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February 5, 20260 citations

Performance Enhancement of Convective Heat Transfer in Double Pipe Heat Exchangers using Different Vortex Generators’ Configurations

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MHMouhammad El HassanARAbdullah Y. Al RajehNBNikolay Bukharin

Key Points

  • The research aims to investigate how different vortex generator configurations affect convective heat transfer in double-pipe heat exchangers.
  • Analyzed various configurations of vortex generators on the inner tube of double-pipe heat exchangers
  • Performed CFD simulations to evaluate heat transfer performance metrics
  • Examined the impact of vortex generators on heat transfer rates and effectiveness
  • Heat transfer enhancement increases with the number of vortex generator rows
  • For 16 rows, heat transfer coefficient rose by 7.61% and effectiveness by 7.14% in counter-flow configuration
  • Parallel flow configuration showed an 11.47% increase in heat transfer rate and a 9.98% improvement in effectiveness

Abstract

Double-pipe heat exchangers (DPHEs) are important devices used for efficient heat transfer between fluids, affecting system energy Performance. This study explores different configurations for the integration of vortex generators (VGs) into DPHEs to enhance the convective heat transfer. VGs create vortical structures that enhance mixing between the near wall and outer flows, thus improving the convective heat transfer mechanism. Different VG configurations (8, 12, and 16 rows on the inner tube of the DPHE) were analyzed using CFD simulations, focusing on key performance metrics like heat transfer rates, heat transfer coefficient, effectiveness, and pressure drop. Results showed that the heat transfer enhancement increases with the number of VGs rows, with a heat transfer coefficient rises by 7.61% and effectiveness by 7.14% with 16 VG rows, for the counter-flow DPHE configuration. The parallel flow DPHE showed significantly higher enhancements, with 11.47% increase in heat transfer rate and a 9.98% improvement in effectiveness. This research underscores the potential of VGs for enhancing heat transfer in industrial heat exchangers and provides a framework for future thermal system optimization.

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Cite This Study

Hassan et al. (2025) studied this question.

synapsesocial.com/papers/698433c8f1d9ada3c1fb13edhttps://doi.org/10.1051/e3sconf/202564702002/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Performance Enhancement of Convective Heat Transfer in Double Pipe Heat Exchangers using Different Vortex Generators’ Configurations2025
  2. 2Heat transfer mechanism of different vortex generators arrangements embedded in heat exchange tubes2024
  3. 3Multiobjective optimization of Vortex Generators for heat transfer enhancement in turbulent flows2024 · 8 citations
  4. 4Does the Interaction Between Fin Pitch and Vortex Generator Geometry Control the Overall Heat Exchanger Performance?2026
  5. 5Finite element method-based investigation of heat exchanger hydrodynamics: Effects of triangular vortex generator shape and size on flow characteristics2024 · 2 citations