Physical Characterization of Solar Thermal Energy Storage (TES) Materials for Solar Dryers: Case of Volcanic Stone (Pozzolan) in Chad
Abstract
(ISSN 2690-1692)
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Publication Speed (median values for papers published in 2023): Submission to First Decision: 5.1 weeks; Submission to Acceptance: 11.6 weeks; Acceptance to Publication: 7 days (1-2 days of FREE language polishing included)
Special Issue
Thermal Energy Storage and Energy Engineering
Submission Deadline: February 28, 2025 (Open) Submit Now
Guest Editor
Beatrice Pulvirenti, PhD, Associate Professor
Alma Mater Studiorum University of Bologna, Bologna, Italy
Research interests: Computational Fluid Dynamics; CFD Simulation; Fluid Mechanics; Numerical Modeling; Convection; Experimental Fluid Mechanics; Heat Exchangers; Applied Thermodynamics; Heat Transfer; Modeling and Simulation
About This Topic
With the increasing energy shortage and environmental pollution, thermal energy storage and thermal management have received wide attention in the fields of solar thermal utilization, building energy efficiency, electronic equipment cooling, and battery thermal management. In order to improve the efficiency of thermal energy storage and thermal management systems, the thermal properties of the materials and the heat and mass transfer mechanism of the system are the key factors.
This special issue will cover the latest research and trends in thermal energy storage and thermal management, including materials, devices, and systems. In particular, this special issue will cover heat transfer and multiphase flow in different devices and systems.
Topics of interest for this special issue include, but are not limited to:
Thermal energy storage technologies, including sensible, latent and thermochemical heat or groups of these technologies Microchannels, loop heat pipes and homogenizing plates or flat heat pipes
Micro/nano heat transfer and multiphase flow in thermal energy storage and heat management systems, including experimental and computational studies
Advanced energy storage and management systems
Keywords
Thermal energy storage Battery thermal management
Cooling electronics
Nanofluids and Nanocapsules
Micro/Nano Heat Transfer
Multiphase flow
Computational Fluid Dynamics
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Publication
Physical Characterization of Solar Thermal Energy Storage (TES) Materials for Solar Dryers: Case of Volcanic Stone (Pozzolan) in Chadby
Michel Boukar
,
Etienne Tchoffo Houdji
,
Dimitri Valdes Tchuindjang Kwatchie
,
Guy Bertrand Tchaya
and
Danwe Raidandi
Abstract Many sensible heat storage materials are regularly used as thermal energy storage (TES) systems to improve the efficiency of solar dryers. The present work focuses on the effects of the volume and particle sizes of a volcanic stone (pozzolan) for the same purpose. Samples soaked in matt black and without soaking were also considered. Heat [...] |
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