Performance improvement of dry cooled advanced concentrating solar power plants using daytime radiative cooling
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- Type
- article
- Published
- 2015-12-01
- Cited by
- 97
- References
- 38
- OpenAlex
- https://openalex.org/W1906459368
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93446570
Keywords
Radiative cooling, Nuclear engineering, Radiative transfer, Environmental science, Air cooling
References
- The Supercritical Carbon Dioxide Power Cycle: Comparison to Other Advanced Power Cycles
- Water Use in Parabolic Trough Power Plants: Summary Results from WorleyParsons' Analyses
- Thermodynamic Study of Advanced Supercritical Carbon Dioxide Power Cycles for Concentrating Solar Power Systems
- Carbon Dioxide Condensation Cycles For Power Production
- Reducing water consumption of an industrial plant cooling unit using hybrid cooling tower
- Experimental upper bound on superradiance emission from Mn 12 acetate
- Radiative cooling efficiency of white pigmented paints
- Techno-economic Analysis of enhanced dry cooling for CSP
- Radiative cooling during the day: simulations and experiments on pigmented polyethylene cover foils
- Electricity production with low grade heat in thermal power plants by design improvement of a hybrid dry cooling tower and a solar chimney concept
- SUPERCRITICAL THERMODYNAMIC POWER CYCLE.
- Design alternatives for the use of cooling water in the process industry: Minimization of the environmental impact from cooling systems
- Ultrabroadband photonic structures to achieve high-performance daytime radiative cooling.
- A review of studies on central receiver solar thermal power plants
- Radiative heat pumping from the Earth using surface phonon resonant nanoparticles.
- Analysis of Advanced Supercritical Carbon Dioxide Power Cycles With a Bottoming Cycle for Concentrating Solar Power Applications
- A Comparison of Supercritical Carbon Dioxide Power Cycle Configurations with an Emphasis on CSP Applications
- Heat rejection enhancement in natural draft cooling tower using radiator-type windbreakers
- Cooling performance and efficiency of night sky radiators
- Dry cooling of concentrating solar power (CSP) plants, an economic competitive option for the desert regions of the MENA region
Cited by
- Techno-economic performance of concentrating solar power plants under the climatic conditions of the southern region of Tunisia
- Night sky cooling for concentrating solar power plants
- Anthropogenic Heat Generation and Heat Exhaust to the Ultimate Sink
- Radiative cooling to deep sub-freezing temperatures through a 24-h day–night cycle
- Development of one-dimensional photonic selective emitters for energy harvesting applications
- Integration between supercritical CO2 Brayton cycles and molten salt solar power towers: A review and a comprehensive comparison of different cycle layouts
- Applicability of CSP solar fields to the dry cooling of related thermodynamic cycles
- Modeling of a solar power plant in Iran
- Comparison of direct and indirect natural draft dry cooling tower cooling of the sCO2 Brayton cycle for concentrated solar power plants
- Optimization of a Heliostat Field Layout on Annual Basis Using a Hybrid Algorithm Combining Particle Swarm Optimization Algorithm and Genetic Algorithm
- Computational investigations of heat transfer to supercritical CO2 in a large horizontal tube
- A review of clear sky radiative cooling developments and applications in renewable power systems and passive building cooling
- Performance investigation of a novel closed Brayton cycle using supercritical CO2-based mixture as working fluid integrated with a LiBr absorption chiller
- Numerical study on cooling heat transfer of turbulent supercritical CO2 in large horizontal tubes
- Subambient Cooling of Water: Toward Real-World Applications of Daytime Radiative Cooling
- Simultaneously and Synergistically Harvest Energy from the Sun and Outer Space
- Effect of atmospheric water vapor on radiative cooling performance of different surfaces
- Radiative sky cooling: Fundamental principles, materials, and applications
- Effect of cooling system design on the performance of the recompression CO2 cycle for concentrated solar power application
- Computational investigations on convective flow and heat transfer of turbulent supercritical CO2 cooled in large inclined tubes
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