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    • 3. 发明申请
    • COMBUSTION ENHANCEMENT WITH SILENT DISCHARGE PLASMA
    • 燃烧放电等离子体增强
    • WO2004085694A2
    • 2004-10-07
    • PCT/US2004/007161
    • 2004-03-09
    • THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
    • ROSOCHA, Louis, ACOATES, Don, M.PLATTS, David
    • C23C
    • F23C99/001F02B51/06F02M27/042Y02T10/126
    • A device that uses electrical discharges/nonthermal plasmas in a gaseous medium to activate a fuel or fuel-oxidizer mixture to promote more effective and efficient combustion, in which a dielectric barrier discharge or silent discharge plasma is used to break up larger organic molecules (the fuel) into smaller ones that are more easily and completely combusted. The discharge also creates free radicals that promote more efficient combustion. The device is a cylindrical, coaxial (cylinder in a cylinder) dielectric barrier discharge/silent discharge plasma reactor. It includes two conducting electrodes, one or both of which are covered by a dielectric material. The electrodes are separated by a thin, gas-containing space. A high voltage is applied to the electrodes to create electric discharge streamers in the gas. The discharges are the source of the nonthermal plasma.
    • 在气体介质中使用放电/非热等离子体来激活燃料或燃料 - 氧化剂混合物以促进更有效和有效的燃烧的装置,其中使用电介质阻挡放电或无声放电等离子体来破坏较大的有机分子( 燃料)变成更容易和完全燃烧的较小的燃料。 放电还产生促进更有效燃烧的自由基。 该装置是圆柱形,同轴(气缸中的气缸)介质阻挡放电/静音放电等离子体反应器。 它包括两个导电电极,其中一个或两个被电介质材料覆盖。 电极被薄的含气空间隔开。 向电极施加高电压以在气体中产生放电拖缆。 放电是非热等离子体的来源。
    • 4. 发明申请
    • REMOTE DOWN-HOLE WELL TELEMETRY
    • 远程井下井眼
    • WO2004003329A2
    • 2004-01-08
    • PCT/US2003/019995
    • 2003-06-24
    • THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
    • BRILES, Scott, D.NEAGLEY, Daniel, L.COATES, Don, M.FREUND, Samuel, L.
    • E21B
    • H04Q9/00G01V11/002H01Q1/04H04Q2209/40H04Q2209/88
    • The present invention includes an apparatus and method for telemetry communication with oil-well monitoring and recording instruments located in the vicinity of the bottom of gas or oil recovery pipes. Such instruments are currently monitored using electrical cabling that is inserted into the pipes; cabling has a short life in this environment, and requires periodic replacement with the concomitant, costly shutdown of the well. Modulated reflectance, a wireless communication method that does not require signal transmission power from the telemetry package will provide a long-lived and reliable way to monitor down-hole conditions. Normal wireless technology is not practical since batteries and capacitors have to frequently be replaced or recharged, again with the well being removed from service. RF energy generated above ground can also be received, converted and stored down-hole without the use of wires, for actuating down-hole valves, as one example. Although modulated reflectance reduces or eliminates the loss of energy at the sensor package because energy is not consumed during the transmission process, additional stored extra energy down-hole is needed.
    • 本发明包括一种用于与位于气体或油回收管道底部附近的油井监测和记录仪器进行遥测通信的装置和方法。 目前使用插入管道的电缆来监测这些仪器; 电缆在这种环境下寿命短,需要定期更换,并伴随着昂贵的关闭井。 调制反射率,不需要来自遥测包装的信号传输功率的无线通信方法将提供长期可靠的监测井下条件的方法。 正常的无线技术是不实际的,因为电池和电容器必须经常被更换或充电,再次从维护中恢复正常。 作为一个示例,地面上产生的RF能量也可以被接收,转换和存储在井下而不使用电线,用于致动井下阀。 尽管调制反射减少或消除了在传感器封装处的能量损失,因为在传输过程中能量不被消耗,但是需要另外存储的额外的能量下钻孔。
    • 8. 发明申请
    • FUEL INJECTION DEVICE INCLUDING PLASMA-INDUCING ELECTRODE ARRAYS
    • 燃料喷射装置,包括等离子体引发电极阵列
    • WO2008051206A2
    • 2008-05-02
    • PCT/US2006/040530
    • 2006-10-17
    • PERRIQUEST DEFENSE RESEARCH ENTERPRISES LLCCOATES, Don, M.ROSOCHA, Louis, A.
    • COATES, Don, M.ROSOCHA, Louis, A.
    • F02M57/00F02C3/20F02C3/22F02C7/264F02M27/042F23C2900/99005F23R3/28H05H1/52Y02T50/672
    • A plasma assisted combustion device includes a body formed of a dielectric material that defines a conical-shaped plasma chamber. A conical-shaped ground electrode is positioned in the plasma chamber. At least one support structure is coupled to the conical- shaped ground electrode so as to suspend the ground electrode in the plasma chamber thereby forming a gap between an outer surface of the body and the ground electrode. The support structure comprises an insulated material that is positioned on an outer surface so as to reduce the probability of generating an undesirable electrical discharge. A hot electrode that is energized with a high voltage that strikes a plasma discharge in the gap is positioned proximate to the plasma chamber. A fuel injector is positioned proximate to the conical chamber. The fuel injector includes a nozzle that converts a liquid fuel into an aerosolized high molecular weight fuel that sprays into the plasma chamber. The plasma in the gap cracks the aerosolized high molecular weight fuel into at least some lower molecular weight fuel and creates at least some free radicals and/or excited-state species.
    • 等离子体辅助燃烧装置包括由电介质材料形成的主体,该主体限定锥形等离子体腔室。 圆锥形接地电极位于等离子体室中。 至少一个支撑结构连接到圆锥形接地电极,以便将接地电极悬挂在等离子体腔中,由此在主体的外表面和接地电极之间形成间隙。 支撑结构包括位于外表面上的绝缘材料,以减少产生不希望的放电的可能性。 在等离子体室附近放置一个用高电压激励的热电极,该电极击中间隙中的等离子体放电。 燃料喷射器靠近锥形室定位。 燃料喷射器包括将液体燃料转化为喷雾到等离子体室中的雾化高分子量燃料的喷嘴。 间隙中的等离子体将雾化的高分子量燃料裂化成至少一些较低分子量的燃料并产生至少一些自由基和/或激发态物质。