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Testing of a 40-kWth Counterflow Particle-Supercritical Carbon Dioxide Narrow-Channel, Fluidized Bed Heat Exchanger

Journal Article · · SolarPACES Conference Proceedings

Particle-based primary heat exchangers (HXs) must deliver sCO2 fluid temperatures above 700°C to couple particle-based concentrating solar receivers and thermal energy storage (TES) sub-systems with efficient sCO2 power cycles. Particle-sCO2 HX designs have struggled to meet DOE cost targets (≤ $150/kWth) due to the amount of expensive nickel alloys necessary for manufacturing full-scale, particle-sCO2 HXs. Our team has demonstrated that mild bubbling fluidization of falling particles in a counterflow narrow-channel fluidized bed can reduce required HX surface area and thus, costs by increasing particle-wall heat transfer coefficients hT,w > 800 W m-2 K-1. This paper reports on the fabrication and testing of a stainless steel, particle-sCO2 HX with 12 fluidized-bed channels approximately 10.5 mm deep spaced between diffusion-bonded, micro-channel sCO2 plates. The HX with a core length of ≈0.56 m is fed with CARBOBEAD HSP particles through a short, fluidized freeboard zone just above the core. Testing to date in the National Solar Thermal Test Facility (NSTTF) at Sandia National Laboratories has shown that parallel bed fluidization maintains uniform particle inventory across the instrumented channels. Heat transfer thermal duty between the particle and sCO2 flows exceeds 30 kWth with sCO2 inlet temperatures of 200ºC and particle inlet temperatures up to 440ºC and mass flow rates of 0.2 kg s-1 fluidized by counterflowing gas flow rates of 0.005 kg s-1. Tests at higher particle and sCO2 inlet temperatures (600ºC and 400ºC respectively) are targeted to achieve > 40 kWth with model-predicted overall heat transfer coefficients U > 400 W m-2 K-1.

Research Organization:
Colorado School of Mines, Golden, CO (United States)
Sponsoring Organization:
USDOE; USDOE Office of Energy Efficiency and Renewable Energy (EERE), Renewable Power Office. Solar Energy Technologies Office
Grant/Contract Number:
EE0008538
OSTI ID:
2308876
Alternate ID(s):
OSTI ID: 2428973
OSTI ID: 2403668
Journal Information:
SolarPACES Conference Proceedings, Journal Name: SolarPACES Conference Proceedings Vol. 1; ISSN 2751-9899
Publisher:
TIB Open PublishingCopyright Statement
Country of Publication:
Country unknown/Code not available
Language:
English

References (11)

Heat transfer in gas fluidized beds part 2. Dependence of heat transfer on gas velocity journal April 1992
Dynamic simulation of an electric arc furnace waste heat recovery system for steam production journal May 2018
Modeling and parameter sensitivity analysis of fluidized bed solid particle/sCO2 heat exchanger for concentrated solar power plant journal October 2021
Heat transfer in counterflow fluidized bed of oxide particles for thermal energy storage journal November 2018
Design and operating considerations for a shell-and-plate, moving packed-bed, particle-to-sCO2 heat exchanger journal January 2019
Testing and model validation of a prototype moving packed-bed particle-to-sCO2 heat exchanger
  • Albrecht, Kevin J.; Carlson, Matthew D.; Laubscher, Hendrik F.
  • PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON ELECTRONIC DEVICES, SYSTEMS AND APPLICATIONS (ICEDSA2020), AIP Conference Proceedings https://doi.org/10.1063/5.0031483
conference January 2020
Narrow-channel fluidized beds for particle-sCO2 heat exchangers in next generation CPS plants conference January 2022
Moving Bed Heat Exchangers for Use With Heat Storage in Concentrating Solar Plants: A Multiphase Model journal September 2013
Technoeconomic Analysis of Alternative Solarized s-CO2 Brayton Cycle Configurations journal July 2016
Concentrating Solar Power Gen3 Demonstration Roadmap report January 2017
Performance Evaluation of a Prototype Moving Packed-Bed Particle/sCO2 Heat Exchanger report September 2022

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