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    • 57. 发明申请
    • Device and methods for capturing, separating, and transferring petroleum fluids from underwater leak sites
    • 从水下泄漏点捕获,分离和转移石油流体的装置和方法
    • US20130259572A1
    • 2013-10-03
    • US13432714
    • 2012-03-28
    • Thomas Toedtman
    • Thomas Toedtman
    • E02B15/04B63G8/14
    • B63B22/20B63B27/34B63B35/32B63G2008/007
    • A chamber device that collects, contains, and transfers undersea leaking hydrocarbon fluids from various possible leak sources, comprises a remote controller cooperating with valves and sensors to automatically modulate the transfer flow rates of one or more fluids from the device to cooperating industry equipment. The device remote controller further comprises procedural data with simulation derived process control data, and cooperates with other sensors, valves, and external data inputs to enable updated interactive procedural data, with updated process control data to reduce the probability of error while enabling automated control functions during deployment, descent, and operation. Sea surface methods of loading ballast and low density fluids combine to deliver the very large negative buoyant force to the leak site where a method to release the ballast enables device recovery.
    • 从各种可能的泄漏源收集,容纳和转移泄漏的渗漏的烃类流体的室装置包括与阀和传感器配合的远程控制器,以自动调节一种或多种流体从设备到合作的工业设备的转移流量。 设备遥控器还包括具有模拟导出的过程控制数据的程序数据,并且与其他传感器,阀和外部数据输入协作以实现更新的交互式过程数据,具有更新的过程控制数据以减少错误概率,同时实现自动化控制功能 在部署,下降和操作期间。 装载镇流器和低密度流体的海面方法结合起来,将非常大的负浮力传递到泄漏部位,在这里泄放镇流器的方法使设备恢复。
    • 59. 发明授权
    • System and method for modifying the net buoyancy of underwater objects
    • 改善水下物体净浮力的系统和方法
    • US08136470B1
    • 2012-03-20
    • US12793321
    • 2010-06-03
    • James BuescherPeter Sullivan
    • James BuescherPeter Sullivan
    • B63G8/14
    • B63G8/14B63G8/26B63G8/42B63G2008/007
    • Buoyancy is controlled in a tethered object by pumping fluids, either of a first or second specific gravity, from an external source into either a first or second containment chamber to change the respective volumetric capacities of the first and second containment chambers. The containment chambers are configured such that the second chamber is at least partially enclosed within the first chamber. The second chamber is configured to expand and retract within the first chamber, which has a fixed housing. Expansion or contraction of the second chamber results in a corresponding inverse change in a volumetric capacity of the first chamber. The fluid chambers may be separate or contained within the same housing, and may be located on a towing vessel. Sensor data from the tethered object's environment may be used to control the transfer of fluid to the first and second chambers.
    • 通过将来自外部源的第一或第二比重的流体泵送到第一或第二容纳室中以改变第一和第二容纳室的相应容积来控制浮力在系留物体中。 容纳室被构造成使得第二室至少部分地封闭在第一室内。 第二腔室被构造成在具有固定壳体的第一腔室内扩张和缩回。 第二室的膨胀或收缩导致第一室的容积的相应的反向变化。 流体室可以分开或容纳在相同的壳体内,并且可以位于牵引容器上。 来自系留对象环境的传感器数据可用于控制流体到第一和第二腔室的传送。