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    • 15. 发明申请
    • METHOD OF DEMAND MANAGEMENT AND CONTROL OF FLUID PIPE NETWORKS
    • 流体管网的需求管理与控制方法
    • WO2015031954A1
    • 2015-03-12
    • PCT/AU2014/050208
    • 2014-09-04
    • RUBICON RESEARCH PTY LTD
    • AUGHTON, David, JohnCHOY, Sumith
    • E02B1/00G05B19/00G06F19/00G06F17/00
    • G05D7/0641E02B13/00F17D1/00G05B17/02G05D7/0664G06F17/00
    • The invention discloses a method of demand management and control of limited pressure head or gravity fed fluid pipe networks (42). The method includes the steps of providing a computer controlled fluid network (40) for delivery of fluid through a plurality of valves (16, 18, 20), maintaining a real time database (48) within said computer controlled fluid network (40) of predetermined parameters including flow schedules and capabilities of the plurality of valves (16, 18, 20), requesting, through a user interface (44), a flow rate and time of delivery of said fluid from the fluid network to at least one of plurality of valves (16, 18, 20), determining, using the predetermined parameters from real time database (48), the availability of providing delivery and flow rate of fluid from the fluid network (40) to the at least one of said plurality of valves (16, 18, 20) based on hydraulic capacity of the fluid network (42), and, if the hydraulic capacity is available, calculating parameters using the real time database (48) to deliver fluid to the at least one of said plurality of valves (16, 18, 20) through said computer controlled fluid network (42), whereby each of the plurality of valves (16, 18, 20) is monitored and adjustably controlled to provide the flow rate and delivery through the at least one of said plurality of valves (16, 18, 20) in unison with the monitoring and controlling of the others of the plurality of valves (16, 18, 20) to maintain the flow and manage the pressure head within fluid pipe network (42) between predetermined limits.
    • 本发明公开了一种有限压力头或重力供给流体管网的需求管理和控制方法。 该方法包括以下步骤:提供用于通过多个阀(16,18,20)输送流体的计算机控制流体网络(40),将实时数据库(48)保持在所述计算机控制的流体网络(40)内 预定参数,包括多个阀门(16,18,20)的流程和能力,通过用户界面(44)请求将流体从流体网络传送到多个阀门中的至少一个的流量和时间 的阀(16,18,20),使用来自实时数据库(48)的预定参数确定提供从流体网络(40)到所述多个流体网络(40)中的至少一个的流体的输送和流速的可用性 基于流体网络(42)的液压能力的阀(16,18,20),以及如果液压容量可用,则使用实时数据库(48)计算参数以将流体输送到所述多个 的阀(16,18,20) r控制流体网络(42),由此监测和可调节地控制多个阀(16,18,20)中的每一个以提供通过所述多个阀(16,18,20)中的至少一个的流速和输送 )与多个阀(16,18,20)中的其他阀的其他监控和控制一致以保持流量并且将流体管网(42)内的压头管理在预定限度之间。
    • 16. 发明申请
    • VALVE
    • WO2014169327A1
    • 2014-10-23
    • PCT/AU2014/000420
    • 2014-04-11
    • RUBICON RESEARCH PTY LTD
    • AUGHTON, David, JohnCATRINA, Marius
    • F16K7/06F16K1/00F16K31/126A01G25/00
    • F16K41/103A01G25/16F16K7/02F16K7/14F16K41/10
    • The invention provides a valve for controlling fluid flow from an inlet (12) of a pipe fitting (10) to at least one outlet (14, 16) of the pipe fitting (10) at an angle to the inlet (12). The pipe fitting (10) includes an inner collapsible bellows (18) fixed at a position opposite the inlet (12). The bellows (18) has a support annulus (24) at the other end adjacent the inlet (12), whereby, in a closed position, the bellows (18) prevents fluid flow from the inlet (12) to the at least one outlet (14, 16) as the fluid is trapped within bellows (18). In the open position, the fluid can flow from the inlet (12) to the at least one outlet (14, 16) when the bellows (18) is collapsed.
    • 本发明提供了一种阀,用于控制从配管(10)的入口(12)到管接头(10)的至少一个出口(14,16)的流体与入口(12)成一角度的流动。 管道配件(10)包括固定在与入口(12)相对的位置处的内部可折叠波纹管(18)。 波纹管(18)在邻近入口(12)的另一端具有支撑环(24),由此在关闭位置,波纹管(18)防止流体从入口(12)流到至少一个出口 (14,16),因为流体被捕获在波纹管(18)内。 在打开位置时,当波纹管(18)折叠时,流体可以从入口(12)流到至少一个出口(14,16)。
    • 17. 发明申请
    • CONTROL GATES AND VALVES
    • 控制门和阀
    • WO2014008553A1
    • 2014-01-16
    • PCT/AU2013/000777
    • 2013-07-12
    • RUBICON RESEARCH PTY LTD
    • AUGHTON, David, John
    • E02B13/00E02B8/04E02B7/40G01F1/00F16K7/00F16L11/00
    • E02B5/08E02B7/40E02B8/04E02B13/02F16L11/00G01F1/662G01F1/667G01F15/005Y10T137/7882
    • ABSTRACT The invention discloses an overshot control gate (26) for use with trapezoidal irrigation channels (10). Gate (26) has a rigid rectangular section (38) adapted to, in use, be pivotally mounted to the base (12) of trapezoidal irrigation channel (10). A pair of triangular sections are pivotally mounted on opposite sides (60, 62) of the rigid rectangular section (38). Each of the triangular sections being divided into first and second triangular sections (44, 46, 52, 54) with a common apex (70, 72) at the base (12) of the trapezoidal irrigation channel (10). Each of the first triangular sections (44, 46) being rigid and adapted to, in use, be pivotally mounted (48, 50) to opposite side walls (14, 16) of trapezoidal irrigation channel (10). Each of the second triangular sections 52, 54) including the pivotal mounting on opposite sides (60, 62) of rectangular section (38) and being formed of a flexible material. Also disclosed is a pipe flow meter (210) and a duckbill valve (200).
    • 摘要本发明公开了一种与梯形灌溉通道(10)一起使用的过冲控制门(26)。 门26具有刚性矩形部分38,适于在使用中枢转地安装到梯形冲洗通道10的底座12上。 一对三角形部分枢转地安装在刚性矩形部分(38)的相对侧(60,62)上。 每个三角形部分被分成具有在梯形冲洗通道(10)的基部(12)处的公共顶点(70,72)的第一和第二三角形部分(44,46,52,54)。 每个第一三角形部分(44,46)是刚性的并且适于在使用中枢转地安装(48,50)到梯形冲洗通道(10)的相对侧壁(14,16)。 每个第二三角形部分52,54)包括在矩形部分(38)的相对侧(60,62)上的枢轴安装并且由柔性材料形成。 还公开了一种管道流量计(210)和鸭嘴阀(200)。