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    • 1. 发明申请
    • OIL VAPOR CLEANER
    • 油蒸气清洗机
    • WO2010009096A2
    • 2010-01-21
    • PCT/US2009050498
    • 2009-07-14
    • MI LLCBINGHAM RICHARD
    • BINGHAM RICHARD
    • B01D45/12B01D47/027B01D47/06B01D50/004B01D2247/04
    • An apparatus for recovery of solids from a vapor, the apparatus including: a vessel comprising a cylindrical portion on top of an angled portion; a vapor inlet located in the cylindrical portion for introducing a solid-vapor mixture tangentially to the cylindrical portion; at least one inlet nozzle disposed in a top of the vessel for spraying a hydrocarbon fluid into the vessel; an indirect heat exchange device disposed concentrically within the cylindrical portion, thereby providing an annulus for vapor and hydrocarbon flow; a heat exchange device disposed at an exterior of the angled portion; an outlet located at a bottom of the angled portion to recover the vapor having a reduced solids content and a solid- hydrocarbon mixture. Also disclosed are processes to clean an oil vapor using such an apparatus.
    • 一种用于从蒸汽中回收固体的装置,所述装置包括:容器,其包括在倾斜部分的顶部上的圆柱形部分; 位于圆筒部分中的蒸汽入口,用于将固体蒸汽混合物切向地引导到圆柱形部分; 设置在容器顶部的至少一个入口喷嘴,用于将烃流体喷射到容器中; 间接热交换装置同心地设置在圆筒形部分内,由此提供用于蒸汽和烃流动的环形空间; 设置在所述成角度部分的外部的热交换装置; 位于倾斜部分的底部的出口,以回收具有降低的固体含量的蒸汽和固体 - 烃混合物。 还公开了使用这种装置清洁油蒸气的方法。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR OPTICAL POLISHING
    • 光学抛光的方法和装置
    • WO1997000155A1
    • 1997-01-03
    • PCT/GB1996001459
    • 1996-06-17
    • OPTICAL GENERICS LIMITEDWALKER, David, DouglasBINGHAM, Richard, GeorgeKIM, Sug-WhanPUTTICK, Keith, Ernest
    • OPTICAL GENERICS LIMITED
    • B24B13/015
    • B24D13/147B24B13/015B24B41/04
    • A lapping tool for localised optical polishing of a workpiece, the tool having a flexible working surface and being characterised by means for selectively varying the pressure applied, in use, on the workpiece by different regions of the tool working surface whereby to vary the effective area of contact with the workpiece. A method of optical polishing and optical workpiece using a lapping tool whose maximum working surface area is substantially smaller than the workpiece, comprising determining the path to be travelled by the tool across the workpiece, and determining the pressure and effective area of contact of the tool on the workpiece, in order to achieve the next stage of polishing, and then driving the tool over that path while dynamically varying the said applied pressure and effective contact area. Apparatus for guiding a body, such as an optical polishing tool, over a generally flat structure, such as an optical workpiece, comprising a three-dimensional drive mechanism for the controlled movement of the body across the surface of the structure, and a pivoted linkage linking the drive mechansim to the body such as to constrain the body to pivotal motion about a virtual pivot point which is fixed relative to the drive mechanism and is located at the interace between the body and the workpiece.
    • 一种用于对工件进行局部光学抛光的研磨工具,该工具具有柔性工作表面,并且其特征在于用于通过工具工作表面的不同区域选择性地改变在使用中施加在工件上的压力的装置,从而改变有效面积 与工件接触。 一种使用研磨工具的光学抛光和光学工件的方法,其最大工作表面积基本上小于工件,包括确定工具在工件上行进的路径,以及确定工具的压力和有效接触面积 在工件上,以便实现下一阶段的抛光,然后在该路径上驱动工具,同时动态地改变所施加的压力和有效的接触面积。 用于将主体(例如光学抛光工具)引导到大致平坦的结构(例如光学工件)上的装置,包括用于主体横过结构表面受控运动的三维驱动机构,以及枢轴连杆 将驱动机构连接到主体,以便围绕相对于驱动机构固定并且位于主体和工件之间的间隔的虚拟枢轴点将本体约束为枢转运动。
    • 5. 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。
    • 10. 发明申请
    • WELLBORE MONITOR
    • 井眼监视器
    • WO2008103642A1
    • 2008-08-28
    • PCT/US2008/054250
    • 2008-02-19
    • M-I LLCBINGHAM, RichardLOGAN, Gordon, M.EIA, Jan, Thore
    • BINGHAM, RichardLOGAN, Gordon, M.EIA, Jan, Thore
    • E21B41/00E21B21/00B09B5/00B63B25/00
    • E21B21/01E21B49/005G01G11/003
    • A system for determining produced drill solids volume including a receiving vessel for receiving drill solids and a pressure vessel coupled to the receiving vessel. The receiving vessel has an isolation valve system to control the flow of drill solids between the receiving vessel and the pressure vessel, and the pressure vessel is adapted to allow a compressed gas to convey drill solids from the pressure vessel to a discharge line. The system also includes a skid having a plurality of weight sensors for weighing the drill solids in the pressure vessel, wherein the pressure vessel is disposed on the plurality of weight sensors and a programmable logic controller operatively couples to at least the plurality of weight sensors for calculating the weight of the drill solids in the pressure vessel.
    • 用于确定产生的钻头固体体积的系统,包括用于接收钻井固体的接收容器和联接到接收容器的压力容器。 接收容器具有隔离阀系统以控制接收容器和压力容器之间钻头固体的流动,并且压力容器适于允许压缩气体将钻探固体从压力容器输送到排出管线。 该系统还包括具有多个重量传感器的防滑装置,用于称重压力容器中的钻头固体,其中压力容器设置在多个重量传感器上,并且可编程逻辑控制器可操作地耦合到至少多个重量传感器,用于 计算压力容器中钻头固体的重量。