摘要:
Embodiments disclosed here include a containment system and methods of containment which may include a segmented buoyant rim. Certain embodiments also include an inflatable rim with at least one inflation/deflation valve in the rim segments and ballast in the rim segments. Additionally, certain embodiments include material connected to the rim segments, to enclose a void created in the rim and to hang below the buoyant rim.
摘要:
A device and method for dispersing oil on water comprises a rig structure for being mounted in a vessel, the rig structure including a front transverse structure with at least one nozzle for flushing with pressurized water supplied from a pressure facility located on the vessel.
摘要:
A method for installing an assembly (10) for recovering hydrocarbons escaping from an underwater facility (21), including a first bottom assembly (25) including a rigid canopy having a large surface area, and a second top assembly (26) for raising fluids up to a surface facility (13). The steps of towing the fluid-raising top assembly are carried out concurrently during the installation of the fluid-raising top assembly (26).
摘要:
A rapidly deployable flexible enclosure system for the collection, containment and presentation of hydrocarbon emissions from compromised shallow or deepwater oil and gas well systems, pipelines, other structures, including subsea fissures. The flexible containment enclosure can accommodate various depths and collection terminator configurations. The flexible containment enclosure system is connected to a floating platform and supported by positive offset neutral buoyancy attachment devices. The floating platform with the flexible containment enclosure separates liquid and gaseous materials and directs them to separate ports for removal from a rigid enclosure cavity integrated within the floating platform. Gaseous emissions may optionally be directed to a tethered floating flare system. The system has the ability to partially or fully submerge for extended durations and resurface on demand manually or by transmitted signal. The system provides for operation by a combined tele-supervisory and autonomous control system.
摘要:
A cold water piping system including a floating platform having horizontal and vertical surfaces, the platform including a moon pool generally in the middle of the horizontal surface in the form of a vertical cylinder with four recesses having a rectangular shape, an articulating interface suspended directly from the platform, the interface including a tubular shape made of fabric and a bellows assembly disposed at a bottom portion thereof. The system also includes at least two suspension cable assemblies secured to the platform, where the at least two suspension cables cross the moon pool, vertically mounted modular elements, where ends of the suspension cable assemblies are fastened to a top modular element at four diametrically opposed points, and a strainer having sea water intakes including a counterweight connected to the lowest modular element. The system also includes winches disposed on the horizontal surface of the platform and deployment cables connected to the strainer and winches.
摘要:
Embodiments disclosed here include a containment system which may include a segmented buoyant rim. Certain embodiments also include an inflatable rim with at least one inflation/deflation valve in the rim segments and ballast in the rim segments. Additionally, certain embodiments include material connected to the rim segments, to enclose a void created in the rim and to hang below the buoyant rim.
摘要:
One (1) or more cylindrical units of bound and compressed vegetative matter (round hay bales) are aligned along shorelines which are subject to erosion and/or to an influx of petroleum-based pollutants as are released/discharged into waterways following an oil spill. As deployed, these units dissipate wave energy and capture sediment and/or pollutants. Specific embodiments are enumerated.
摘要:
A mobile HEB and TEP mitigation device includes a mobile body capable of movement within or upon a body of water. Located within the mobile body is a hydrodynamic separation system which includes a water inlet, a hydrodynamic separation unit and a collection tank. The hydrodynamic separation unit includes two outputs, one for a clean stream output line containing clean water and arranged to re-circulate the clean water, and another for a concentrate stream output line, the concentrate stream output line configured to place concentrated water containing potentially harmful bio-organic materials into the collection tank. Also included on the mobile body is a power source and an engine/steering unit, wherein the steering portion of the engine/steering unit provides a capacity to move the mobile body in an intended direction. The mitigation device may also be used as an embedded part of an on-shore arrangement.
摘要:
Provided are a management ship and working robots in waters based on a wireless network and a method for controlling working robots thereof. The robot-ship group includes: a signal strength measuring unit for measuring strengths of pre-defined signals; and a working robot control unit for determining which of the first mother ship and the second mother ship the working robot is to communicate with according to a comparison result of the signal strength, and controlling the working robots to perform the work according to a set-up route, wherein the first mother ship includes: a working robot preparing unit for performing a preparation work required before and after the working robots perform the work; and a mother ship control unit for transmitting the pre-defined signal to the working robot and communicating data with the working robot.
摘要:
Disclosed is a skimming system for removing a floating layer from a water surface. The skimming system comprises at least one guide element that is movable relative to the floating layer, which guide element is provided with at least one unit that catches the floating layer The at least one removal unit is provided with at least one collecting container that is detachably attached to the guide element. The collecting container is furthermore vertically adjustable, so that it is not only easy to detach and exchange the collecting container but that it is moreover possible to position the floating layer removal means at a desired depth in or below the floating layer. In this way an optimum removal of the floating layer can be realised. The inlet of the collecting container is present at a location where the extent to which water is mixed with the floating layer is minimal.