Abstract:
A system for providing a flexible cover in a storage tank is provided that reduces the amount of vapors released from a hydrocarbon liquid and other liquids and reduces the amount of product (liquid) lost to the atmosphere. The flexible cover is, in some embodiments, comprised of one or more membranes joined together along their respect perimeter edges. The membranes are made from a material or materials that allow the cover to roll up, or otherwise reduce the cross sectional diameter or area of the cover, to allow the membrane to pass through a port in a storage tank. Once inside the storage tank, the cover may return to its normal and/or predetermined dimensions to cover the upper surface of the hydrocarbon or other liquid, which reduces the release of vapors from the hydrocarbon liquid and other liquids.
Abstract:
A method for forming a sealed floating roof for a storage tank is disclosed. A plurality of roof panels are positioned adjacent to one another such that respective depressions of adjacent roof panels disposed adjacent to one another form a walled trough at interconnections of the plurality of roof panels. A self-propelled automatic welder is positioned and guided within the walled trough to make a weld joint at the walled trough, and thus forming the sealed floating roof.
Abstract:
Method and apparatus for raising a floating roof included in a storage tank whereby a first and a first opposite force are applied between a floor in the storage tank and an internal surface of the floating roof. An additional set of forces are also provided and are constrained according to the first and first opposite force, not only in magnitude, but in position. By constraining these forces to be applied orthogonally to the floating roof, horizontal shear forces can be resisted thus reducing the likelihood of failure of a cribbing unit. By increasing these forces, the roof is raised.
Abstract:
The invention comprises a float evaporation reduction apparatus and method of use thereof. Individual floats self-right, self-unstack, and/or self-move through elements of the float design, such as a wind redirection element and/or a stability element. In one case, floats use top-side ridges to redirect wind forces to form, interconnect, and/or stabilize a self-assembled monolayer of floats. In another case, floats use side friction/interconnection forces to stabilize adjacent floats. In another case, one float and preferably a spatially distributed set of floats gather localized information as to the surrounding environment, and/or communicate data and/or information back to a controller.
Abstract:
A roof panel of a sealed floating roof for a storage tank includes a first frame segment and a second frame segment. Each of the first and second frame segments includes a first depression configured to abut an adjacent top depression of a respective frame segment of a respective adjacent roof panel to form a walled trough to guide an automatic welder along a weld joint during a welding process. The roof panel also includes a panel component. The panel component includes a top sheet and a pan-shaped bottom sheet coupled to the top sheet. The pan-shaped bottom sheet is coupled to a respective upper lip of each of the first and second frame segments.
Abstract:
The present invention relates to a self filling cover device for covering a surface of a liquid, having a shell (2) defining inner cavity, and the inner cavity is to be filled at least partly with liquid, so that the inner cavity is divided in at least two chambers (3,4) by a separating means (5,51,52), and one of the chambers (4) is provided by at least one opening (6) formed in the shell (2).
Abstract:
The disclosure teaches a polyurea coated water storage floatation cover comprising a layer of buoyant closed cell foam coated with polyurea, a upper layer of polyurea coated textile attached to the buoyant closed cell foam coated with polyurea, and attachment components affixed to the upper layer of the polyurea coated textile. The cover can be rolled up for storage and transportation. The cover can be reused. The cover can be made in sections that can be attached together to cover a large area of water surface such as in a retention pond or open top tank.
Abstract:
A floating roof monitoring system and method. One or more sensors can be disposed atop a liquid storage tank having a floating roof covering liquid stored in the liquid storage tank. Each laser sensor measures the distance between the sensor and the floating roof. One or more liquid level gauges can be deployed, which measure a liquid position of the liquid stored in the liquid storage tank. A computing system communicates electronically with the laser sensor(s) and the liquid level gauge(s) to calculate the difference between the liquid position and the distance between the sensor(s) and the floating roof to determine the exact position of the floating roof and activate an alarm or force a process associated with the liquid storage tank to halt.
Abstract:
This invention corresponds to a flotation device comprising a cylindrical body having perimetral flotation cavities; a predetermined quantity of air deposited and enclosed in each of such cavities; and covers to cover said cavities.
Abstract:
A liquid handling system and a method for receiving, storing, and dispensing a liquid while minimizing the exposure of the liquid to the ambient air are disclosed. The method includes upwardly shifting a barrier positioned in a storage container while filling the container with the liquid.