Patent classifications
B67D7/3209
Apparatus to implement automatic refilling functionality for a liquid holding tank that is the final tank in a flow-path-interconnected series of tanks
A tank refilling system is configured to keep liquid in a destination tank close to a predetermined destination tank fill line. The tank refilling system has a source tank connected to a destination tank with a flow through secondary process therebetween. Liquid flows between the tanks by gravity fed drainage. A single liquid supply channel to transfer pressurized supply liquid is comprised of a plurality of piping segments and one or more valves, all connected in series. A source tank mounted valve is configured to permit liquid to flow until the height of liquid level in the source tank reaches a predetermined level. A destination tank mounted valve is configured to permit liquid to flow until the height of liquid level in the destination tank reaches a predetermined level. The apparatus of the invention also prevents tank overflow for both the source tank and the destination tank.
AUTOMATIC COVER-OPENING AND CONNECTOR-REPLACING DEVICE FOR CHEMICAL CONTAINER
An automatic cover-opening and connector-replacing device for chemical container is disclosed. The device solves the problems of toxic substance leakage and even industrial safety accidents like gas explosions due to aging equipment during the maintenance by operating personnel in high-risk operation areas. The automatic cover-opening and connector-replacing device for chemical container mainly includes a machine, a lifting device provided inside the machine, a cover-opening device connected with the lifting device and a liquid-pumping device connected with the lifting device. The cover-opening device is provided for assembling and disassembling the internal cover of a chemical container and the liquid-pumping device is provided for pumping the content of the chemical container where the lifting device is provided for adjusting the distance between the cover-opening device, liquid-pumping device and chemical container.
System and Method for Automatic Fueling of Hydraulic Fracturing and Other Oilfield Equipment
A system and method for fueling multiple saddle tanks of hydraulic fracturing equipment from a single self-propelled cart. The cart having multiple retractable fuel lines for providing and obtaining fuel. Each retractable fuel supply line uses a flowmeter, a ball valve, and an electrically actuated valve to provide remote control to a controller based on a user's selected fueling requirements. An electronic reporting system provides fuel data to operators and users. Fuel data such as fuel tank status, an amount of fuel usage over a stage level, a daily level, or job level along with a fill level of the fuel tank.
FUEL VERIFICATION SYSTEM
Fuel management systems for a fuel dispensing facility including a fuel delivery system are disclosed. The fuel delivery system includes at least one storage tank configured to contain a fuel, at least one dispenser configured to receive the fuel from the at least one storage tank, and a fuel handling system which is configured to one of (1) deliver the fuel to the at least one storage tank, (2) receive the fuel from the at least one storage tank, (3) monitor for a leak within the fuel delivery system, and (4) monitor for a fuel inventory within the fuel delivery system. The fuel management system may include installation records of the fuel handling components. The fuel management system may monitor cameras positioned in sumps of the fuel delivery system. The fuel delivery system may include a camera positioned to monitor an interior of a sump, the interior of the sump being provided by a sump basin and a sump cover. The sump cover may be a sump lid. The sump cover may be a dispenser. The sump cover may be another portion of the fuel delivery system.
Fueling station sump dehumidifying system
Systems and methods for preventing biocorrosion of fuel handling components located in a sump in a fuel dispensing environment. One method includes exposing a hygroscopic material to moisture-laden air in the sump such that the hygroscopic material deliquesces into a liquid solution and exposing a buffer material to ethanol-blended fuel vapors in the sump. The method also includes collecting the liquid solution in a reservoir and monitoring the level of the liquid solution in the reservoir using a liquid level sensor. Further, the method includes notifying service personnel of the level of the liquid solution in the reservoir.
SPILL PREVENTION PLUG
A spill prevention plug is provided. A plug body has an interior side and an exterior side with a threaded aperture that extends from the interior side to the exterior side of the plug body. The interior side of the plug body is removably attachable to a hose. A bushing threadingly engages the threaded aperture. A one way valve with a first end and a second end is provided with the first end of the one way valve engaging the bushing from the exterior side of the plug body. The one way valve being movable between an open position in which fluid flows through the one way valve from the interior side of the plug body to the exterior side of the plug body and a closed position in which fluid is prevented from flowing through the one way valve. An adapter for connection to a pump engages the second end of the one way valve.
Multi-receptacle fuel filling and storage system and method of using the same
The present disclosure generally relates to a multiple receptacle fuel filling and storage system in a vehicle and/or powertrain, and a method of using the same.
HINGE ASSEMBLY FOR CONNECTING BARRELS
A hinge assembly is mountable on first and second large drums or barrels so that the first drum or barrel can be lifted or raised to drain liquid from the first drum or barrel into the second drum or barrel. The hinge assembly includes inner and outer plates which clamp to the rim of each drum to secure the hinge assembly to the drums. The plates may be adjustable to fit different rim dimensions. The hinge assembly does not penetrate, damage or alter the drums. An optional handle can be mounted to the hinge assembly to facilitate lifting of the first drum.
Hinge assembly for connecting barrels
A hinge assembly is mountable on first and second large drums or barrels so that the first drum or barrel can be lifted or raised to drain liquid from the first drum or barrel into the second drum or barrel. The hinge assembly includes inner and outer plates which clamp to the rim of each drum to secure the hinge assembly to the drums. The plates may be adjustable to fit different rim dimensions. The hinge assembly does not penetrate, damage or alter the drums. An optional handle can be mounted to the hinge assembly to facilitate lifting of the first drum.
Fueling Station
The application relates to a fueling station for a fuel generator having a fuel generator reservoir, the fueling station comprising: a station reservoir (11) for storing at least one reactant for fuel generation; a fueling interface (14) configured to engage with the fuel generator reservoir and dispense the at least one reactant to the fuel generator reservoir; and a controller (18) configured to: receive a parameter indicative of an intended use of the fuel generator; and control the fueling interface to dispense the at least one reactant in accordance with the parameter.