Theoretical investigation of the effect of fouling on the performance of a tube and plate fin heat exchanger.
Author(s) : BARROW H., SHERWIN K.
Type of article: Article
Summary
By matching the theoretical pressure loss of a finned-tube heat exchanger with the pressure rise over a fan through an idealized fan characteristic, the velocities and flow rates are determined for different amounts of fouling on the surfaces. Using a typical correlation for the fin-side convective heat transfer coefficient, the variation of the coefficient with fouling is predicted. The results of the calculations show that as the blockage of the flow through fouling progresses, the heat transfer coefficient increases above that in the clean condition, reaches a maximum value, and then finally decreases in value. Variations of up to 11% have been predicted for the particular geometry considered in the study.
Details
- Original title: Theoretical investigation of the effect of fouling on the performance of a tube and plate fin heat exchanger.
- Record ID : 1994-2856
- Languages: English
- Source: Heat Recov. Syst. CHP - vol. 14 - n. 1
- Publication date: 1994/01
Links
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Indexing
- Themes: Heat transfer
- Keywords: Heat transfer coefficient; Fin; Calculation; Tube; Heat transfer; Fouling; Heat exchanger
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MINIMUM MASS CONVECTIVE FINS WITH VARIABLE HEAT...
- Author(s) : RAZELOS P., IMRE K.
- Date : 1983
- Languages : English
- Source: J. Franklin Inst. - vol. 315 - n. 4
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TRANSIENT RESPONSE OF A COMPOSITE STRAIGHT FIN.
- Author(s) : CHU H. S., WENG C. I., CHEN C. K.
- Date : 1983/05
- Languages : English
- Source: J. Heat Transf. - vol. 105 - n. 2
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HEAT TRANSFER, ON THE AIR SIDE, OF FINNED BATTE...
- Author(s) : FORNASIERI E., CANTON P.
- Date : 1983/09
- Languages : Italian
- Source: Cond. Aria - vol. 27 - n. 9
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FOULING OF AUGMENTED HEAT TRANSFER TUBES.
- Author(s) : WATKINSON A. P.
- Date : 1990
- Languages : English
- Source: Heat Transf. Eng. - vol. 11 - n. 3
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Estimation of heat-transfer characteristics on ...
- Author(s) : CHEN H. T., HSU W. L.
- Date : 2008/04
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 51 - n. 7-8
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