166
Views
1
CrossRef citations to date
0
Altmetric
feature articles

Performance Optimization of Co-current Gas-to-Gas Micro Heat Exchanger Considering Radiation

&

REFERENCES

  • Rostami, A.A., Majumdar, A.S., and Samiei, N., Flow and Heat Transfer for Gas Flowing in Microchannels: A Review, Heat and Mass Transfer, vol. 38, issue 4–5, pp. 359–367, 2002.
  • Schubert, K., Brandner, J., Fichtner, M., Linder, G., Schygulla, U., and Wenka, A., Microstructure Devices for Applications in Thermal and Chemical Process Engineering, Microscale Thermophysical Engineering, vol. 5, pp. 17–39, 2001.
  • Mahulikar, S.P., and Herwig, H., Theoretical Investigation of Scaling Effects From Macro-to-Microscale Convection Due to Variations in Incompressible Fluid Properties, Applied Physics Letters, vol. 86, issue 1, pp. 014105-1–014105-3, 2005.
  • Gulhane, N.P., and Mahulikar, S.P., Variation in Gas Properties in Laminar Micro Convection With Entrance Effect, International Journal of Heat and Mass Transfer, vol. 52, issue 7–8, pp. 1980–1990, 2009
  • Gulhane, N.P., and Mahulikar, S.P., Numerical Study of Microconvective Water-Flow Characteristics With Variations in Properties, Nanoscale and Microscale Thermophysical Engineering, vol. 15, issue1, pp. 28–47, 2011.
  • Mahulikar, S.P., Herwig, H., Hausner, O., and Kock, F., Laminar Gas Micro-Flow Convection Characteristics Due to Steep Density Gradients, Europhysics Letters, vol. 68, no. 6, pp. 811–817, 2004.
  • Miwa, J., Asako, Y., Hong, C., and Faghri, M., Performance of Gas-to-Gas Micro-Heat Exchangers, Journal of Heat Transfer, vol. 131, issue 5: 051801-1–051801-9, 2009.
  • Al-Nimr, M.A., Maqableh, M., Khadrawi, A.F., and Ammourah, S.A., Fully Developed Thermal Behavior for Micro Flow Heat Exchanger, International Communications in Heat and Mass Transfer, vol. 36, pp. 385–390, 2009.
  • Bier, W., Keller, W., Linder, G., Seidel, D., Schubert, K., and Martin, H., Gas to gas heat transfer in micro heat exchangers, Chemical Engineering Processing, vol. 32, issue 1, pp. 33–43, 1993.
  • Stief, T., Langer, O.U., and Schubert, K., Numerical Investigations of Optimal Heat Conductivity in Micro Heat Exchangers, Chemical Engineering and Technology, vol. 22, issue 4, pp. 297–303, 1999.
  • Schmitt, C., Agar, D.W., Platte, F., Buijssen, S., Pawlowski, B., and Duisberg, M., Ceramic Plate Heat Exchanger for Heterogeneous Gas-Phase Reactions, Chemical Engineering and Technology, vol. 28, issue 3, pp. 337–343, 2005.
  • Ponyavin, V., Chen, Y.T., Hechanova, A.E., and Wilson, M., Numerical Modeling of Compact High Temperature Heat Exchanger and Chemical Decomposer for Hydrogen Production, Heat and Mass Transfer, vol. 44, issue 11, pp. 1379–1389, 2008.
  • Mei, F.H., Parida, P.R., Jiang, J., Meng, W.J., and Ekkad, S.V., Fabrication, Assembly, and Testing of Cu- and Al-Based Microchannel Heat Exchangers, Journal of Microelectromechanical Systems, vol. 17, issue 4, pp. 869–881, 2008.
  • Foli, K., Okabe, T., Olhofer, M., Jin, Y., and Sendhoff, B., Optimization of Micro Heat Exchanger: CFD, Analytical Approach and Multi-Objective Evolutionary Algorithms, International Journal of Heat and Mass Transfer, vol. 49, issue 5-6, pp. 1090–1099, 2006.
  • Mahulikar, S.P., Herwig, H., Zhou J.W., and Sodhani Y.M., Surface Radiative Transfer in Gas-to-Gas Cocurrent Micro Heat Exchanger, American Institute of Chemical Engineers, vol. 57, issue 1, pp. 40–50, 2010.
  • Rachkovskij, D.A., Kussul, E.M., and Talayev, S.A., Heat Exchange in Short Microtubes and Micro Heat Exchangers With Low Hydraulic Losses, Microsystem Technology, vol. 4, issue 3, pp. 151–158, 1998.
  • Anderson, J.D. , Jr., Hypersonic and High Temperature Gas Dynamics, McGraw-Hill: Singapore, pp. 605–609, 1989.
  • Howell, J.R., A Catalog of Radiation Heat Transfer Configuration Factors, 2nd ed., McGraw-Hill: New York, NY, 1982: . web-format - http://www.me.utexas.edu/∼howell/.
  • Kakaç, S., and Liu, H., Heat Exchangers: Selection, Rating and Thermal Design, 2nd ed., CRC Press: Boca Raton, FL, pp. 45–57, 2002.
  • Gad-el-Hak, M., The Fluid Mechanics of Microdevices—The Freeman Scholar Lecture, Journal of Fluids Engineering, vol. 121, issue 1, pp. 5–33, 1999.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.