Experimental and 3-D Numerical Analysis of the Thermal-Hydraulic Characteristics of Elliptic Finned-Tube Heat Exchangers

Jiin-Yuh Jang, JYH-YAU YANG

Heat Transfer Engineering · 1998 · 119 citations · 19 references

Concepts

TL;DR

Fluid flow and heat transfer over a 4‑row elliptic finned‑tube heat exchanger with an axis ratio of 2.83:1 were studied experimentally and numerically. The study examined three finned‑tube configurations—two elliptic (staggered and inline) and one circular staggered—under dry and wet conditions at inlet velocities of 2–7 m/s, and performed 3‑D laminar numerical simulations for dry coils. Experimentally, the elliptic finned tube achieved only 35–50 % of the heat‑transfer coefficient of a comparable circular tube but required only 25–30 % of its pressure drop, and the 3‑D numerical results for dry coils agreed with these measurements.

Abstract

Abstract Fluid flow and heat transfer over a 4-row. elliptic, finned-tube heat exchanger having an axis ratio of 2.83:1 are studied experimentally and numerically. Three types of finned-tube configurations have been investigated under dry and wet conditions for different values of inlet frontal velocity ranging from 2 to 7 m/s: two elliptic finned tubes with staggered and in-line arrangements and one circular finned tube with staggered arrangement. The experimental results indicate that the average heat transfer coefficient of an elliptic finned lube is 35–50% of the corresponding circular finned tube having the same tube perimeter, while the pressure drop for an elliptic finned-tube bank is only 25–30% of the circular finned-tube bank configuration. Three-dimensional numerical results of a laminar model for dry coils are also presented and are compared with the experimental data.

References

19