Computational Fluid Dynamics Study on Exhaust Heat Recovery of Various Spiral Tube Heat Exchangers

Author:

Guo Pengyan1,Cheng Wen1,Chong Perk Lin2,Xia Bin3,Yang Aolei1,Zeng Xinhao1

Affiliation:

1. North China University of Water Resources and Electric Power School of Mechanical Engineering, , Zhengzhou 450045, Henan Province , China

2. School of Computing, Engineering & Digital Technologies, Department of Engineering, Teesside University , Middlesbrough, TS1 3BX , UK

3. Henan Agricultural University College of Information and Management Science, , Zhengzhou 450002, Henan Province , China

Abstract

Abstract With the continuous development of internal combustion engine technology, the thermal efficiency of traditional energy vehicles has been difficult to improve, and the heat loss caused by high-temperature exhaust emissions is an important reason for the low thermal efficiency. To utilize the exhaust heat, the aim is to develop various spiral tube heat exchanger designs, namely, constant curvature heat exchanger with baffle and variable curvature heat exchanger. The design has been evaluated by referring to the performance evaluation coefficient (PEC); furthermore, the convection coefficient h has been taken into consideration as well. The idea is to perform numerical studies via computational fluid dynamics package and evaluate the performance of the spiral tube heat exchanger designs. PEC is the relationship between the heat exchange intensity of the heat exchanger and the flow resistance of the working fluid. The results show that the PEC evaluation index of the heat exchanger is the best when the spiral diameter of the heat exchange tube is 120 mm, and with the increase of the tube diameter and pitch, the overall performance of the heat exchanger decreases. The research on heat transfer enhancement of heat exchangers was carried out, and various spiral tube heat exchangers were designed based on the structure of spiral heat exchange tubes. The variable curvature heat exchanger has better overall performance than the baffle constant curvature heat exchanger. Compared to the single-variable curvature and the double-variable curvature, the maximum PEC difference of them does not exceed 0.01, and the double-variable curvature is more sufficient in volume utilization, and it can save about 13% volume. Considering the use requirements of the actual vehicle waste heat recovery system, the double-variable curvature spiral tube heat exchanger is more suitable for practical engineering applications than the single-variable curvature spiral tube heat exchanger.

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference21 articles.

1. Wang, Q. , 2011, “Research on Economical Driving Mode of Light Commercial Vehicles,” MSc. thesis, Chang’an University, Xi'an, China (in Chinese).

2. Comparison of Selected Shell and Tube Heat Exchangers With Segmental and Helical Baffles;Kunwer;Therm. Sci. Eng. Prog.,2020

3. A Review on the Two-Phase Heat Transfer Characteristics in Helically Coiled Tube Heat Exchangers;Fsadni;Int. J. Heat Mass Transfer,2016

4. Design and Experimental Study of Spiral Tube Air-Air Heat Exchanger;Liu;J. Propul. Technol.,2021

5. Numerical Study on the Shell-Side Flow and Heat Transfer of Superheated Vapor Flow in Spiral Wound Heat Exchanger Under Rolling Working Conditions;Ren;Int. J. Heat Mass Transfer,2018

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