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Experimental Investigation of the Pressure Drop during Water Condensation inside Charge Air Coolers

Journal Article
2021-01-0202
ISSN: 2641-9645, e-ISSN: 2641-9645
Published April 06, 2021 by SAE International in United States
Experimental Investigation of the Pressure Drop during Water Condensation inside Charge Air Coolers
Sector:
Citation: Basler, I., Reister, H., Rossmann, R., and Weigand, B., "Experimental Investigation of the Pressure Drop during Water Condensation inside Charge Air Coolers," SAE Int. J. Adv. & Curr. Prac. in Mobility 3(5):2617-2626, 2021, https://doi.org/10.4271/2021-01-0202.
Language: English

References

  1. Kays , W.M. , and London , A.L. Compact Heat Exchangers 3rd New York McGraw-Hill 1998
  2. Tang , Y. The Condensation within a CAC - Thermodynamics Analysis SAE Technical Paper 2011-01-1168 2011 https://doi.org/10.4271/2011-01-1168
  3. Cash , R. , Lumsdaine , E. , Talekar , A. , and AbdulNour , B. An Experimental and Computational Investigation of Water Condensation inside the Tubes of an Automotive Compact Charge Air Cooler SAE Technical Paper 2016-01-0224 2016 https://doi.org/10.4271/2016-01-0224
  4. Murcela , T. 2017
  5. Shah , R. , and Sekulic , D. Fundamentals of Heat Exchanger Design John Wiley & Sons, Inc. July 25, 2003 https://doi.org/10.1002/9780470172605
  6. Collier , J.G. , and Thome , J. Convective Boiling and Condensation Oxford Engineering Science Series 38 3rd Oxford Clarendon Press 1994
  7. Lockhart , R.W. , and Martinelli , R.C. Proposed Correlation of Data for Isothermal Two-Phase, Two-Component Flow in Pipes Chem. Eng. Progr. 45 1 39 45 1949
  8. Chisholm , D. A Theoretical Basis for the Lockhart-Martinelli Correlation for Two-Phase Flow International Journal of Heat and Mass Transfer 10 12 1767 1778 1967
  9. Friedel , L. Improved Friction Pressure Drop Correlations for Horizontal and Vertical Two-Phase Pipe Flow European Two-Phase Flow Group Meeting Ispra, Italy E2 1979
  10. Chisholm , D. Pressure Gradients due to Friction During the Flow of Evaporating Two-Phase Mixtures in Smooth Tubes and Channels International Journal of Heat and Mass Transfer 16 2 347 358 1973
  11. Baroczy , C.J. A Systematic Correlation for Two-Phase Pressure Drop Atomics International Canoga Park, Calif., United States 1966
  12. Thome , J.R. and Kim , J. Boiling Using Enhanced Surfaces, Plate Heat Exchangers and Two-Phase Devices Encyclopedia of Two-Phase Heat Transfer and Flow 2 - Special Topics and Applications World Scientific 145 216 2016
  13. Huang , J. , Sheer , T. , and Bailey-McEwan , M. Heat Transfer and Pressure Drop in Plate Heat Exchanger Refrigerant Evaporators International Journal of Refrigeration 35 2 325 335 March 2012 https://doi.org/10.1016/j.ijrefrig.2011.11.002
  14. Eldeeb , R. , Aute , V. , and Radermacher , R. A Survey of Correlations for Heat Transfer and Pressure Drop for Evaporation and Condensation in Plate Heat Exchangers International Journal of Refrigeration 65 12 26 May 2016 https://doi.org/10.1016/j.ijrefrig.2015.11.013
  15. Amalfi , R.L. , Vakili-Farahani , F. , and Thome , J.R. Flow Boiling and Frictional Pressure Gradients in Plate Heat Exchangers. Part 2: Comparison of Literature Methods to Database and New Prediction Methods International Journal of Refrigeration 61 185 203 January 2016 https://doi.org/10.1016/j.ijrefrig.2015.07.009
  16. Dalkilic , A.S. , and Wongwises , S. Intensive Literature Review of Condensation inside Smooth and Enhanced Tubes International Journal of Heat and Mass Transfer 52 15-16 July 2009 3409 26 2009
  17. Basler , I. , Weigand , B. , Reister , H. , and Rossmann , R. A Simulation Method for the Calculation of Water Condensation inside Charge Air Coolers
  18. Mühl , T. Elektrische Messtechnik Springer Fachmedien Wiesbaden 2017 32 https://doi.org/10.1007/978-3-658-15720-3
  19. Davidson , T.A. A Simple and Accurate Method for Calculating Viscosity of Gaseous Mixtures United States N. p. 1993
  20. Lemmon , E.W. , Bell , I.H. , Huber , M.L. , and McLinden , M.O. NIST Standard Reference Database 23: Reference Fluid Thermodynamic and Transport Properties-REFPROP, Version 10.0 Gaithersburg National Institute of Standards and Technology, Standard Reference Data Program 2018

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