the volumetric flow of the gaseous substance at desired magnitude with sufficient accuracy when the differential pressure acting across the flow regulator (10) varies within desired limits. The flow regulator (10) comprises an envelope (11) and a regulating member (12) disposed in the flow passage confined by the envelope (11). The flow regulator (10) is provided with limiter members (25; 26a, 26b) for limiting the differential pressure range of the flow regulator, said limiter members (25; 26a, 26b) being disposed to restrict the movement of the regulating member (12). The limiters (26a, 26b) are adjustable and/or self-adjusting. The flow regulator (10) has a scale (39) for setting the limit members (25; 26a, 26b).
    • 用于气体物质的流量调节器,特别是用于空气调节和通风装置,用于当跨过流量调节器(10)作用的压差在期望的限度内变化时,以足够的精度将气态物质的体积流量保持在期望的大小 。 流量调节器(10)包括设置在由信封(11)限制的流动通道中的封套(11)和调节构件(12)。 流量调节器(10)设置有用于限制流量调节器的压差范围的限制器构件(25; 26a,26b),所述限制器构件(25; 26a,26b)设置成限制调节构件的运动 12)。 限制器(26a,26b)是可调节和/或自调节的。 流量调节器(10)具有用于设定极限构件(25; 26a,26b)的刻度(39)。
    • 29. 发明公开
    • Constant flow regulated valves
    • Ventile mit konstanter Durchflussregelung
    • EP0840188A1
    • 1998-05-06
    • EP97308652.3
    • 1997-10-29
    • Appliance Brassware Limited
    • Neath, Noel Christopher
    • G05D7/01
    • G05D7/0173
    • A ball valve has a cartridge comprising a sleeve (38) and constant flow regulator device (44) inserted into a bore (34) through the ball (20). A further constant flow regulator (50), of higher flow rating, is located in an outlet port (14) of the valve. When the ball bore is aligned with the flow axis, all flow passes through the ball bore and the lower flow rating regulator (44) is dominant. At 45° to the flow axis, flow by-passes the ball, passing through a surrounding ball chamber (18), and the flow rate is determined by the higher flow rating regulator (50). In the closed condition of the valve the cartridge can be extracted from the ball bore through an aligned access port (16) for maintenance or exchange of the lower rating regulator.
    • 球阀具有包括套筒(38)​​和通过球(20)插入孔(34)中的恒定流量调节器装置(44)的盒。 进一步恒定的流量调节器(50)位于阀门的出口(14)中。 当球孔与流动轴线对准时,所有流量都通过球孔,下流量调节器(44)占优势。 在流动轴线45°处,流过球,通过周围的球室(18),流量由更高的流量计调节器(50)确定。 在阀的关闭状态下,可以通过对准的进入口(16)将球阀从球孔中提取出来,用于维护或更换下部评级调节器。