Long-duration thermal storage for solar-thermal high-pressure steam IPH
Solar-thermal central-receiver systems are cost effective for electric-power and industrial process-heat applications. Systems employing molten nitrate salt as both receiver working fluid and storage have previously been evaluated for diurnal thermal storage. This study evaluates the potential of employing a molten salt receiver for a baseload industrial process plant requiring saturated steam at 68 atm (1000 psi). Two types of thermal storage are evaluated: molten salt, and air and rock. When thermal storage of six hours or less is used, molten nitrate salt alone is the optimum storage. For more than six hours, the optimum storage is a combination of molten salt and air and rock. The air and rock system uses a molten-salt-to-air heat exchanger and a thermocline rock bed heated and cooled by the air. The economic potential of the system is determined. The results depend on the relative cost of fossil fuel and the solar thermal energy costs. The optimum quantity of storage is highly variable, and the range is from no storage to a long duration capacity - 48 hours.
- Research Organization:
- Solar Energy Research Inst., Golden, CO (USA); California Univ., Berkeley (USA); North Carolina State Univ., Raleigh (USA)
- DOE Contract Number:
- AC02-77CH00178
- OSTI ID:
- 6536884
- Report Number(s):
- SERI/TP-252-1869; CONF-830405-6; ON: DE83005127
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
140905*
142000 -- Solar Energy-- Heat Storage-- (1980-)
CONCENTRATING COLLECTORS
ECONOMICS
ENERGY
ENERGY STORAGE
ENERGY SYSTEMS
EQUIPMENT
HEAT
HEAT EXCHANGERS
HEAT STORAGE
HIGH PRESSURE STEAM IPH
MOLTEN SALTS
OPTIMIZATION
PROCESS HEAT
ROCK BEDS
SALTS
SOLAR
SOLAR COLLECTORS
SOLAR EQUIPMENT
SOLAR PROCESS HEAT
STEAM SYSTEMS
STORAGE
THERMAL ENERGY STORAGE EQUIPMENT
THERMAL STORAGE
TOWER FOCUS COLLECTORS