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Projects
Rotor Gas Engine Power Plant
Jal Gas Engine Power Plant
Rotor Gas Engine Power Plant
The project involves the conversion of an existing boiler house into a 4 MW mini-CHP plant by adding gas engine units operating in heat recovery mode. The technical solution includes two 2 MW gas engine units manufactured by Rolls-Royce in containerized design. The containerization and turnkey implementation of the project are carried out by Rolls-Royce's official exclusive partner in Central Asian countries, IEC Energy, Germany, an authorized system integrator and service provider with over 20 years of experience in decentralized small-scale generation projects. Rolls-Royce units were chosen for their high efficiency, best-in-class reliability, and lowest total cost of ownership among all leading global manufacturers.
The units operate stably without power reduction at ambient temperatures up to 40 °C, which is crucial for countries with hot climates. They also offer the longest time to major overhaul among gas engine leaders, amounting to 84,000 operating hours. IEC Energy ensures technological integration with electrical and thermal networks, as well as comprehensive solutions for automation, dispatching, and asset monitoring. The power delivery scheme to the national grid operator JSC NESC is organized at 10 kV via an integrated switchgear in containerized design.
The project includes a small photovoltaic station in the form of a carport to cover the internal needs of the cogeneration units, enabling project hybridization and reducing environmental impact. The heat recovery system features deep flue gas cooling through a hot water recovery boiler with enhanced heat exchange surfaces, achieving an overall efficiency of more than 92%. The thermal capacity of the asset is 4 Gcal/h, selected based on the hot water demand of the grid district.
A long-term service contract for 10 years of operation before major overhaul ensures rapid response time, availability of spare parts stock, business predictability due to cost stability, and precise cost control. The level of automation allows the power plant to operate in fully automatic mode without on-site personnel.
The implementation of the project demonstrates the investor’s commitment to selecting high-quality equipment with exceptional reliability, efficiency, and environmental performance. The project is aimed at improving the reliability of power supply at the load node, reducing energy flows, increasing autonomy, lowering heat supply costs, and enhancing environmental performance at the location.
Jal Gas Engine Power Plant
The project involves the conversion of an existing boiler house into a 4 MW mini-CHP plant by adding gas engine units operating in heat recovery mode. The technical solution includes two 2 MW gas engine units manufactured by Rolls-Royce in containerized design. The containerization and turnkey implementation of the project are carried out by Rolls-Royce's official exclusive partner in Central Asian countries, IEC Energy, Germany, an authorized system integrator and service provider with over 20 years of experience in decentralized small-scale generation projects. Rolls-Royce units were chosen for their high efficiency, best-in-class reliability, and lowest total cost of ownership among all leading global manufacturers.
The units operate stably without power reduction at ambient temperatures up to 40 °C, which is crucial for countries with hot climates. They also offer the longest time to major overhaul among gas engine leaders, amounting to 84,000 operating hours. IEC Energy ensures technological integration with electrical and thermal networks, as well as comprehensive solutions for automation, dispatching, and asset monitoring. The power delivery scheme to the national grid operator JSC NESC is organized at 10 kV via an integrated switchgear in containerized design.
The project includes a small photovoltaic station in the form of a carport to cover the internal needs of the cogeneration units, enabling project hybridization and reducing environmental impact. The heat recovery system features deep flue gas cooling through a hot water recovery boiler with enhanced heat exchange surfaces, achieving an overall efficiency of more than 92%. The thermal capacity of the asset is 4 Gcal/h, selected based on the hot water demand of the grid district.
A long-term service contract for 10 years of operation before major overhaul ensures rapid response time, availability of spare parts stock, business predictability due to cost stability, and precise cost control. The level of automation allows the power plant to operate in fully automatic mode without on-site personnel.
The implementation of the project demonstrates the investor’s commitment to selecting high-quality equipment with exceptional reliability, efficiency, and environmental performance. The project is aimed at improving the reliability of power supply at the load node, reducing energy flows, increasing autonomy, lowering heat supply costs, and enhancing environmental performance at the location.
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