Energies (Aug 2024)

Analysis of Soot Deposition Effects on Exhaust Heat Exchanger for Waste Heat Recovery System

  • Tianyu Chen,
  • Hanqing Li,
  • Yuzeng Wu,
  • Jiaqi Che,
  • Mingming Fang,
  • Xupeng Li

DOI
https://doi.org/10.3390/en17174259
Journal volume & issue
Vol. 17, no. 17
p. 4259

Abstract

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This study investigates the thermal–hydraulic behavior and deposition characteristics of a shell and tube exhaust heat exchanger using a CFD-based predictive model of soot deposition. Firstly, considering the influences of thermophoretic, wall shear stress, and other deposition and removal mechanisms, a predictive model is developed for long-term performance of heat exchangers under soot deposition. Then, the variations in exhaust heat exchanger performance during a 4 h deposition period are simulated based on the model. Subsequently, the variation of deposition distribution and different deposition velocities are also evaluated. Finally, an analysis of the long-term performance of the exhaust heat exchanger under varying gas velocities and temperature gradients is conducted, revealing the performance variations under all engine-operating conditions. Results show that the deterioration in normalized relative j/f1/2 varies from 5.26% to 24.91% under different work conditions, and the exhaust heat exchanger with high gas velocity and low temperature gradient exhibits optimal long-term performance.

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