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    • 6. 发明授权
    • Apparatus for autonomous downhole fluid selection with pathway dependent resistance system
    • 具有路径依赖电阻系统的自主井下流体选择装置
    • US09109423B2
    • 2015-08-18
    • US12700685
    • 2010-02-04
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • E21B34/08F15C1/16E21B43/08E21B43/12E21B43/14E21B43/32
    • E21B34/08E21B34/06E21B43/08E21B43/12E21B43/14E21B43/32F15C1/16Y10T137/2065Y10T137/2076Y10T137/2087Y10T137/212
    • An apparatus is described for controlling flow of fluid in a tubular positioned in a wellbore extending through a subterranean formation. A flow control system is placed in fluid communication with a main tubular. The flow control system has a flow ratio control system and a pathway dependent resistance system. The flow ratio control system has a first and second passageway, the production fluid flowing into the passageways with the ratio of fluid flow through the passageways related to the characteristic of the fluid flow. The pathway dependent resistance system includes a vortex chamber with a first and second inlet and an outlet, the first inlet of the pathway dependent resistance system in fluid communication with the first passageway of the fluid ratio control system and the second inlet in fluid communication with the second passageway of the fluid ratio control system. The first inlet is positioned to direct fluid into the vortex chamber such that it flows primarily tangentially into the vortex chamber, and the second inlet is positioned to direct fluid such that it flows primarily radially into the vortex chamber. Undesired fluids, such as natural gas or water, in an oil well, are directed, based on their relative characteristic, into the vortex primarily tangentially, thereby restricting fluid flow when the undesired fluid is present as a component of the production fluid.
    • 描述了一种用于控制位于穿过地下地层的井筒中的管中的流体流动的装置。 流量控制系统被放置成与主管道流体连通。 流量控制系统具有流量比控制系统和通路依赖电阻系统。 流量比控制系统具有第一和第二通道,生产流体流入通道,​​流体通过通道的流体与流体流动的特性相关。 所述依赖于路径的电阻系统包括具有第一和第二入口和出口的涡流室,所述通路依赖电阻系统的第一入口与流体比例控制系统的第一通道流体连通,并且与第二入口流体连通 流量比控制系统的第二通道。 第一入口被定位成将流体引导到涡流室中,使得其主要沿切向流动到涡流室中,并且第二入口被定位成引导流体,使得其主要径向流动到涡流室中。 油井中的不期望的流体(例如天然气或水)基于它们的相对特征被导向主要是切向的涡流,从而当不期望的流体作为生产流体的组分存在时限制流体流动。
    • 7. 发明授权
    • Microfluidic bubble logic devices and methods
    • 微流控泡泡逻辑器件及方法
    • US08820357B2
    • 2014-09-02
    • US13569155
    • 2012-08-07
    • Manu PrakashNeil Gershenfeld
    • Manu PrakashNeil Gershenfeld
    • F15B21/00
    • F15C1/02B01L3/5027B01L3/502769F15C1/00Y10T137/0318Y10T137/0324Y10T137/2076Y10T137/9247
    • A method for implementing a logic operation employs an all fluid-based no-moving part micro-mechanical logic family of microfluidic bubble logic devices that are constructed from complex sequences of microfluidic channels, microfluidic bubble modulators for programming the devices, and microfluidic droplet/bubble memory elements for chemical storage and retrieval. The input is a sequence of bubbles/droplets encoding information, with the output being another sequence of bubbles/droplets. For performing a set of reactions/tasks, the modulators program the device by producing a precisely timed sequence of bubbles/droplets, resulting in a cascade of logic operations within the microfluidic channel sequence, utilizing the generated bubbles as a control. The devices are based on the principle of minimum energy interfaces formed between the two fluid phases enclosed inside precise channel geometries. Various devices, including logic gates, non-volatile bistable memory, shift registers, multiplexers, and ring oscillators have been designed and fabricated.
    • 用于实现逻辑操作的方法使用由微流体通道的复杂序列,用于编程器件的微流控气泡调制器和微流控液滴/气泡构成的所有基于流体的无动力部分微机械逻辑器件微流体逻辑器件 用于化学品储存和检索的记忆元素。 输入是编码信息的气泡/液滴序列,输出是气泡/液滴的另一个序列。 为了执行一组反应/任务,调制器通过产生精确定时的气泡/液滴序列对装置进行编程,从而在微流体通道序列内进行级联的逻辑运算,利用生成的气泡作为对照。 这些装置基于在精密通道几何形状内包围的两个流体相之间形成的最小能量界面的原理。 已经设计和制造了各种装置,包括逻辑门,非易失性双稳态存储器,移位寄存器,多路复用器和环形振荡器。
    • 10. 发明申请
    • Method and System for Reducing the Visibility of a Plume Created at the Outlet of an Industrial Process
    • 减少在工业过程出口创造的羽流的可见性的方法和系统
    • US20130167939A1
    • 2013-07-04
    • US13727239
    • 2012-12-26
    • Brunnschweiler S.A.
    • Oscar LopezIraide Larrea
    • F17D1/16
    • F17D1/16B01F3/02B01F5/0057F26B25/005Y10T137/0391Y10T137/2076
    • A method and system for reducing the visibility of a plume created at the outlet of an industrial process, where the industrial process expels hot, humid air into the outside air through an output area of an outlet and, as a result of the expelled air A coming into contact with the outside air E, a visible plume might otherwise be created. The method includes the steps of having an auxiliary air that is dryer than the process air and hotter than the outside air available and combining this auxiliary air with the hot, humid process air such that the auxiliary air forms a protective, insulating or sheathing layer of air around the process air. This combination of the process air with the auxiliary are is carried out after (i.e., downstream from) an extraction process or processes of the industrial process and in the atmosphere generally adjacent to the output area of the process outlet.
    • 一种用于降低在工业过程出口处产生的羽流的可见度的方法和系统,其中工业过程通过出口的输出区域将热的潮湿空气排出到外部空气中,并且由于排出的空气A 与外部空气E接触,否则可能产生可见的羽流。 该方法包括以下步骤:使干燥器的辅助空气比处理空气干燥,并且比可用的外部空气更热,并将该辅助空气与热湿式处理空气结合,使得辅助空气形成保护性,绝缘或护套层 空气过程中的空气。 处理空气与辅助装置的这种组合是在工业过程的提取处理或处理之后(通常在与处理出口的输出区域相邻的大气中)进行的。