The realization of the vortex tower prototype was completed with the objective of developing a comprehensive analytical and experimental model to evaluate its performance. This model was intended to assess the performance and power output of the 1/5 scale prototype and to investigate the impact of various ambient conditions on its power output. To eliminate the influence of solar energy on the test bench's performance, several tests were conducted during non-sunny periods. The results indicated that a decrease in ambient temperature accelerates the ascending air, due to differences in flow density, which in turn enhances the equipment's output. Improving the performance of this prototype on a real scale will contribute to the advancement of energy production systems in the country.

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Design and Development of Low-Power Output Vortex Tower Model

  • A. Bouam,
  • A. L. Cheridi Deghal,
  • A. Dadda Khorsi,
  • A. Hadjam,
  • A. Dahia,
  • N. Koudiah,
  • K. Attari,
  • L. Bouam

摘要

The realization of the vortex tower prototype was completed with the objective of developing a comprehensive analytical and experimental model to evaluate its performance. This model was intended to assess the performance and power output of the 1/5 scale prototype and to investigate the impact of various ambient conditions on its power output. To eliminate the influence of solar energy on the test bench's performance, several tests were conducted during non-sunny periods. The results indicated that a decrease in ambient temperature accelerates the ascending air, due to differences in flow density, which in turn enhances the equipment's output. Improving the performance of this prototype on a real scale will contribute to the advancement of energy production systems in the country.