Performance evaluation of a multi‐functional solar thermal system tested under hot arid climate

Abstract A stainless steel–based multi‐functional integrated solar device capable of simultaneous drying, cooking, and water heating was designed, fabricated, and experimentally evaluated under hot arid climatic conditions of Rajasthan (26.24° N 73.01° E), India. The use of stainless steel effectively overcomes corrosion and leakage issues associated with conventional galvanized iron systems, thereby enhancing durability, structural integrity, and long‐term operational reliability. The system incorporates a trapezoidal water storage tank beneath the drying cabinet, which improves heat transfer and promotes natural convection, resulting in better temperature uniformity. Experiments indicated that the system achieved a maximum temperature of 120°C under no‐load conditions, while maintaining temperatures up to 75°C during drying and approximately 105°C during cooking operations. The highest recorded temperature in the water heating subsystem was 56°C, which was obtained through effective thermal storage. The drying cabinet reduced the weight of fenugreek leaves from 750 to 85 g which gave around 88.7% moisture removal in the drying experiments. The best model found for fenugreek leaves drying was the Midilli model with a good coefficient of determination value ( R 2 = 0.995). Economic feasibility analysis was also carried out which resulted in a benefit–cost ratio of 2.03 and payback period of 5.09 years. Including carbon credit monetization, these indicators improved considerably to 2.53, ₹ 29,482, 34.7%, and 3.55 years, respectively. The developed system shows good thermal efficiency and economic feasibility and has potential applications for decentralized sustainable energy systems.

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Publication Details

Journal
Environmental Progress & Sustainable Energy
Published
2026-09-22
DOI
https://doi.org/10.1002/ep.70677
Primary Topic
Solar Thermal and Photovoltaic Systems
Type
article
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Performance evaluation of a multi‐functional solar thermal system tested under hot arid climate

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Performance evaluation of a multi‐functional solar thermal system tested under hot arid climate

H. L. Kushwaha, Surendra Poonia, P.C. Pande, Prem Veer Gautam, Mahesh Kumar, Shimpy Shimpy, Digvijay Singh, Hitesh Bijarniya, Anil Kumar Singh
article en

Abstract

Abstract A stainless steel–based multi‐functional integrated solar device capable of simultaneous drying, cooking, and water heating was designed, fabricated, and experimentally evaluated under hot arid climatic conditions of Rajasthan (26.24° N 73.01° E), India. The use of stainless steel effectively overcomes corrosion and leakage issues associated with conventional galvanized iron systems, thereby enhancing durability, structural integrity, and long‐term operational reliability. The system incorporates a trapezoidal water storage tank beneath the drying cabinet, which improves heat transfer and promotes natural convection, resulting in better temperature uniformity. Experiments indicated that the system achieved a maximum temperature of 120°C under no‐load conditions, while maintaining temperatures up to 75°C during drying and approximately 105°C during cooking operations. The highest recorded temperature in the water heating subsystem was 56°C, which was obtained through effective thermal storage. The drying cabinet reduced the weight of fenugreek leaves from 750 to 85 g which gave around 88.7% moisture removal in the drying experiments. The best model found for fenugreek leaves drying was the Midilli model with a good coefficient of determination value ( R 2 = 0.995). Economic feasibility analysis was also carried out which resulted in a benefit–cost ratio of 2.03 and payback period of 5.09 years. Including carbon credit monetization, these indicators improved considerably to 2.53, ₹ 29,482, 34.7%, and 3.55 years, respectively. The developed system shows good thermal efficiency and economic feasibility and has potential applications for decentralized sustainable energy systems.

Environmental Progress & Sustainable Energy
Central Arid Zone Research Institute (IN), Guru Jambheshwar University of Science and Technology (IN), KR Mangalam University (IN)
Openalex Percentile: Top 29%
Solar Thermal and Photovoltaic Systems
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