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Use of Organic and Copper-Based Nanoparticles on the Turbulator Installment in a Shell Tube Heat Exchanger: A CFD-Based Simulation Approach by Using Nanofluids

Supat ChupraditDepartment of Occupational Therapy, Faculty of Associated Medical Sciences, Chiang Mai University, Chiang Mai 50200, ThailandAbduladheem Turki JalilCollege of Technical Engineering, The Islamic University, Najaf, IraqYulianna EninaDepartment of Propaedeutics of Dental Diseases, Sechenov First Moscow State Medical University, Moscow, RussiaDmitriy A. NeganovDepartment of Legal Disciplines, Kazan Federal University, RussiaMuataz S. AlhassanDivision of Advanced Nanomaterial Technologies, Scientific Research Center, Al-Ayen University, Thi-Qar, IraqA. SurendarDepartment of Pharmacology, Saveetha Dental College and Hospital, Saveetha Institute of Medical and Technical Sciences, Chennai, IndiaAfshin DavarpanahYoung Elite Researchers, Science and Research Branch, Islamic Azad University, Tehran, Iran
2021en
ABI

Аннотация

Heat exchangers with unique specifications are administered in the food industry, which has expanded its sphere of influence even to the automotive industry due to this feature. It has been used for convenient maintenance and much easier cleaning. In this study, two different nanomaterials, such as Cu-based nanoparticles and an organic nanoparticle of Chloro-difluoromethane (R22), were used as nanofluids to enhance the efficiency of heat transfer in a turbulator. It is simulated by computational fluid dynamics software (Ansys-Fluent) to evaluate the Nusselt number versus Reynolds number for different variables. These variables are diameter ratio, torsion pitch ratio, and two different nanofluids through the shell tube heat exchanger. It is evident that for higher diameter ratios, the Nusselt number has been increased significantly in higher Reynolds numbers as the heat transfer has been increased in turbulators. For organic fluids (R22), the Nusselt number has been increased significantly in higher Reynolds numbers as the heat transfer has been increased in turbulators due to the proximity of heat transfer charges. At higher torsion pitch ratios, the Nusselt number has been increased significantly in the higher Reynolds number as the heat transfer has been increased in turbulators, especially in higher velocities and pipe turbulence torsions.

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