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    • 2. 发明授权
    • Treatment of produced hydrocarbon fluid containing water
    • 生产含水的烃类流体的处理
    • US09068451B2
    • 2015-06-30
    • US12761039
    • 2010-04-15
    • Are LundRoar LarsenJon Harald KaspersenErlend Oddvin StraumeMartin FossenKai W. Hjarbo
    • Are LundRoar LarsenJon Harald KaspersenErlend Oddvin StraumeMartin FossenKai W. Hjarbo
    • E21B43/34F17D3/14
    • E21B43/34F17D3/14
    • A method for treating a flow of fluid hydrocarbons containing water includes introducing the flow of fluid hydrocarbons into a first separator and separating at least free water from said flow of fluid hydrocarbons, wherein a remainder of said fluid hydrocarbon flow is introduced into a system converting free/condensed water in the fluid hydrocarbon flow in said system to gas hydrates, and providing at least a first fluid flow and a second fluid flow, wherein said first fluid flow is a liquid phase including gas hydrates, said first fluid flow is recycled into the first separator, and wherein the second fluid flow has a content of dry gas and/or condensate/oil. A system for treatment of a flow of fluid hydrocarbon fluid containing water includes the following elements listed in the flow direction and connected with each other: connection to a hydrocarbon production source (1), a first separator (3) operative to separate at least free water from said fluid flow, a converting system (5) for converting free/condensed water to gas hydrate, a pipeline (6, 18) for transporting a dry gas or condensate/oil; and in addition a line (7′) which leads from the converting system (5) to the first separator (3) providing a first recycling flow including gas hydrates.
    • 用于处理含有水的流体烃的流动的方法包括将流体烃流引入第一分离器中,并从所述流体烃流中分离出至少游离水,其中所述流体烃流的剩余部分被引入自由基 在所述系统中的流体烃流中的冷凝水与气体水化,并且提供至少第一流体流和第二流体流,其中所述第一流体流是包括气体水合物的液相,所述第一流体流被再循环到 第一分离器,并且其中第二流体流具有干燥气体和/或冷凝物/油的含量。 用于处理含水的流体烃流体流的系统包括在流动方向上列出并相互连接的以下元件:与烃生产源(1)的连接,第一分离器(3),其操作以至少分离 来自所述流体流的水,用于将游离/冷凝水转化为天然气水合物的转化系统(5),用于输送干燥气体或冷凝物/油的管道(6,18) 以及从转换系统(5)引导到第一分离器(3)的管线(7'),其提供包括气体水化物的第一再循环流。
    • 6. 发明授权
    • Reservoir monitoring
    • 水库监测
    • US06645769B2
    • 2003-11-11
    • US09725042
    • 2000-11-29
    • Davoud TayebiLars KilaasAre LundArne Lund KvernheimOdd Ivar EriksenJostein SveenOle Bernt LileMarit Valeur RamstadOle Widar Saastad
    • Davoud TayebiLars KilaasAre LundArne Lund KvernheimOdd Ivar EriksenJostein SveenOle Bernt LileMarit Valeur RamstadOle Widar Saastad
    • E21B4700
    • G01V9/007C09K8/03E21B47/1015G01N33/241G01N33/2882Y10T436/13
    • A method for monitoring hydrocarbon and water production from different production zones/sections in a hydrocarbon reservoir and/or injection wells and detection of different phenomena such as e.g. local variations in pH, salinity, hydrocarbon composition, temperature, pressure, microorganisms, and the difference between production of formation and/or injection water from various zones/sections. The method includes dividing regions around wells in the reservoir into a number of zones/sections, and injecting or placing specific tracers with unique characteristics for each zone/section into the formation in these regions such that tracers are placed as integrated parts of the well completion or placed and immobilized in these regions through injection, squeeze or by other techniques. The tracers can also be immobilized or placed on a filter, a casing or other constructions surrounding the well in each zone/section. The tracers are specific or introduced to give specific information from each zone/section. The method further includes chemically immobilizing or integrating the tracers in the formation or constructions or filters around the wells, the tracers (tracer carriers) being chemically intelligent and released as a function of specific events, and detecting the tracers downstream providing information about the various zones/sections. The method may be used in a local alarm system for water breakthrough or for improved oil and gas recovery (IOR) in horizontal production and injection wells.
    • 一种用于监测来自烃储层和/或注入井中的不同生产区/部分的烃和水产生的方法,以及检测不同现象,例如, pH,盐度,烃组成,温度,压力,微生物的局部变化以及来自各个区域/部分的地层和/或注入水的生产之间的差异。 该方法包括将储层中的井周围的区域分成多个区域/区段,以及将具有独特特征的特定示踪剂注入或放置到这些区域中的地层中,使得示踪剂被放置为井完井的整体部分 或通过注射,挤压或其它技术置于和固定在这些区域中。 示踪剂也可以被固定或放置在每个区域/部分中围绕井的过滤器,套管或其它结构上。 跟踪器是具体的或被引入以从每个区域/部分提供具体信息。 该方法还包括化学地固定或整合示踪剂在井周围的形成或构造或过滤器中,示踪剂(示踪剂载体)作为特定事件的函数被化学智能地释放,并且检测下游的示踪剂,提供关于各个区域的信息 /部分。 该方法可用于在水平生产和注入井中进行水渗透或改善油气回收(IOR)的本地报警系统。
    • 7. 发明申请
    • Method for Treatment of Water Comprising Non-Polar Compounds
    • 用于处理包含非极性化合物的水的方法
    • US20110000856A1
    • 2011-01-06
    • US12667501
    • 2008-07-07
    • Tore SkjetneRoar LarsenAre Lund
    • Tore SkjetneRoar LarsenAre Lund
    • C02F1/52C01B5/00
    • C02F1/22B01D9/0013B01D9/005C02F1/001C02F1/26C02F1/28C02F1/40C02F2101/32C02F2103/10C02F2103/365
    • A process for removal of non-polar compounds from water, wherein the non-polar compounds exist in dissolved or dispersed form, wherein the water is led through a preparation tank wherein the temperature is adjusted and wherein possible solid particles are removed. The water is then led via pipe into a reactor tank and is mixed with a hydrate forming compound, wherein simultaneously hydrate seeds are added which have been recycled for continuous use in the process; whereby the drops or molecules of the non-polar compounds are attached or associated to hydrate particles being formed in the reactor tank. The hydrate particles are separated from the water and melted. The hydrate forming compound is recycled to the reactor tank and the non-polar compounds discharged. In addition, a device for use of the process as well as hydrates for removal of non-polar compounds in water.
    • 一种从水中除去非极性化合物的方法,其中所述非极性化合物以溶解或分散的形式存在,其中所述水被引导通过调节所述温度并且其中可能的固体颗粒被除去的制备罐。 然后将水通过管道引入反应器罐中,并与形成水合物的化合物混合,其中同时加入水合物种子,其已经在该方法中再循环用于连续使用; 由此非极性化合物的滴或分子附着或结合在水合物反应器罐中形成的颗粒。 水合物颗粒与水分离并熔化。 将形成水合物的化合物再循环到反应器罐中,并排出非极性化合物。 此外,使用该方法的装置以及用于去除水中非极性化合物的水合物。