Designed for small industrial plants, captive power, and localized waste heat recovery where compact footprint and rapid start-up capabilities are critical.
Ultra-compact impulse steam turbine ideal for small-scale waste heat utilization, decentralized energy recovery, and mechanical drive applications.
Flexible impulse and reaction units widely used in biomass energy projects, municipal waste-to-energy, and onsite industrial power generation.
Popular capacity rating for sugar mills, small chemical plants, and cement plant waste heat recovery (WHR) installations requiring continuous baseline power.
Engineered for mid-sized processing plants, district heating schemes, and combined heat and power (CHP) installations requiring extraction or back-pressure steam.
Highly adaptable condensing and extraction condensing models designed for paper mills, refineries, and medium-sized captive power plants.
Balanced power-to-heat ratio unit optimized for combined cycle systems, solar thermal (photothermal), and large waste incineration projects.
High-capacity industrial driver offering full parameter coverage up to high pressure and ultra-high pressure, delivering optimal fuel efficiency for industrial parks.
Built for main-grid power generation, major chemical complexes, and combined cycle utility plants demanding supercritical steam parameters and maximum thermal efficiency.
High-performance reaction and impulse steam turbine suitable for large utility power stations, regional cogeneration heat supply, and heavy industrial power grids.
Advanced high-pressure reaction turbine configuration available in conventional-speed or high-speed models, optimized for utility-scale power generation.
Top-tier impulse unit covering all steam parameters up to supercritical conditions, delivering maximum capacity and world-class thermodynamic performance.
Condensing Units: Maximizes total power generation efficiency via circulating water or air cooling.
Back Pressure & Extraction Units: Provides process steam for industrial heating or municipal district heat networks.
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