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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 32, 2019 - Issue 2
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Articles

Development of new correlations for heat transfer and friction loss of solid ring with combined square wing twisted tape inserts heat exchanger tube

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Pages 179-200 | Received 11 Nov 2017, Accepted 23 Jul 2018, Published online: 03 Dec 2018
 

ABSTRACT

An experimental analysis has been carried out for heat transfer and turbulent flow in a heat exchanger circular tube with solid ring with combined square wing twisted tape (TT) inserts. Experimentations are performed varying the solid ring with combined square wing TT insert parameters, such as changing the number of TT inserts (NTT) from 1.0 to 4.0, ring pitch ratio (dR/DT) from 0.5 to 2.0, wing pitch ratio (PW/WT) from 2.0 to 3.5, wing depth ratio (Wd/WT) from 0.083 to 0.333, ring diameter ratio (diR/dOR) from 0.831 to 0.932, and Reynolds number Re in the range of 3,000–21,000. The experimental results show that the heat transfer is increased around 5.66 times more than the plane circular tube. The thermal hydrodynamic performance is evaluated for the optimum range of solid ring with combined square wing TT insert parameters. Statistical correlations are developed and a deviation of correlation data from the experimental data of Nusselt number and friction factor is about ± 9% and ± 6%, respectively. The correlation is helpful in prediction of the thermal performance for turbulent flow through a circular tube with solid ring with combined square wing twisted tape inserts.

Nomenclature

A0=

Area of orifice plate, m2

Cp=

Specific heat capacity of air, J/kgK

DT=

Diameter of round pipe, m

dR=

Distance between rings, m

diR=

Internal diameter of rings, m

doR=

Outside diameter of rings, m

diR/dOR=

Ring ratio

dR/DT=

Ring pitch ratio

dTT/WTT=

Depth ratio

fTT=

Flow friction

HTT=

Head difference, m

HET=

Heat exchanger tube

KTT=

Fluid thermal conductivity, W/m. K

L=

Round pipe length, m

M=

Mass stream rate of air, kg/s

NTT=

Number of twisted tapes

NuTT=

Nusselt number of solid ring with square wing inserts

ΔP=

Pressure drop, Pa

PW=

Pitch between wings, m

PW/WT=

Wing pitch ratio

qTT=

Heat flux, W

Qu=

Heat gain, W

Re=

Reynolds number

RTT=

Rayleigh number

Ti=

Fluid inlet temperature, K

Tm=

Mean temperature, K

To=

Fluid outlet temperature, K

TT=

Twisted tape

TTT=

Typical twisted tape

TTT=

Total wall temperature, K

TL/WT=

Twist ratio

VTT=

Airflow velocity, m/s

Wd=

Wings’ depth, m

WT=

Width of tape, m

Wd/WT=

Wing depth ratio

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