The thermo-fluid and exergy analysis of a shell and twisted helical tube heat exchanger

M Mahmoud Abdelmagied

Abstract

Abstract The present study experimentally investigates a shell and twisted helical tube heat exchanger ( STHTHX ), which employs a twisted helical tube configuration to enhance thermofluid performance under turbulent flow conditions. The effects of the twisted helical coil diameter ( D ), inner Reynolds number ( Re i ), and shell Reynolds number ( Re sh ) on the thermal performance ( η ) and exergy characteristics of the STHTHX are examined and compared with those of a conventional shell and smooth helical tube heat exchanger ( SSHTHX ). The twisted helical tube design is expected to intensify the swirl motion of the fluid and induce additional flow disturbances and improve the thermofluid characteristics. Three test specimens were fabricated and tested with twisted coil diameters ( D ) of 0.095, 0.125, and 0.165 m. The experiments were carried out under counter-flow conditions with inner mass flow rates ( ṁ i ) ranging from 0.033 to 0.181 kg/s, corresponding to Reynolds numbers ( Re i ) from 6.1 × 10 3 to 4.4 × 10 4 in the twisted helical coil, and shell-side mass flow rates ( ṁ sh ) between 0.067 and 0.175 kg/s. This study aims to fill the research gap regarding the thermofluid characteristics and exergy analysis of the STHTHX and to provide experimental guidance for its design and optimization. The results reveal that the STHTHX demonstrated superior thermofluid performance compared to SSHTHX . Reducing the twisted coil diameter from 0.165 to 0.095 m increasing $$\overline{{Nu_{i} }}$$ , and f i by 47.9, and 38.77%, respectively. The STHTHX achieved a maximum η of 2.07 at D  = 0.095 m. New correlations are proposed to predict $$\overline{{Nu_{i} }}$$ and f i .

Article Details

Volume / Issue Vol. 16, Issue 1
Published June 26, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (1)

M

Mahmoud Abdelmagied