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Featured researches published by Laura Solomon.


ASME 2014 International Mechanical Engineering Congress and Exposition | 2014

HIGH TEMPERATURE THERMAL ENERGY STORAGE USING EPCM - THE EFFECT OF VOID

Laura Solomon; Ali F. Elmozughi; Sudhakar Neti; Alparslan Oztekin

Heat transfer simulations and predictions of the thermal energy storage capability using encapsulated phase change materials (EPCM) at high temperatures are conducted. NaNO3 is considered as a phase change material (PCM). The PCM is encapsulated by a stainless steel shell. Two dimensional simulations of a cylindrical capsule are considered. The effects of the buoyancy driven convection in the molten PCM as well as the thermal and volume expansions due to phase change are included in the thermal analysis. An initial void level of 20% is considered in the simulations of the EPCM capsules. EPCM capsules store energy not only by sensible heat but also by the latent heat of fusion as heat is stored or extracted from the capsule. The solid/liquid interface inside the PCM propagates radially inward during the melting process. The effect of a void on the thermal energy storage and on the evolution of the solid/liquid interface is characterized. Two cases are presented, that of a local void initially at the top of the EPCM capsule and an initially random void distribution. The initial location of the void within the capsule has a profound effect on the shape of the solid/liquid interface and the isotherms within the capsule. The results of these simulations can be the basis for the design of an EPCM based thermocline for thermal energy storage (TES) at a concentrated solar power plant and other applications.Copyright


International Journal of Heat and Mass Transfer | 2014

Encapsulated phase change material for high temperature thermal energy storage – Heat transfer analysis

Ali F. Elmozughi; Laura Solomon; Alparslan Oztekin; Sudhakar Neti


Renewable Energy | 2015

Effect of internal void placement on the heat transfer performance – Encapsulated phase change material for energy storage

Laura Solomon; Ali F. Elmozughi; Alparslan Oztekin; Sudhakar Neti


Journal of energy storage | 2016

Exergy analysis of cascaded encapsulated phase change material—High-temperature thermal energy storage systems

Laura Solomon; Alparslan Oztekin


Archive | 2013

The Use of Sodium Chloride & Aluminum as Phase Change Materials for High Temperature Thermal Energy Storage Characterized by Calorimetry

Laura Solomon


Energies | 2017

Development of an Integrated Thermal Energy Storage and Free-Piston Stirling Generator for a Concentrating Solar Power System

Songgang Qiu; Laura Solomon; Garrett Rinker


International Journal of Energy Research | 2018

Analysis of an encapsulated phase change material-based energy storage system for high-temperature applications

Laura Solomon; Ying Zheng; Kemal Tuzla; Sudhakar Neti; Alparslan Oztekin


Energies | 2018

Study of Material Compatibility for a Thermal Energy Storage System with Phase Change Material

Songgang Qiu; Laura Solomon; Ming Fang


Applied Thermal Engineering | 2018

Optimal placement of radiation shields in the displacer of a Stirling engine

Garrett Rinker; Laura Solomon; Songgang Qiu


Applied Thermal Engineering | 2018

Computational analysis of external heat transfer for a tubular Stirling convertor

Laura Solomon; Songgang Qiu

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Songgang Qiu

West Virginia University

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Garrett Rinker

West Virginia University

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Koji Yanaga

West Virginia University

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Pawan K. Yadav

West Virginia University

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