4.8 Review

A review of solar-driven organic Rankine cycles: Recent challenges and future outlook

Journal

RENEWABLE & SUSTAINABLE ENERGY REVIEWS
Volume 150, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rser.2021.111410

Keywords

Solar organic rankine cycle; Solar thermal collector; Concentrating solar power; Renewable energy systems; Polygeneration

Funding

  1. Tarbiat Modares University [IG/39705]
  2. Department for International Development (DFID) through the Royal Society-DFID Africa Capacity Building Initiative
  3. UK Engineering and Physical Sciences Research Council (ESPRC) [EP/P004709/1, EP/R045518/1, EP/S032622/1]

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The organic Rankine cycle is an effective technology for power generation under high temperatures, and using solar irradiation as a driving force is considered promising. Various solar thermal technologies have been studied, focusing on the sustainability and limitations of the systems.
The organic Rankine cycle (ORC) is an effective technology for power generation from temperatures of up to 400 degrees C and for capacities of up to 10 MWel. The use of solar irradiation for driving an ORC is a promising renewable energy-based technology due to the high compatibility between the operating temperatures of solar thermal collector technologies and the temperature needs of the cycle. The objective of this review paper is to present and discuss the operation principles of solar-ORC technology and the wide range of solar-ORC systems that have been studied in the literature. Various solar thermal technologies that can drive the ORC are investigated, such as the flat plate collector, evacuated tube collector, compound parabolic collector, parabolic trough collector, linear Fresnel reflectors, dish concentrators and solar towers. Both simulation studies and experimental investigations are included in the study. Hybrid systems and different thermal storage techniques are also examined in detail. Moreover, systems with ORC which produce many useful outputs such as cooling, heating and fresh water are studied because they present high sustainability indexes. The limitations of the technology are also highlighted, along with critical suggestions aimed at steering future research in this field. The final conclusions indicate that the development of trigeneration and polygeneration systems with ORC sub-systems is a promising avenue, not only for the future development of solar-ORC technology but also for the development of renewable and sustainable energy systems in a broader context.

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