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Molten Salts Tanks Thermal Energy Storage: Aspects to Consider during Design
by
Prieto, Cristina
, Cabeza, Luisa F.
, Blindu, Adrian
, García, Guillermo
, Valverde, Juan
in
Accident prevention
/ challenges
/ concentrating solar power (CSP)
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Design
/ Efficiency
/ Energy storage
/ failures
/ Force and energy
/ Green technology
/ Heat
/ Heat storage
/ Insulation
/ molten salt tanks
/ Radiation
/ Solar energy
/ Solar power plants
/ Temperature
/ Thermal energy
/ thermal energy storage (TES)
2024
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Molten Salts Tanks Thermal Energy Storage: Aspects to Consider during Design
by
Prieto, Cristina
, Cabeza, Luisa F.
, Blindu, Adrian
, García, Guillermo
, Valverde, Juan
in
Accident prevention
/ challenges
/ concentrating solar power (CSP)
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Design
/ Efficiency
/ Energy storage
/ failures
/ Force and energy
/ Green technology
/ Heat
/ Heat storage
/ Insulation
/ molten salt tanks
/ Radiation
/ Solar energy
/ Solar power plants
/ Temperature
/ Thermal energy
/ thermal energy storage (TES)
2024
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Do you wish to request the book?
Molten Salts Tanks Thermal Energy Storage: Aspects to Consider during Design
by
Prieto, Cristina
, Cabeza, Luisa F.
, Blindu, Adrian
, García, Guillermo
, Valverde, Juan
in
Accident prevention
/ challenges
/ concentrating solar power (CSP)
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Design
/ Efficiency
/ Energy storage
/ failures
/ Force and energy
/ Green technology
/ Heat
/ Heat storage
/ Insulation
/ molten salt tanks
/ Radiation
/ Solar energy
/ Solar power plants
/ Temperature
/ Thermal energy
/ thermal energy storage (TES)
2024
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Molten Salts Tanks Thermal Energy Storage: Aspects to Consider during Design
Journal Article
Molten Salts Tanks Thermal Energy Storage: Aspects to Consider during Design
2024
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Overview
Concentrating solar power plants use sensible thermal energy storage, a mature technology based on molten salts, due to the high storage efficiency (up to 99%). Both parabolic trough collectors and the central receiver system for concentrating solar power technologies use molten salts tanks, either in direct storage systems or in indirect ones. But even though this is a mature technology, it still shows challenges in its implementation and operation. This paper underscores the critical importance of stringent design criteria for molten salt tanks in thermal storage technology. Focusing on the potential ramifications of design failures, the study explores various dimensions where an inadequate design can lead to severe consequences, even jeopardizing the viability of the entire technology. Key areas discussed include structural integrity, corrosion, thermal shock, thermal expansions, and others. By elucidating the multifaceted risks associated with design shortcomings, this paper aims to emphasize the necessity of thorough reviews and adherence to robust design principles for ensuring the success, safety, and sustainability of thermal storage technology.
Publisher
MDPI AG
Subject
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