The paper introduced a novel FB-CSP system using gas/solid two-phase flow to replace liquid salt or oil as
HTF and solids as storage media. The materials used (ash, sand, refractory brick, and concrete) are stable, abundant,
and low cost, assisting solar energy to meet the DOE SunShot cost goal. The TES can integrate with mature CFB
technology for the tower system design. By collaborating with the FB-boiler manufacturer, we can develop a
fluidization-based CSP thermal system by dramatically shortening the development cycle and reducing the risk. The
success of the technology will be accelerated with integration of commercial fluidization technology, continued
development and improvement of a solid-particle receiver, and system development of the FB-CSP plant. The FBCSP
thermal system will be compatible with any power cycle. The technology development is low risk with high
return to put the product in the field.
The paper introduced a novel FB-CSP system using gas/solid two-phase flow to replace liquid salt or oil as
HTF and solids as storage media. The materials used (ash, sand, refractory brick, and concrete) are stable, abundant,
and low cost, assisting solar energy to meet the DOE SunShot cost goal. The TES can integrate with mature CFB
technology for the tower system design. By collaborating with the FB-boiler manufacturer, we can develop a
fluidization-based CSP thermal system by dramatically shortening the development cycle and reducing the risk. The
success of the technology will be accelerated with integration of commercial fluidization technology, continued
development and improvement of a solid-particle receiver, and system development of the FB-CSP plant. The FBCSP
thermal system will be compatible with any power cycle. The technology development is low risk with high
return to put the product in the field.
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