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    • 5. 发明申请
    • METHOD AND SYSTEM FOR FLUID SEPARATION WITH AN INTEGRATED CONTROL SYSTEM
    • 具有集成控制系统的流体分离方法与系统
    • WO2013091719A1
    • 2013-06-27
    • PCT/EP2011/073881
    • 2011-12-22
    • STATOIL PETROLEUM ASHØYDAL, JanKRISTIANSEN, OlavEIKREM, Gisle OttoFJALESTAD, Kjetil
    • HØYDAL, JanKRISTIANSEN, OlavEIKREM, Gisle OttoFJALESTAD, Kjetil
    • B01D45/12B01D19/00B04C3/00B04C3/06B04C11/00G05D7/06
    • B01D19/0063B01D19/0042B01D45/12B04C11/00
    • A system for separating an input fluid flow comprising gas and liquid into separate gas and liquid flows, the system comprising: a primary inline separator configured to receive said input fluid flow and to separate said input fluid flow into a primary separator liquid output flow and a primary separator gas output flow; at least one secondary inline separator connected downstream from said primary inline separator to receive at least one of said primary separator output flows and to separate said received primary separator output flow into a secondary separator liquid output flow and a secondary separator gas output flow; a system gas outlet connected to at least one of said primary and secondary separators to output said respective gas output flow; a system liquid outlet connected to at least one of said primary and secondary separators to output said respective liquid output flow; and a control system configured to regulate flow through said primary and secondary separators to ensure a flow of gas from said gas output with a maximum amount of liquid carry-over and a flow of liquid from said liquid outlet with a maximum amount of entrained gas.
    • 一种用于将包括气体和液体的输入流体流分离成单独的气体和液体流的系统,所述系统包括:主要在线分离器,其被配置为接收所述输入流体流并将所述输入流体流分离成主分离器液体输出流和 主分离器气体输出流量; 至少一个二次在线分离器连接在所述主要在线分离器的下游,以接收所述主分离器输出流中的至少一个,并将所述接收到的主分离器输出流分离成次级分离器液体输出流和次级分离器气体输出流; 系统气体出口连接到所述主分离器和次分离器中的至少一个,以输出所述相应的气体输出流; 连接到所述主分离器和次分离器中的至少一个的系统液体出口,以输出所述相应的液体输出流; 以及控制系统,被配置为调节通过所述主分离器和次级分离器的流量,以确保来自所述气体输出的气体从最大量的夹带气体的所述液体出口的最大量的液体滞留和液体流动。
    • 6. 发明申请
    • METHOD AND EQUIPMENT FOR DETERMINING THE INTERFACE BETWEEN TWO OR MORE FLUID PHASES
    • 用于确定两个或多个流体相之间的界面的方法和设备
    • WO2009078734A1
    • 2009-06-25
    • PCT/NO2008/000458
    • 2008-12-17
    • STATOILHYDRO ASAALSTAD, VidarAASHEIM, RobertFJALESTAD, KjetilFALLET, Truls
    • ALSTAD, VidarAASHEIM, RobertFJALESTAD, KjetilFALLET, Truls
    • G01F23/14G01N9/26
    • G01N9/26G01F23/168
    • A method and equipment for determining (measuring) the level/height, h 1 - h x, of one or more interfaces between two or more fluid phases of different density that are contained in a vessel, tank (1) or the like. The position (the level) of the different interfaces in a tank (1) is determined by measuring the pressure and thus indirectly determining the density of the fluid in the tank over the height of the tank by using a pressure measuring rod (2) equipped with pressure sensors (3) which is positioned in and extends over the height of the tank (1). For determining the interfaces, a mathematical model or algorithm is used which calculates how the density and hence the pressure vary over the height of the tank as a function of the fluid properties of the respective fluids in the tank, the interface, on the basis of the density being the same within each layer of the respective fluid, being defined as a respective point (level) at which the density changes from one layer to the next in the tank.
    • 用于确定(测量)包含在容器,罐(1)等中的不同密度的两个或多个流体相之间的一个或多个界面的水平/高度h1-hx的方法和设备。 通过测量压力来确定罐(1)中不同界面的位置(水平面),从而通过使用装备有压力测量杆(2)的方式间接地确定箱体中的流体在罐的高度上的密度 其中压力传感器(3)定位在罐(1)的高度上并且延伸超过罐(1)的高度。 为了确定接口,使用数学模型或算法,其计算密度和因此的压力如何随着罐的高度而变化,作为罐中相应流体的界面的界面的函数,基于 在相应流体的每个层内的密度相同,被定义为密度从罐中的一层到下一层变化的相应点(水平)。