Strategic placement of high strength fiber reinforced plastic in the dome portion increases bursting strength and stiffness while reducing material usage.
Segmented supporting members adjust to tank positions, absorbing manufacturing deviations that cause local loads and reduce durability.
Water displacement compresses hydrogen gas in a storage tank while coolant fluid absorbs heat to prevent overheating during high-pressure delivery.
A rigid ring element embedded within a polymeric liner supports a metallic port and fiber composite shell.
Nesting a secondary fuel tank inside a primary tank resolves packaging complexity while enabling dynamic fuel substitution to reduce carbon emissions.
Integrated blow molding and welding of the liner pinch reduces material waste and production time while maintaining structural integrity under high pressure.
Strategic variation of helical and hoop layer winding angles reduces shear stress and prevents fiber winding collapse in high-pressure tanks.
Pressurizing the intermediate space between the inner bladder and outer wall resists wind and snow loading while minimizing structural complexity.
A sealed partition wall isolates electrically powered components from hazardous gas vapors, eliminating the need for expensive explosion-proof enclosures.
A unified spacecraft propellant management system shares inert gas between chemical and electric thrusters.
Elevated modular fuel tanks use shock-absorbing resin to isolate structural stresses, preventing soil contamination from underground leakage.
A hydrogen refueling controller establishes an estimated state of charge using pre-estimated correction factors to determine the upper termination point.
A tank system uses a pressure-controlled heating element to reduce container pressure without complex valves.
Model predictive controller manages ambient air vaporizer banks using thermal imaging and weather data to prevent frost degradation.
An AI controller manages hydrogen refueling facilities by collecting operational data and executing automated learning protocols.
Segmenting filtration via a wick reduces pressure drop and desorption time in gas dispensing vessels.
A subsurface storage container uses a non-hardening liquid in an annulus to manage pressure between liner and casing.
Integrated detection mechanism identifies emergency disconnects via parallel movement, eliminating external sensors and reducing attachment labor.
Embedding transfer stations within the deck structure eliminates protruding equipment, preserving clear movement paths and reducing safety risks.
Strained shape memory alloy element shortens upon heating to pull a lever and open a pressure relief valve.
Circulating refrigerant through the charging pipe suppresses hydrogen temperature rise, maintaining the intended filling volume.
An insulated intermediate space protects sealing membranes from low temperatures, reducing leak risks in cryogenic vessels.
Thickened metal plate reinforces ship tank orifices, diffusing stress concentrations caused by beam bending and preventing deformation.
Parallel scavenging pipes connect pressurized gas sources to transfer lines, reducing on-board mass and volume while enabling rapid line inerting.
Additive manufacturing creates a single-piece pressure sensing device that eliminates weld defects and gas spikes in subatmospheric systems.
A cup-shaped gasket seals compressed gas cylinder necks using upper and lower portions that contact the top and side surfaces.
A compressor unit supplies hydrogen to filling tanks, maintaining higher pressure values in accumulator banks.
Pre-wired modular skids eliminate underground wiring complexity, enabling rapid above-ground deployment of portable compressed natural gas fueling stations.
Retractable plugs in the pressure tank allow controlled fluid discharge during breaches, preventing air ingress and explosive mixture formation.
Laser fusion of a stepped plastic boss joint prevents gas leaks at the liner interface under high pressure.
A metal storage housing surrounded by a heat shield reduces external heat input to maintain safe internal pressure and temperature levels.
Low-melting-point solder fixes metal wires to a flange, preventing thermal damage and ensuring stable tension for hydrogen storage vessels.
An immiscible oil layer acts as a liquid piston to compress natural gas, reducing peak power demands and preventing contamination during refuelling.
Segmented hollow cylindrical elements reduce heat transfer while slidable outer members absorb thermal contraction loads.
A pressurized fluid container uses a second microprocessor-integrated temperature sensor to compare readings against the primary fluid sensor for immediate fault identification.
Direct compression eliminates bulky high-pressure storage tanks, reducing infrastructure weight and safety risks.
A gas tank valve uses distinct pivoting floats for level measurement and overfill protection to enable flexible installation across various tank geometries.
Boss drives inner casing alignment from outside, simplifying welding.
Internal hollow shafts distribute pressure forces across facing walls, enabling 500 bar storage without increasing external volume.
A fuel refueling connector integrates a detection sensor to identify the coupled dispenser and triggers a signal transmitter for readiness communication.
A liquid dispenser uses a capacitance probe to measure dielectric constant for density calculation.
Mesh hole portions in a cone-shaped prevention body guide liquid oxidizer flow to prevent vortex formation at tank outlets.
Fabric container with adhesive flaps secures aircraft gas cylinders, preventing damage to nearby hydraulic lines.
Segmenting the closure into a domed portion and cylindrical zone concentrates penetrations locally, preserving structural integrity while simplifying assembly.
A dual collar locking device secures tank fill port caps using a removable blocking mechanism and protective outer sleeve.
A valve device integrates a manual actuating element to move the valve body into a partially open position.
A resilient seal member interposed between a stiff tubular member and valve maintains reliable sealing under varying pressure conditions.
Relocating the storage unit to the vehicle roof frees low-floor transport space while maintaining safety valve accessibility through a remote control unit.
Optimized dome opening diameter and thread root positioning enhance gas pressure vessel durability.