A recent review on waste heat recovery methodologies and applications: Comprehensive review, critical analysis and potential recommendations
Современный обзор методов и применений рекуперации бросового тепла: комплексный обзор, критический анализ и потенциальные рекомендации
2022-01-01
SCID: 54.1/s5v5gdkz
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Rankine cycleheat exchangershybrid heat recovery systemsthermoelectric generatorswaste heat recovery
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Abstract (AI)
Due to global warming and environmental issues in recent times, the world's concern is oriented nowadays toward discovering new renewable energy sources and energy management methods. Particularly, researchers are emphasizing on heat recovery technologies and applications in both residential and industrial sectors. While there are plenty of review papers in the literature on the subject matter, there is always a necessity to update the literature with the new advancements in the field. In this context, the purpose of this paper is to present a recent and complete systematic comprehensive review along with critical analysis and potential recommendations related to waste heat recovery (WHR) methodologies and applications. In methodologies, heat exchangers, Rankine cycle and thermoelectric generators are studied. Moreover, applications of WHR are discussed in automotive, and in both residential and industrial zones. Studies show that the optimization of heat recovery systems lead to significant magnitudes of energy savings. On the other hand, hybrid heat recovery systems prove to be the most trending research subject nowadays. For future work, the negative effect of backpressure should be taken into consideration when recovering energy from exhaust gases of engines and power generators, and more importance should be given to hybrid systems.
Key Findings
1
Future designs should account for exhaust-gas backpressure effects and place greater emphasis on hybrid recovery systems.
2
Hybrid heat recovery systems are identified as the most prominent current research direction.
3
It examines heat exchangers, Rankine cycles, and thermoelectric generators as major waste heat recovery methodologies.
4
Optimizing waste heat recovery systems can produce significant energy savings, according to the reviewed studies.
5
The paper provides an updated systematic review and critical analysis of waste heat recovery methodologies and applications across residential, automotive, and industrial sectors.
Research Object
waste heat recovery methodologies and applications in residential, industrial, and automotive sectors
Research Subject
advancements, optimization, critical performance factors, and hybrid configurations of waste heat recovery systems
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2022-01-01
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