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Continuous Renewable Energy Generation b

Dr. Ibrahim Patel, S A Goudadi

2026ensolar energysolar thermalmolten saltthermal storagepower towerheliostats

Abstract

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The world is witnessing a shift from conventional cooking methods to more reliable solar cooking systems, which are gaining commercial popularity. This study focuses on heat energy storage for power generation using a novel approach involving molten salt for thermal energy storage in concentrating solar cooking systems. The system employs large, flat, sun-tracking mirrors known as troughs that concentrate sunlight onto a receiver positioned atop a tall tower. Some power towers utilize water/steam as the heat-transfer fluid, while others are innovating with molten nitrate salt due to its superior heat transfer and energy storage properties. The technology involves numerous large heliostats to focus sunlight on the tower's receiver, producing temperatures ranging from 550°C to 650°C. This thermal energy can then be harnessed through molten salt for later use. The high-temperature heated water converts to superheated steam, which drives a turbine-generator, thereby converting thermal energy into electricity. This research elucidates the efficiency and applicability of molten salt in renewable energy generation, thereby contributing to the advancement of non-pollutant power technologies.

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Cite This Work

@article{3931c8c2-541d-4be8-b3e2-9caf69fd8b85,
  title={Continuous Renewable Energy Generation b},
  author={Dr. Ibrahim Patel and S A Goudadi},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Continuous Renewable Energy Generation b
AU  - Dr. Ibrahim Patel
AU  - S A Goudadi
PY  - 2026
LA  - en
ER  -

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