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    • 1. 发明申请
    • ANKLE SUPPORTIVE SOCK
    • ANKLE支撑袜
    • US20140330191A1
    • 2014-11-06
    • US13875554
    • 2013-05-02
    • Pierre CharlesChris Wright
    • Pierre CharlesChris Wright
    • A61F5/01
    • A61F5/0111
    • A pair of ankle supportive socks where each sock comprises a tubular body, where the tubular body includes a foot portion, a rise and an opening; an ankle brace attached to a backside of the tubular body; a pair of wings extending from the ankle brace, where the pair of wings wrap around the tubular body; a fastening means on the pair of wings, where the fastening means secures the wings to each other around the tubular body. The ankle supportive sock may include a padded toe and padded heel to provide additional comfort and support during wear.
    • 一对脚踝支撑袜,其中每个袜子包括管状体,其中管状体包括脚部,上升和开口; 附接到所述管状体的后侧的脚踝支撑件; 一对翼从踝支撑延伸,其中一对翼环绕管状体; 在所述一对翼上的紧固装置,其中所述紧固装置将所述翼彼此围绕所述管状体固定。 脚踝支撑袜可以包括填充脚趾和垫脚跟,以在穿着期间提供额外的舒适和支撑。
    • 3. 发明授权
    • Microseismic fracture mapping using seismic source timing measurements for velocity calibration
    • 使用地震源定时测量进行速度校准的微震断层图
    • US07660194B2
    • 2010-02-09
    • US11111627
    • 2005-04-21
    • James E. UhlChris WrightEric DavisJames WardNorman Warpinski
    • James E. UhlChris WrightEric DavisJames WardNorman Warpinski
    • G01V1/40
    • G01V1/40G01V1/008
    • A system and method for microseismic fracture mapping using seismic source timing measurements for velocity calibration is disclosed. The system may include a seismic source coupled to a wireline and a seismic source trigger, a sensor capable of detecting a first signal from the seismic source trigger, a transmitter coupled to the sensor, capable of transmitting a time value associated with the first signal, a receiver capable of detecting an event generated by the seismic source; and an analyzer capable of calculating a microseismic velocity of the event. In one embodiment, a first signal is transmitted through a wireline to trigger a seismic source. The first signal is detected, and a first time value associated with the first signal is transmitted. An event associated with the seismic source is detected and a second signal associated with the event is transmitted to an analyzer. A microseismic velocity is calibrated based on the time difference between the first time value and a second time value associated with the second signal.
    • 公开了一种使用地震源定时测量进行速度校准的微震断裂映射的系统和方法。 该系统可以包括耦合到有线线路的地震源和地震源触发器,能够检测来自地震源触发器的第一信号的传感器,耦合到传感器的能够发送与第一信号相关联的时间值的发射器, 能够检测地震源产生的事件的接收机; 以及能够计算该事件的微震速度的分析器。 在一个实施例中,第一信号通过电缆传输以触发地震源。 检测第一信号,并且发送与第一信号相关联的第一时间值。 检测与地震源相关联的事件,并且将与事件相关联的第二信号发送到分析器。 基于第一时间值与与第二信号相关联的第二时间值之间的时间差校准微震速度。