See how gap channels between heat exchange tubes eliminate central high-temperature zones and r
On-demand superheated steam with depressurized flow removes the pressure vessel, improving heat use and avoiding explosion risk.
Steam injected into a pressure-vessel boiler boosts high-pressure steam generation while cutting nitrogen-oxide pollutants from combustion.
This case uses depressurized, on-demand steam generation and flow diversion to simplify equipment and safely dry surfaces.
A steam generator converts contaminated tailings water into high-pressure steam for in situ oil recovery operations.
A superheated steam boiler merges combustion and heating functions into one unit.
Separating wet steam into dedicated vapor and liquid conduits prevents water hammer damage while maintaining high flow velocity over long distances.
Local well master controllers adjust fuel and oxidant flows via real-time sensor data, resolving performance optimization bottlenecks in heavy oil reservoirs.
Catalytic reduction of carbon oxides produces solid carbon while recovering thermal energy from effluent streams to lower operational costs.
Staged fuel injection into exhaust ducts dilutes combustible mixtures to lower flame temperatures in submerged combustion vaporizers.
A boiler uses hydrogen gas as a heat carrier to transfer thermal energy from metal nanoparticles to fluid.
A heat exchange apparatus uses a closed-loop fluid cycle to transfer thermal energy from a combustion source to natural gas infrastructure.
Extraction of combustion chamber into steam drum prevents local overheating and corrosion while maintaining efficient heat utilization.
An oxygen-firing system eliminates nitrogen dilution in a direct contact steam generator, enabling near 100% thermal efficiency and carbon capture readiness.
A downhole steam generator uses a sudden expansion burner head and water-cooled combustion sleeve to produce high-quality steam for reservoir injection.