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    • 2. 发明申请
    • System and method for combined microseismic and tiltmeter analysis
    • 组合微震和倾斜仪分析的系统和方法
    • US20060081412A1
    • 2006-04-20
    • US11080591
    • 2005-03-15
    • Chris WrightEric DavisLarry GriffinKevin FisherGeorge KingNorman WarpinskiJames WardEtienne Samson
    • Chris WrightEric DavisLarry GriffinKevin FisherGeorge KingNorman WarpinskiJames WardEtienne Samson
    • G01V1/40G01V1/00
    • G01V1/008E21B43/26G01V1/40
    • A system and method for monitoring geophysical processes is disclosed. The system may include a component array located within the bore hole of the active well, or, alternatively, in the bore hole of a nearby offset well, or, alternatively, in multiple shallow boreholes in the surface around the active well. The system may include a sensor array located within a bore, wherein the sensor array has at least one tilt sensor and at least one microseismic sensor, a transmitter in communication with the at least one tilt sensor and the at least one microseismic sensor, and a receiver in communication with the transmitter. In one embodiment, data comprising tiltmeter data and microseismic data from a sensor during at least one geophysical process is received. The microseismic data is analyzed to ascertain a location of each microseismic event of a plurality of microseismic events isolated from the microseismic data, and the tiltmeter data is analyzed to ascertain orientation and dimension of a fracture developed during said at least one geophysical process.
    • 公开了一种用于监测地球物理过程的系统和方法。 该系统可以包括位于活动井的钻孔内的组件阵列,或者替代地,在附近的偏移井的钻孔中,或者在活动井周围的表面中的多个浅钻孔中。 该系统可以包括位于孔内的传感器阵列,其中传感器阵列具有至少一个倾斜传感器和至少一个微震传感器,与至少一个倾斜传感器和至少一个微震传感器通信的发射器,以及 接收机与发射机通信。 在一个实施例中,接收在至少一个地球物理过程期间包括来自传感器的倾斜仪数据和微震数据的数据。 分析微震数据以确定从微震数据分离的多个微震事件的每个微震事件的位置,并且分析倾斜仪数据以确定在所述至少一个地球物理过程期间发展的裂缝的取向和尺寸。
    • 3. 发明授权
    • System and method for partitioning DSL vector cancellation
    • 分离DSL矢量取消的系统和方法
    • US09065534B2
    • 2015-06-23
    • US13403956
    • 2012-02-23
    • Avadhani ShridharKevin Fisher
    • Avadhani ShridharKevin Fisher
    • H04B3/32
    • H04B3/32H04B3/487H04M11/062
    • A DSL system performs crosstalk cancellation using a plurality of vectoring cancellation chips that are partitioned into two or more groups based on DSL victim lines or DSL disturber lines or DSL tones. Embodiments of the invention include both single-criteria and double-criteria partitioning methods. In double-criteria embodiments, the vectoring cancellation VCE chips are first partitioned into two or more victim DSL line groups and then in each group the VCE chips are further partitioned by disturber DSL line processing. Alternately, the vectoring cancellation VCE chips are first partitioned into two or more disturber DSL line groups and then within each group further partitioned by victim DSL line processing. By partitioning the computation as described herein, the invention reduces the bandwidth and the number of links between the chips, without too much co-ordination complexity. This allows crosstalk cancellation across larger vectored groups.
    • DSL系统使用基于DSL受害线或DSL干扰线或DSL音调将其划分为两个或多个组的多个向量消除芯片来执行串扰消除。 本发明的实施例包括单一标准和双准则划分方法。 在双标准实施例中,向量消除VCE码片首先划分成两个或多个受害DSL线路组,然后在每个组中,VCE码片进一步被干扰DSL线路处理分割。 或者,矢量取消VCE芯片首先划分成两个或更多个干扰DSL线路组,然后在每个组内进一步被受害DSL线路处理划分。 通过如本文所述分割计算,本发明降低了芯片之间的带宽和链路数量,而没有太多的协调复杂性。 这允许跨较大矢量组的串扰消除。
    • 4. 发明授权
    • Twisted panel and apparatus for making or mounting same
    • 双面板和制造或安装相同的装置
    • US08262383B2
    • 2012-09-11
    • US11817003
    • 2007-07-10
    • Bryan HarrisKevin FisherJeremy PorterVenugopal R. GhatikarGuillaume Martin
    • Bryan HarrisKevin FisherJeremy PorterVenugopal R. GhatikarGuillaume Martin
    • B28B11/08
    • E04C2/20B29C53/14B29L2007/002E04C2/328Y10T29/53961
    • A twisted resin panel of typically several feet in length can be twisted after being subject to heat, pressure, and a rotation assembly. In one implementation, a manufacturer can clamp opposing ends of a heated resin panel, such as a panel comprising a one or more layers (e.g., tie/EVA layer, image layer(s), etc.) thermoformed within opposing resin sheet layers. The manufacturer can then elevate the resin panel, and then twist at least one end of the resin panel to a specified degree to achieve a desired aesthetic. Upper securing means (e.g., vertical clamps, rig hardware) at the upper end of the resin panel can be configured to move up or down during the twist of the resin panel in order to accommodate length variations thereof. Upon twisting, the resin panel will then cool into the desired position, and thus be used for any number of decorative architectural purposes.
    • 长度通常为几英尺的扭曲树脂面板经受热,压力和旋转组件之后可以扭曲。 在一个实施方案中,制造商可以夹持加热的树脂板的相对端,例如包括在相对的树脂片层内热成型的一层或多层(例如,连接/ EVA层,图像层等)的面板。 然后制造商可以提升树脂面板,然后将树脂板的至少一端扭转到一定程度,以达到所需的美观。 可以在树脂板的上端处的上固定装置(例如,垂直夹具,钻台硬件)构造成在树脂板的扭转期间上下移动,以适应其长度变化。 在扭转时,树脂面板然后将冷却到期望的位置,因此用于任何数量的装饰性建筑目的。
    • 6. 发明申请
    • H2S scavenging method
    • H2S清除方法
    • US20060024225A1
    • 2006-02-02
    • US10909707
    • 2004-08-02
    • Kevin FisherKenneth McIntush
    • Kevin FisherKenneth McIntush
    • B01D53/52
    • B01D53/1468
    • A method for removing H2S from H2S-containing gaseous streams in which an H2S-containing gaseous stream is introduced into a flow channel and at least one liquid chemical H2S scavenging agent is also introduced into the flow channel. Directly within the flow channel, liquid chemical H2S scavenging agent is transformed into a plurality of H2S scavenging agent droplets, which plurality of H2S scavenging agent droplets are contacted with the H2S-containing gaseous stream, whereby at least a portion of the H2S is absorbed by the plurality of H2S scavenging agent droplets. In accordance with one embodiment, transformation of the liquid chemical H2S scavenging agent is carried out in an inclined flow channel and in accordance with another embodiment, the transformation is carried out using ultrasonic atomization.
    • 一种从含H2S的气态物流中除去H 2 S的气体的方法,其中将含H2S的气流导入到 流动通道和至少一种液体化学品H 2 S清除剂也被引入到流动通道中。 直接在流动通道内,液体化学的H 2 S清除剂被转化成多个H 2 S清除剂液滴,其中多个H 2 SUB> S清除剂液滴与含H2S气体物流接触,由此H 2 S的至少一部分被多个H 2 S 2 S吸收, SUB> 2S清除剂液滴。 根据一个实施方案,液体化学H 2 S 2 S清除剂的转化在倾斜流动通道中进行,根据另一个实施方案,使用超声波雾化进行转化。
    • 7. 发明申请
    • Locomotive air compressor system with enhanced protection against leakage causative of backflow of pressurized air from a reservoir
    • 机车式空气压缩机系统,具有增强的防止来自储层的加压空气回流泄漏的保护作用
    • US20060013698A1
    • 2006-01-19
    • US11177778
    • 2005-07-08
    • Muhammad PervaizKevin Fisher
    • Muhammad PervaizKevin Fisher
    • F04B5/00F04B53/10
    • F04B53/10
    • A compressor system, method and kit are provided for supplying pressurized air to a main storage reservoir of a locomotive. The compressor system includes a high-pressure cylinder having at least one outlet valve having a first set of sealing characteristics. The compressor system further includes a piping assembly connected to the outlet valve to selectively pass pressurized air to the reservoir. The piping assembly may comprise a T-fit coupler connected to first and second pipes for delivering the pressurized air to the reservoir. A check valve may be installed in a chamber defined in the T-fit coupler. The check valve has a second set of sealing characteristics different than the sealing characteristics of the outlet valve. The check valve is responsive to predefined operational conditions of the air compressor system so that when the compressor system is supplying pressurizing air to the reservoir the check valve is set to an open condition. When the compressor system stops supplying pressurizing air to the reservoir, the check valve is set to a closed condition. The combined sealing characteristics of the outlet valve and the check valve is chosen to limit backflow of pressurized air from the reservoir to the high pressure cylinder.
    • 提供压缩机系统,方法和试剂盒,用于将加压空气供给到机车的主存储容器。 压缩机系统包括具有至少一个具有第一组密封特性的出口阀的高压缸。 压缩机系统还包括连接到出口阀的管道组件,以选择性地将加压空气传递到储存器。 管道组件可以包括连接到第一和第二管的T形联接器,用于将加压空气输送到储存器。 止回阀可以安装在T型联接器中限定的腔室中。 止回阀具有与出口阀的密封特性不同的第二组密封特性。 止回阀响应于空气压缩机系统的预定义的操作条件,使得当压缩机系统向储存器供应加压空气时,止回阀被设置为打开状态。 当压缩机系统停止向贮存器供给加压空气时,止回阀被设定为关闭状态。 选择出口阀和止回阀的组合密封特性来限制加压空气从储存器到高压缸的回流。
    • 8. 发明授权
    • Footwear lacing system
    • 鞋履系统
    • US08991074B2
    • 2015-03-31
    • US13314944
    • 2011-12-08
    • Richard G. IvesterKevin Fisher
    • Richard G. IvesterKevin Fisher
    • A43C1/00A43C1/06A43C9/00
    • A43C1/00A43C1/006A43C1/06A43C9/00
    • A shoe includes a shoe upper, a first lace and a second lace. The shoe upper includes a heel end, a toe end, and a mid-foot portion between the heel end and the toe end. The first lace is connected to the shoe upper and includes a wide portion and a narrow portion with a tapered portion in-between. The wide portion of the first lace is fastened to the mid-foot portion of the shoe upper at a first position that is nearer to the toe end than the heel end. The second lace is also connected to the shoe upper and also includes a wide portion and a narrow portion with a tapered portion in-between. The wide portion of the second lace is fastened to the mid-foot portion of the shoe upper at a second position that is nearer to the heel end than the first position.
    • 鞋包括鞋面,第一花边和第二花边。 鞋面包括脚跟端部,脚趾端部和脚跟端部与脚趾端部之间的中部脚部。 第一花边连接到鞋面,并且包括宽的部分和在其间具有锥形部分的窄部分。 第一花边的宽部分在比鞋跟端更接近脚趾端的第一位置处固定到鞋面的中部脚部。 第二花边还连接到鞋面上,并且还包括宽的部分和在其间具有锥形部分的窄部分。 第二花边的宽部分在比第一位置更靠近鞋跟端的第二位置处固定到鞋面的中部脚部。