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    • 3. 发明申请
    • SCREEN PULSE SYSTEM PRESSURE DIFFERENTIAL GENERATING DEVICE
    • 屏幕脉冲系统压差发生装置
    • WO2018071614A1
    • 2018-04-19
    • PCT/US2017/056245
    • 2017-10-12
    • M-I L.L.C.
    • FRAZIER, EvanBINGHAM, Richard
    • B07B9/02B07B11/02
    • B07B4/08B07B1/46B07B13/16E21B21/065
    • Systems and methods for generating a pressure differential below a screen in a vibratory separator to urge a substance being separated to pass through the screen of the vibratory separator are disclosed. Pressurized fluid is supplied to a pressure differential generator to generate a pressure differential across a screen of the vibratory separator. A securement assembly secures a tray to the vibratory separator. The tray has a drain separate from a pressure differential generator. An interior of the drain and an interior passage of the pressure differential generator can connect at a location in which pressurized fluid entering the pressure differential generator does not cause detrimental effects to the substance being separated.
    • 公开了用于在振动分离器的筛网下方产生压力差以促使被分离的物质通过振动分离器的筛网的系统和方法。 将加压流体供应至压差发生器以在振动分离器的筛网上产生压差。 固定组件将托盘固定到振动分离器。 托盘的排水管与压差发生器分开。 排放口的内部和压差发生器的内部通道可以在进入压差发生器的加压流体不会对被分离的物质造成有害影响的位置连接。
    • 9. 发明申请
    • SMART SHAKER ROOM
    • WO2016210421A1
    • 2016-12-29
    • PCT/US2016/039589
    • 2016-06-27
    • M-I-L.L.C
    • BINGHAM, RichardHOLTON, Benjamin, LanningCADY, Eric, Edward
    • E21B21/00E21B21/06E21B41/00
    • E21B21/065B07B1/46B07B1/4627B07B1/4645B07B1/4681B07B13/18
    • This disclosure is generally drawn to systems, devices, apparatuses, and/or methods, related to monitoring a shaker and monitoring a room in which shaker(s) operate. Specifically, the disclosed systems, devices, apparatuses, and/or methods relate to controlling an actuated arm to inspect, remove, replace, repair, clean the shaker and/or screen assemblies based on monitoring the shaker and its screen assemblies, and to adjust or maintain shaker(s) in a defined area such as the room in which shaker(s) operate. While the examples disclosed herein generally describe shakers for separating solids from fluids, the present disclosure contemplates that other separation equipment (e.g., machines for separating solids from other solids) may also be monitored and controlled by the systems and methods described herein.
    • 本公开通常涉及与监视振动器和监测振动器操作的房间有关的系统,装置,装置和/或方法。 具体地,所公开的系统,装置,装置和/或方法涉及控制致动臂以基于监测振动器及其屏幕组件来检查,移除,更换,修理,清洁振动器和/或筛组件,并且调整 或将振动器保持在限定区域,例如摇动器操作的房间中。 虽然本文公开的实例通常描述了用于从流体中分离固体的振动器,但是本公开预期其他分离设备(例如,用于从固体中分离固体的机器)也可以由本文所述的系统和方法来监测和控制。
    • 10. 发明申请
    • HIGH PRESSURE SHEAR NOZZLE FOR INLINE CONDITIONING OF DRILLING MUD
    • 高压剪切喷嘴用于钻孔机的在线调节
    • WO2011142894A1
    • 2011-11-17
    • PCT/US2011/030309
    • 2011-03-29
    • M-I L.L.C.BINGHAM, RichardRAFFERTY, MikeSMOTHERS, Neal
    • BINGHAM, RichardRAFFERTY, MikeSMOTHERS, Neal
    • E21B21/00
    • E21B21/06B01F5/0268B01F5/0688E21B21/062
    • A system for conditioning drilling fluid includes a conditioning device having a first conduit configured to receive the drilling fluid, a flow restriction disposed adjacent the first conduit, the flow restriction comprising a fluid inlet and a fluid outlet, an impact plate disposed downstream of the flow restriction, a first chamber disposed between the flow restriction and the impact plate, and a second chamber disposed downstream of the impact plate, wherein the first chamber is fluidly connected to the second chamber. A method for conditioning drilling fluid using a conditioning device, includes pumping a drilling fluid through a flow restriction, accelerating the drilling fluid into a mixing chamber, subjecting the drilling fluid to elongational shearing, decelerating the drilling fluid against an impact plate, subjecting the drilling fluid to impact shearing, and emptying drilling fluid from the mixing chamber.
    • 用于调节钻井流体的系统包括调节装置,其具有构造成接收钻井流体的第一导管,邻近第一导管设置的流动限制器,流动限制器包括流体入口和流体出口,设置在流动下游的冲击板 设置在流量限制器和冲击板之间的第一腔室以及设置在冲击板下游的第二腔室,其中第一腔室流体地连接到第二腔室。 一种使用调节装置调节钻井液的方法,包括通过流动限制泵送钻井液,将钻井液加速到混合室中,对钻井液进行伸长剪切,将钻井液减压到冲击板上, 流体冲击剪切,并从混合室排空钻井液。