NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS
Abstract & Details
Research Area
Mechanical Engineering
Keywords
Effectiveness
Temperature
Heat Transfer
Heat capacity
Reynolds Number
Nusselt Number
CFD.
Abstract
The Heat exchanger is a device which used to transfer heat from one fluid to another through a solid medium or interface. There is various type of heat exchanger available. In this paper shell and tube type heat exchanger is selected. Our objective was to change the cross section of tube to enhance the efficiency of the heat exchanger. An Interstitial Oscillating Flow in tubes is selected for the investigation. Design of new shell and tube heat exchanger is done using standard designing procedure and 3D modeling is done in Solidworks. Finite Element Analysis software ANSYS Workbench 18.0 is used to perform CFD analysis under a standard working condition to find performance parameter. We found that the Interstitial Oscillating Flow provides more effective heat exchange due to increase in the convective surface. The computational fluid dynamics (CFD) model equations are solved to predict the hydrodynamic and thermal behaviour of the exchanger. The geometry of the problem and meshing of it have been made in and the models have been solved by ANSYS Workbench. CFD models or packages provides the contours and data which predict the performance of the heat exchanger design and are effectively used because it has ability to obtain optimal solutions and has work in difficult and hazardous conditions.
License
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Gaurav Anand | SCOPE College of Engineering, Bhopal |
| 2 | Surjeet Singh Rajpoot | SCOPE College of Engineering, Bhopal |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Anand, Gaurav & Rajpoot, Surjeet Singh (2021). NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS. International Journal of Advance Research and Innovative Ideas In Education, 7(1), 1436-1440.
MLA Style
Anand, Gaurav, and Surjeet Singh Rajpoot. "NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS." International Journal of Advance Research and Innovative Ideas In Education, vol. 7, no. 1, 2021, pp. 1436-1440.
IEEE Style
Gaurav Anand and Surjeet Singh Rajpoot, "NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS," International Journal of Advance Research and Innovative Ideas In Education, vol. 7, no. 1, pp. 1436-1440, 2021.
Vancouver Style
Anand Gaurav, Rajpoot Surjeet Singh. NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS. International Journal of Advance Research and Innovative Ideas In Education. 2021;7(1):1436-1440.
Harvard Style
Anand, Gaurav & Rajpoot, Surjeet Singh (2021) 'NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS', International Journal of Advance Research and Innovative Ideas In Education, 7(1), pp. 1436-1440.
Chicago Style
Anand, Gaurav and Surjeet Singh Rajpoot. "NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS." International Journal of Advance Research and Innovative Ideas In Education 7, no. 1 (2021): 1436-1440.
Turabian Style
Anand, Gaurav and Surjeet Singh Rajpoot. "NUMERICAL EVALUTION & HEAT ENHANCEMENT OF INTERSTITIAL OSCILLATING FLOW IN SHELL & TUBE HEAT EXCHANGER BY USING COMPUTATIONAL FLUID DYNAMICS." International Journal of Advance Research and Innovative Ideas In Education 7, no. 1 (2021): 1436-1440.
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