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Photovoltaic-thermal systems applications as dryer for agriculture sector: A review

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DOI: 10.1016/j.csite.2023.103047

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Photovoltaic-thermal; Solar thermal; PV-T applications; Agriculture

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This paper reviews the literature on the use of photovoltaic thermal air collectors (PV-T) and integrated greenhouse drying systems for PV-T air collectors as a means to reduce fossil fuel consumption and mitigate global warming. Solar drying is an effective method to preserve crops for long-term use, especially in countries with limited electricity sources. The review highlights the superiority of PV-T air collectors over individual PV modules in terms of energy storage and drying parameter control. It provides valuable insights and data for the development and enhancement of thermal models for combined solar systems.
In this paper, the literature writing on the use of photovoltaic thermal air collectors (PV-T) and integrated greenhouse drying systems for PV-T air collectors as a mean to reduce fossil fuel consumption and reduce global warming is reviewed. Countries with limited electricity sources, solar drying is an effective way to preserve crops for long-term use. There has been evidence that PV-T air collectors are superior to individual PV modules for storing energy when it comes to controlling drying parameters. The review will offer valuable insights and data that can aid scientists and researchers in the creation and improvement of thermal models for combined solar systems. The review will present a detailed analysis of the current state of knowledge in the field of combined solar systems, including the latest advancements, trends, and challenges. It will also identify gaps in the existing research and suggest potential avenues for future investigation.

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