The current presents looks at exhaust gases' potential to recover low-grade waste-heat energy from internal combustion engines (ICEs). A Prolonged Fin Counter Flow Heat Exchange (PFCHE) double tube was planned, analyzed, and supplied with water as working fluids to achieve this objective. The structure of a double pipe, Protracted Fin Heat Exchanger (PFCHE), which performs a simulation study, is derived with exact measurements from one by Rajesh Ravi et al. (2020) research scholar, and then different shapes of the fin profiles were introduced in the designs suggested. The Fluent 17.0 is used for numerical analysis. The CFD results showing that the PFCHE with triangular fin outperforms the PFCHE with circular fin, and previous studies by Rajesh Ravi et al. (2020) showing that the PFCHE with triangular fin outperforms the PFCHE with circular fin. When compared to the PFCHE with circular fin, the PFCHE net heat transfer rate is 1.76 percent higher and 2.82 percent higher than Rajesh Ravi et al. (2020) report.
Waste heat recovery, Heat exchanger, protracted fin, CFD, Heat Transfer and Nusselt number
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