4.6 Article

Thermal analysis and measurement of a solar pond prototype to study the non-convective zone salt gradient stability

Journal

SOLAR ENERGY
Volume 86, Issue 5, Pages 1366-1377

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.solener.2012.01.029

Keywords

Salinity gradient solar pond; Stability Margin Number; SMN; UCZ; NCZ; LCZ

Categories

Funding

  1. Department of Mechanical Engineering
  2. Student Employment Program
  3. Department of Energy

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Solar ponds combine solar energy collection with long-term storage and can provide reliable thermal energy at temperature ranges from 50 to 90 degrees C. A solar pond consists of three distinct zones. The first zone, which is located at the top of the pond and contains the less dense saltwater mixture, is the absorption and transmission region, also known as the upper convective zone (UCZ). The second zone, which contains a variation of saltwater densities increasing with depth, is the gradient zone or non-convective zone (NCZ). The last zone is the storage zone or lower convective zone (LCZ). In this region, the density is uniform and near saturation. The stability of a solar pond prototype was experimentally performed. The setup is composed of an acrylic tube with a hot plate emulating the solar thermal energy input. A study of various salinity gradients was performed based on the Stability Margin Number (SMN) criterion, which is used to satisfy the dynamic stability criterion. It was observed that erosion of the NCZ was accelerated due to mass diffusion and convection in the LCZ. It can be determined that for this prototype the density of the NCZ is greatly affected as the SMN reaches 1.5. (C) 2012 Elsevier Ltd. All rights reserved.

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