THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY

Volume: 1 Number: 7 July 1, 2015
  • Jasjeevan Singh
EN

THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY

Abstract

An experimental investigation has been carried out for a range of system and operating parameters in order to analyze effect of artificial roughness on heat transfer and friction in solar air heater duct having triangular protrusions as roughness geometry. An increase in heat transfer and friction loss has been observed in solar for duct having roughened absorber plate. Experimental data have been used to develop Nusselt number and friction factor correlations as function of system and operating parameters for predicting performance of the system having investigated type of roughness geometry.

Keywords

References

  1. Aharwal, K.R., Gandhi, B.K. and Saini, J.S. (2008), “Experimental Investigation on Heat Transfer Enhancement Due to a Gap in an Inclined Continuous Rib Arrangement in a Rectangular Duct of Solar Air Heater”, Renewable Energy, vol. 33, 585-596.
  2. ASHRAE Standard (1977), “Methods of testing to determine the thermal performance of collectors”, American Society of Heating, Refrigerating and Air conditioning Engineers Inc., Atlanta, GA, 93-77.
  3. Bhagoria, J.L., Saini, J.S. and Solanki, S.C. (2002), “Heat Transfer Coefficient and Friction Factor Correlations for Rectangular Solar Air Heater Duct having Transverse Wedge Shaped Rib Roughness on the Absorber Plate”, Renewable Energy, vol. 25, 341- 369.
  4. Bhushan, B. and Singh, R. (2010), “A Review on Methodology of Artificial Roughness Used in Duct of Solar Air Heaters”, Solar Energy, vol. 35, 202-212.
  5. Bhushan, B. and Singh, R. (2011), “Nusselt Number and Friction Factor Correlations for Solar Air Heater Duct Having Artificially Roughened Absorber Plate”, Solar energy, vol. 85, 1109-1118.
  6. Chaube, A., Sahoo, P.K. and Solanki, S.C. (2006), “Analysis of Heat Transfer Augmentation and Flow Characteristics due to Rib Roughness over Absorber Plate of a Solar Heater”, Renewable Energy, vol. 31, 317-331.
  7. Duffie, J. A. and Beckman, W.A. (1991), “Solar Engineering of Thermal Processes”, John Wiley & Sons Inc., New York.
  8. Frank, K. and Mark, S.B. (2001), “Principles of Heat Transfer”,Thomson Learning Inc.

Details

Primary Language

English

Subjects

-

Journal Section

-

Authors

Jasjeevan Singh This is me

Publication Date

July 1, 2015

Submission Date

October 24, 2015

Acceptance Date

-

Published in Issue

Year 2015 Volume: 1 Number: 7

APA
Singh, J. (2015). THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY. Journal of Thermal Engineering, 1(7), 607-620. https://doi.org/10.18186/jte.01332
AMA
1.Singh J. THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY. Journal of Thermal Engineering. 2015;1(7):607-620. doi:10.18186/jte.01332
Chicago
Singh, Jasjeevan. 2015. “THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY”. Journal of Thermal Engineering 1 (7): 607-20. https://doi.org/10.18186/jte.01332.
EndNote
Singh J (July 1, 2015) THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY. Journal of Thermal Engineering 1 7 607–620.
IEEE
[1]J. Singh, “THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY”, Journal of Thermal Engineering, vol. 1, no. 7, pp. 607–620, July 2015, doi: 10.18186/jte.01332.
ISNAD
Singh, Jasjeevan. “THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY”. Journal of Thermal Engineering 1/7 (July 1, 2015): 607-620. https://doi.org/10.18186/jte.01332.
JAMA
1.Singh J. THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY. Journal of Thermal Engineering. 2015;1:607–620.
MLA
Singh, Jasjeevan. “THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY”. Journal of Thermal Engineering, vol. 1, no. 7, July 2015, pp. 607-20, doi:10.18186/jte.01332.
Vancouver
1.Jasjeevan Singh. THERMO HYDRAULIC PERFORMANCE OF SOLAR AIR DUCT HAVING TRIANGULAR PROTRUSIONS AS ROUGHNESS GEOMETRY. Journal of Thermal Engineering. 2015 Jul. 1;1(7):607-20. doi:10.18186/jte.01332

Cited By

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering