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    • 6. 发明申请
    • High intensity light source
    • 高强度光源
    • US20060250090A9
    • 2006-11-09
    • US09818092
    • 2001-03-26
    • Charles GuthrieEdmund SandbergDonald WilsonGregory Prior
    • Charles GuthrieEdmund SandbergDonald WilsonGregory Prior
    • H01J65/04
    • H01J65/044H01J65/048
    • In one aspect the plasma lamp according to the present invention comprises a gas envelope that is constructed from ceramic material and a sapphire window rather than quartz. According to another aspect of the present invention, a plasma lamp comprises an RF structure for the radio wave radiation and an envelope for housing the excitation gas that are formed so as to constitute a single, integrated ceramic structure. According to yet another aspect of the present invention, the plasma lamp comprises a waveguide structure having solid material such as ceramic rather than air for the dielectric and a gas housing made of a combination of solid ceramic and a sapphire window. In this way, the separate quartz gas envelope and air-filled waveguide structure employed in the prior art are replaced by a single, integrated structure.
    • 在一个方面,根据本发明的等离子体灯包括由陶瓷材料和蓝宝石窗而不是石英构成的气体封套。 根据本发明的另一方面,一种等离子体灯包括用于无线电波辐射的RF结构和用于容纳激发气体的外壳,其形成为构成单一的一体化陶瓷结构。 根据本发明的另一方面,等离子体灯包括具有诸如陶瓷的固体材料而不是用于电介质的空气的波导结构,以及由固体陶瓷和蓝宝石窗口的组合制成的气体壳体。 以这种方式,现有技术中采用的独立石英气体包络和充气波导结构被单一的一体化结构所取代。
    • 7. 发明申请
    • Lamp
    • US20100060167A1
    • 2010-03-11
    • US12224344
    • 2006-06-02
    • Andrew NeateCharles Guthrie
    • Andrew NeateCharles Guthrie
    • H01J19/80
    • H01J65/044H01J61/302
    • A lamp with a quartz electrodeless bulb has a ceramic wave guide with a central void, in which the bulb is accommodated. The wave guide is rectangular. The central void is centered on a central longitudinal plane of the wave guide, normal to front and back faces of the wave guide and equally spaced from end faces. Parallel with the central void and also on the central plane are two further voids for respective antennae. The central void is open through the front face for egress of light, but the antenna voids are not open in this face. The latter is metalised to inhibit egress of microwave energy from the wave guide.
    • 具有石英无电极灯泡的灯具有具有中心空隙的陶瓷波导,其中容纳灯泡。 波导是矩形的。 中心空隙以波导的中心纵向平面为中心,垂直于波导的前后面并与端面等距分布。 与中心空隙平行并且在中心平面上还有两个相应的天线的空隙。 中心的空隙通过前面开放,用于出射光,但是天线的空隙在这个面上不是开放的。 后者被金属化以抑制来自波导的微波能量的流出。
    • 8. 发明授权
    • Lamp having an electrodeless bulb
    • 灯具有无电极灯泡
    • US08227993B2
    • 2012-07-24
    • US12224344
    • 2006-06-02
    • Andrew NeateCharles Guthrie
    • Andrew NeateCharles Guthrie
    • H05B37/00
    • H01J65/044H01J61/302
    • A lamp with a quartz electrodeless bulb has a ceramic wave guide with a central void, in which the bulb is accommodated. The wave guide is rectangular. The central void is centered on a central longitudinal plane of the wave guide, normal to front and back faces of the wave guide and equally spaced from end faces. Parallel with the central void and also on the central plane are two further voids for respective antennae. The central void is open through the front face for egress of light, but the antenna voids are not open in this face. The latter is metalized to inhibit egress of microwave energy from the wave guide.
    • 具有石英无电极灯泡的灯具有具有中心空隙的陶瓷波导,其中容纳灯泡。 波导是矩形的。 中心空隙以波导的中心纵向平面为中心,垂直于波导的前后面并与端面等距分布。 与中心空隙平行并且在中心平面上还有两个相应的天线的空隙。 中心的空隙通过前面开放,用于出射光,但是天线的空隙在这个面上不是开放的。 后者被金属化以抑制来自波导的微波能量的流出。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR HEAT MANAGEMENT OF AN OIL FIELD
    • 油田加热管理方法与系统
    • US20080283245A1
    • 2008-11-20
    • US11749628
    • 2007-05-16
    • David TukAnilkumar PatelCharles GuthrieRichard CullipMike Riddle
    • David TukAnilkumar PatelCharles GuthrieRichard CullipMike Riddle
    • E21B43/24
    • E21B43/24
    • The present invention includes a method and system for heat management in an oil field, the method including the steps of, on a first time interval: determine a thermal maturity for each subsurface region associated with a pattern of oil wells in the oil field, input the thermal maturity output from step (a)(i) and determine a latent heat target and steam injection target for each subsurface region; and input the latent heat target and steam injection target output from step (a)(ii) and a subsurface region development plan and recalibrate a steam optimizer policy engine, on a second time interval: using the recalibrated steam optimizer policy engine from step (a)(iii) and operating data, determine steam injection schedules; and collect operating data; and on a third time interval: input the thermal maturity output from step (i) and perform a periodic look-back process, thereby producing deviations from latent heat targets; and input the deviations from latent heat targets from step (c)(i) and re-determine the subsurface region development plan.
    • 本发明包括一种用于油田中热管理的方法和系统,该方法包括以下步骤:在第一时间间隔内:确定与油田油井模式相关的每个地下区域的热成熟度,输入 步骤(a)(i)的热成熟度输出,并确定每个地下区域的潜热目标和蒸汽喷射目标; 并且输入从步骤(a)(ii)输出的潜热目标和蒸汽喷射目标和地下区域开发计划,并且在第二时间间隔重新校准蒸汽优化器策略引擎:使用来自步骤(a)的重新校准的蒸汽优化器策略引擎 )(iii)和运行数据,确定蒸汽喷射计划; 并收集运营数据; 并且在第三时间间隔:输入来自步骤(i)的热成熟度输出并执行周期性回溯处理,从而产生与潜热目标的偏差; 并输入来自步骤(c)(i)的潜热目标的偏差,并重新确定地下区域发展计划。