Paramtents
Materials titanium alloy, stainless steel, high-temperature
Applicable media Supercritical CO₂, natural gas, water, high-temper
Packging & Delivery
Briefing
By capturing and utilizing waste heat generated in industrial processes, it can be converted into useful energy
Detailed
Perform heat exchange between high-temperature and low-temperature fluids, allowing the low-temperature fluid to gain heat while reducing the temperature of the high-temperature fluid. This can be used for heating plant areas, providing domestic hot water, or generating electricity, thereby enhancing the overall efficiency of nuclear power plants.
1、High Efficiency: Utilizes microchannel structures for efficient heat exchange, reducing energy consumption and improving energy utilization efficiency.
2、High Compactness: Compact size and small footprint, saving space.
3、High Reliability: Offers excellent corrosion resistance and can withstand extreme temperatures (0-900°C) and high pressures (up to 100 MPa), ensuring stable operation in various harsh environments.
Perform heat exchange between the high-temperature, high-pressure coolant from the nuclear reactor and another fluid (typically water or steam), transferring the heat from the coolant to the other fluid, raising its temperature and generating steam, which is then used to drive a turbine generator for electricity generation.
Nuclear Energy
Utilizes supercritical carbon dioxide cycle systems for nuclear reactors to enhance nuclear power generation efficiency and reduce carbon dioxide emissions.
Solar Energy
In solar power generation systems, it can be used in heat collection systems to convert solar energy into thermal energy, driving the supercritical carbon dioxide cycle for electricity generation.
Geothermal Energy
Suitable for geothermal power generation systems, it heats the supercritical carbon dioxide working fluid using geothermal resources to drive generators and produce electricity.
Waste Heat Recovery
Used in industrial production to recover waste heat for energy reutilization, improving energy utilization efficiency in industrial processes and reducing energy waste.