4.7 Review

Comprehensive review on exergy analysis of shell and tube heat exchangers

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Analysis of the performance optimisation parameters of shell and tube heat exchanger using CFD

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Summary: This paper presents the influence of performance optimization parameters on the heat transfer and temperature reduction of shell and tube heat exchangers, and discusses their effects on temperature distribution and heat transfer rate.

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Optimizing the hydrothermal performance of helically corrugated coiled tube heat exchangers using Taguchi's empirical method: energy and exergy analysis

Omid Heydari et al.

Summary: In this study, the hydrothermal performance of a shell and helically corrugated coiled tube heat exchanger was investigated considering exergy loss. Increasing the inlet fluid flow rate, corrugation depth, and number of rounds was found to enhance heat transfer and pressure drop, with the most effective parameter being the fluid flow rate on the coil side.

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Heat transfer of hybrid nanofluid in a shell and tube heat exchanger equipped with blade-shape turbulators

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Summary: The study investigated the forced convection heat transfer of Fe3O4/CNT/water hybrid nanofluid in a heat exchanger with blade-shape turbulators. The results showed that the highest performance features occurred under specific conditions, such as certain Reynolds number and volume concentrations of nanoparticles.

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Thermal Conductivity of Al2O3 and CeO2 Nanoparticles and Their Hybrid Based Water Nanofluids: An Experimental Study

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Experimental investigation of heat transfer and exergy loss in heat exchanger with air bubble injection technique

Gurpreet Singh Sokhal et al.

Summary: This study evaluated the thermal performance and exergy analysis of a shell-and-tube heat exchanger using a new technique of air bubble injection. The results showed that the performance of the heat exchanger increased with higher flow rates and fluid inlet temperatures, but also led to higher exergy losses proportional to the flow rate.

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A second law analysis on flow of a nanofluid in a shell-and-tube heat exchanger equipped with new unilateral ladder type helical baffles

Mehdi Bahiraei et al.

Summary: The irreversibility characteristics of a shell and tube heat exchanger fitted with the unilateral ladder type helical baffle were investigated in this study. It was found that the entropy production rates of both hot and cold fluids increased with the Reynolds number amplification, with the nanofluid containing platelet nanoparticles causing the maximum thermal entropy production. The minimum irreversibility for the whole STHE occurred for the nanofluid containing oblate spheroid particles, which is recommended for use in this STHE.

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Different tube bundles effect on the shell-and-tube heat exchanger performance

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Summary: Numerical investigation on laboratory-scale segmental baffles shell-and-tube heat exchanger reveals that twisted oval tubes with segmental baffles can significantly reduce pressure drop and improve heat transfer compared to circular and elliptical tube bundles. The STHX with twisted oval tube bundles and segmental baffle exhibits the highest efficiency evaluation coefficient (EEC) value equal to 1.16 among all investigated models.

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Energy and exergy analysis of ferrofluid flow in a triple tube heat exchanger under the influence of an external magnetic field

Seyed Ehsan Hosseinizadeh et al.

Summary: A numerical study investigated the performance of a triple tube heat exchanger exposed to a uniform magnetic field, finding that swirling flows formed in ferrofluid zones under the magnetic field increased the heat transfer coefficient and slightly increased pumping power. Overall performance was generally improved by the magnetic field, especially when it influenced all flow zones, despite a decrease in second-law efficiency due to increased entropy generation. Additionally, nanoparticle concentration was found to enhance performance index and pumping power.

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Exergy analysis of Shell and helical coil heat exchanger and design optimization

Audai Hussein Al-Abbas et al.

Summary: The study focuses on experimental investigations and exergy analysis on a shell and helically coiled tube heat exchanger under free convection heat transfer. The results show that factors such as coil pitch, Dean number, hot water flow rates, and cold water flow rates have a significant impact on exergy efficiency and pressure drop under different operating conditions.

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Thermal analysis, pressure drop and exergy loss of energy efficient shell, and triple meshed helical coil tube heat exchanger

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Exergy analysis of a shell and tube heat exchanger using DETHE software

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Heat transfer analysis of a shell and tube heat exchanger operated with graphene nanofluids

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Effect of Al2O3/water nanofluid on performance of parallel flow heat exchangers An experimental approach

Dariush Mansoury et al.

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Advanced exergy analysis of heat exchanger network in a complex natural gas refinery

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Thermo ecological optimization of shell and tube heat exchangers using NSGA II

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Mahmood Chahartaghi et al.

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Wang KunYu et al.

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Heat transfer performance evaluation in circular tubes via internal repeated ribs with entropy and exergy analysis

Sayed Ahmed E. Sayed Ahmed et al.

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Analysis of Exergy and energy in shell and helically coiled finned tube heat exchangers and design optimization

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Numerical study on impact behavior of nanoparticle shapes on the performance improvement of shell and tube heat exchanger

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Investigation of exergy efficiency in shell and helically coiled tube heat exchangers

Ashkan Alimoradi

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Numerical study of heat transfer performance of nanofluids in a heat exchanger

Faroogh Garoosi et al.

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A comprehensive second law analysis for tube-in-tube helically coiled heat exchangers

Hamed Sadighi Dizaji et al.

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Application of firefly algorithm for design optimization of a shell and tube heat exchanger from economic point of view

Dillip Kumar Mohanty

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A review of the advancements made in helical baffles used in shell and tube heat exchangers

Usman Salahuddin et al.

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Entropy Generation Minimization of Shell and Tube Heat Exchanger with Porous Medium

M. Arivazhagan et al.

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Effect of nanoparticle shape on the heat transfer and thermodynamic performance of a shell and tube heat exchanger

M. M. Elias et al.

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Exergetic Optimization of Shell-and-Tube Heat Exchangers Using NSGA-II

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Heat transfer and entropy analysis of three different types of heat exchangers operated with nanofluids

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Design optimization of shell-and-tube heat exchanger using particle swarm optimization technique

V. K. Patel et al.

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Review of Improvements on Shell-and-Tube Heat Exchangers With Helical Baffles

Qiuwang Wang et al.

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Multi-Objective Optimization of Heat Exchanger Design by Entropy Generation Minimization

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An experimental investigation of heat transfer enhancement for a shell-and-tube heat exchanger

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Exergetic optimization of shell and tube heat exchangers using a genetic based algorithm

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