Placing CNG tanks on the canopy structure avoids costly excavation and preserves the existing station footprint.
Polygon strut support accommodates thermal contraction while resisting radial forces, preventing cold bridges in cryogenic storage.
Mobile gaseous fuel module transports compressed natural gas to remote areas, eliminating expensive pipeline infrastructure costs.
A vehicle tank system uses a changeover valve to connect individual vent lines to a common coupling for safe refueling.
Vertical stacking of leaf springs increases pressure relief capacity while maintaining height constraints for rail tank car applications.
Translationally adjustable anchor plates resolve the contradiction between compact transport volume and reliable buoyancy control for buried liquid gas tanks.
A sublimated gas supply system stabilizes gas concentration using vacuum containers and flow control units.
An aluminum block with threaded cavities stores hydrogen via metal powders to prevent steel embrittlement and manage exothermic heat.
A valve actuating member moves an electronic switch to manage power states for integrated components.
A single-component flexible valve restricts gas outflow using pressure differentials without mechanical springs.
Radial partition network distributes impact forces across rounded tank ends, maintaining passenger volume while ensuring structural integrity.
Dissolving natural gas in light-hydrocarbon solvents creates a liquid phase mix with higher volumetric ratios.
A resin liner incorporates a central restriction portion to anchor the fiber-reinforced layer and prevent axial displacement.
A lever and ramp mechanism amplifies user input force to puncture pressurized gas cartridges, reducing required effort while preventing component deformation.
An abandoned mine shaft houses a thermal storage system that recovers compression heat via water circuits, eliminating the need for scarce salt caverns.
Adhesive bonding joins caps to pipe ends, resolving manufacturing complexity while maintaining pressure resistance.
A load-decoupling attachment system uses spherical bearings and slots to secure baffle tiers while allowing rotational and linear movement.
A hybrid pressure vessel array uses Type 1 metal vessels to dissipate heat from compressed gas during refueling.
A clamped connection system with identical material components compensates for thermal expansion differences in cryogenic tanks.
A mobile trolley houses gas cylinders and features a Y-shaped distribution shaft with internal conduits for respiratory gas delivery.
A cascade dispensing system moves compressed gas between storage vessels using pressure differences to maintain continuous delivery.
A pressurized gas release device uses a salinity sensor to trigger automatic inflation via an electrically fireable primer.
Spring-loaded claws engage grooves on gas cylinder fittings to prevent thread damage and ensure safe automated locking.
Integrated regulator merges valve and pressure reduction functions into one assembly, eliminating external equipment needs.
Annular insert with elastomeric O-ring prevents extrusion and maintains seal reliability under high pressure.
Integrated rotary valve merges refilling and delivery functions, reducing component complexity for liquefied gas cylinders.
An ejector pump circulates hot gas through a heat exchanger, preventing compression heating during high pressure refueling.
A thermally conductive layer on a discharge pipe dissipates heat from an outer container, reducing vaporization loss in a cryogenic storage vessel.
Hanger structure with complementary carriers suspends reservoir in intermediate position for single-operator handling.
Segmented stainless steel handle resolves trade-off between ease of operation and adaptability for cylindrical tanks.
Cooling fluid circulation through blowing pins reduces production time for pressure vessel blanks while maintaining structural stability.
Integrated fixing structure merges pipe fixation with thermal insulation to resolve gas-tight sealing complexity in cryogenic environments.
A tank container design segments filling and discharge stub ducts into independent top and bottom blocks with lockable compartments.
External sensor detects liquid level via thermal conduction, avoiding internal installation complexity.
A CNG tank housing apparatus mounts below the roofline of refuse vehicles to reduce aerodynamic drag.
A pressure sensor connector couples to gas cylinders and uses a through hole to route gas to an electronic board for signal processing.
A valve gas outlet element protrudes externally to direct flow parallel to the longitudinal axis.
Wireless pressure sensors estimate individual vehicle fuel intake during simultaneous refueling, resolving measurement precision trade-offs in fleet operations.
Segmented parallel transfer lines manage varying source pressures to optimize logistics efficiency and reduce filling time for multiple vehicles.
Welding peripheral tabs joins structural and barrier layers, resolving permeation resistance issues in hydrogen storage tanks.
Mechanical retainers secure hung reservoirs via axial clearance, eliminating cement stress and preventing leaks during high-pressure storage.
Separate mouthpiece heating prevents heat loss to liners, ensuring uniform curing speed and consistent strength in high-pressure gas tanks.
A cooling circuit recovers vaporized cryogenic fluid to maintain heat exchanger temperatures between -30°C and -50°C during gas tank filling.
A gas cylinder protective cap integrates distinct plastic materials to secure the valve assembly.
Proximity sensors and microswitches detect attached fill hoses to prevent drive-away accidents during compressed natural gas refueling.
Elastic band synchronizes tank protector movement with fuel cell tank expansion, preventing gap formation and localized force damage.
A gas supply device integrates a safety valve between the pressure regulator and connection end to vent excess fluid.
An integrated fixing element on a protective cowling engages a support housing to resolve instability risks in medical gas cylinder attachment systems.
An insulated partition wall merges the tank connection space with the gas storage volume, eliminating double-wall pipes and reducing structural complexity.