Innovative sensible heat transfer medium for a moving bed heat exchanger in solar central receiver power plants
- Authors: Qoaider L.1, Thabit Q.1, Kiwan S.2
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Affiliations:
- School of Applied Technical Sciences
- Jordan University of Science and Technology
- Issue: Vol 53, No 2 (2017)
- Pages: 161-166
- Section: Solar Power Plants
- URL: https://journal-vniispk.ru/0003-701X/article/view/149290
- DOI: https://doi.org/10.3103/S0003701X1702013X
- ID: 149290
Cite item
Abstract
Renewable energies are gaining importance due to the steadily increasing scarcity of fossil fuels, the ongoing climate change and last but not least the risks which accompany the use of nuclear power. In this growing market, solar thermal power plants offer a centralized, potentially load following electricity production. To serve this need, the integration of thermal energy storage systems is essential. The Moving Bed Heat Exchanger MBHX storage concept for CSP systems using sensible heat transfer medium aims at using a low cost solid storage media. This concept requires intermediate bulk cycles to transfer heat between the solar field and the storage material (the bulk). Heat Transfer Fluids (HTF) such as synthetic oils (mobiltherm 603) are typically used. In this work, granular materials such as sand and rocks are studied to present an additional HTF to represent an efficient and cost-effective alternative. Low cost solid particulates can store and transport heat at temperatures over 1000°C. For the purpose of heat recovery, a moving bed heat exchanger (MBHX) is applied and tested. In this study, the dense granular mass is gravity-driven through a heat exchanger. The performance of the MBHX with the utilization of Sand, Basalt, and a Mixture of Sand and Basalt as a granular material was experimentally investigated. It is found that the effectiveness of the MBHX using a mixture of 50% sand and 50% basalt improved by 30% compared to using sand alone.
About the authors
Louy Qoaider
School of Applied Technical Sciences
Author for correspondence.
Email: Louy.Qoaider@gju.edu.jo
Jordan, Amman
Qahtan Thabit
School of Applied Technical Sciences
Email: Louy.Qoaider@gju.edu.jo
Jordan, Amman
Suhil Kiwan
Jordan University of Science and Technology
Email: Louy.Qoaider@gju.edu.jo
Jordan, Irbid
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