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Advanced Characterization of Particulate Flows for Concentrating Solar Power Applications

  • Peter Loutzenhiser
  • , Devesh Ranjan
  • , Zhuomin Zhang
  • , Malavika Bagepalli
  • , Joshua Brooks
  • , Chuyang Chen
  • , Shin Young Jeong
  • , Andrew Schrader
  • , Justin Yarrington

Research output: Book/ReportTechnical Report

Abstract

The overarching goal of this project was to gain a greater fundamental understanding of heat and mass transfer in particulate-media in concentrated solar power (CSP) applications for thermal energy storage (TES) and to disseminate results to support parallel Gen3 research initiatives. Project objectives were achieved through three planned project phases to systematically characterize the heat transfer and flow properties for particulate (granular) flows at elevated temperatures up to 800 °C. These objectives were accomplished using a combination of fundamental experimental measurements, modeling, and simplified flow experiments over a range of temperatures. This work addressed a serious gap within the field related to the understanding and modeling of granular flow behavior and the related heat transfer at different temperatures, which directly correspond to the operating points of CSP applications which use particles for heat storage.
Original languageEnglish
DOIs
StatePublished - Sep 30 2022
Externally publishedYes

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