Heat transfer enhancement in double-pipe heat exchanger: A review

Author:

Kumar Singh Shailendra,Kumar Chauhan Manish,Kumar Shukla Anoop

Abstract

Abstract Due to the wide need for heat transfer improvement in heat exchangers, it always stands a challenging field to grow effective and efficient heat transfer equipment with qualities of cost-effectiveness, reduced size, and maximum usage in a wide variety of applications under several operating conditions. The heat exchangers are mostly used to fulfil the requirements of high heat dissipation in industries. In this review article, a focused analysis is done on heat transfer improvement in double-pipe heat exchangers using different geometries in the flow, and heat transfer characteristics are also taken into consideration for the analysis. Many researchers have already analyzed a double-pipe heat exchanger as an experimental unit and with the help of simulation. Several past studies are examined and concluded to build an effective system using a heat exchanger. The significance of Prandtl number, Reynolds number, Nusselt number, and pressure drop coefficient quantities are shown in the studies. A close concern on nanoparticles in inside pipe is also studied for heat transfer improvisation using a double-pipe heat exchanger. New outcomes are perfectly verified and assist in the investigation of various other studies.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference59 articles.

1. Predicting dynamics of concentric pipe heat exchangers;Mozley;Industrial and Engineering Chemistry,1956

2. Dynamic characteristics of double-pipe heat exchangers;Cohen;Industrial & Engineering Chemistry,1956

3. An Analytical Solution for a Double Pipe Heat Exchanger;Sullivan;Industrial & Engineering Chemistry,1961

4. Analytical solution for a double-pipe heat exchanger with the non-adiabatic condition at the outer surface;Prasad;International communications in heat and mass transfer,1987

5. Thermal analysis of the performances of helical- type, roughened, double-pipe heat exchangers;Hsieh;Applied Energy,1987

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