CFD Analysis on Different Elbow Draft Tubes

Jithendra Sai Raja Chada*, Akhil Yuvaraj Manda **, Phani Bhaskar Anusuri ***
*-*** Department of Mechanical Engineering, Pragati Engineering College, Kakinada, Andhra Pradesh, India.
Periodicity:November - January'2021
DOI : https://doi.org/10.26634/jme.11.1.17643

Abstract

The elbow pipe is a common and essential component in terms of the transmission of a fluid, be it a working fluid or a non – working fluid. The purpose of the presented work is to conceptualize an optimal design of an elbow pipe with suitable modifications, to contribute to higher rates of velocities. The base elbow pipe geometry is modified with draft tube of different shapes namely square, ellipse and circular. The modified geometries are simulated, evaluated and compared to the base pipe geometry in terms of the velocity and pressure lineation using the SolidWorks software. The results depicted ideal values for model M3 with draft tube of ellipse shape at an inlet mass flow rate of 1.8 kg/s. The results when compared to the linear regression analysis generated, were found to be in an appreciable correlation with each other.

Keywords

Elbow Pipe, Working Fluid, Pipe Geometry, SolidWorks, Linear Regression

How to Cite this Article?

Chada, J. S. R., Manda, A. Y., and Anusuri, P. B. (2021). CFD Analysis on Different Elbow Draft Tubes. i-manager's Journal on Mechanical Engineering, 11(1), 16-21. https://doi.org/10.26634/jme.11.1.17643

References

[1]. Chada, J. S. R., Ragu, P. C., & Bhaskar, A. P. (2020). Study on conceptual design and shape optimization of pintle nozzle of a rocket. i-manager's Journal on Mechanical Engineering, 10(4), 14-22. https://doi.org/10.26634/jme. 10.4.17480
[2]. Dhanenthiran, M., Samy, T. D.U., & Rani, G. R. (2020). CFD analysis of hot and cold steam flow in an elbow. International Research Journal of Engineering and Technology, 7(3), 1220–1224.
[3]. Dos Santos, A. P. P., Andrade, C. R., & Zaparoli, E. L. (2014). CFD Prediction of the round elbow fitting loss coefficient. International Journal of Mechanical and Mechatronics Engineering, 8(4), 743-747.
[4]. Gulshan, T., Singh, S., Daleshwar, Ali, N., & Mudhra, C. (2018). Experimental and CFD analysis of mixed elbow draft tube and comparative analysis with simple elbow draft tube. International Journal of Research in Engineering Application & Management, 4(3), 15–21.
[5]. Homicz, G. F. (2004). Computational fluid dynamic simulations of pipe elbow flow. Sandia National Laboratories (pp. 1 – 40). https://doi.org/10.2172/919140
[6]. Kumar, R. S., & Pentakota, A. K. (2017). Computational fluid dynamics simulations of pipe elbow flow. International Journal of Professional Engineering Studies, 9(2), 1-10.
[7]. Mazumder, Q. H. (2012). CFD analysis of the effect of elbow radius on pressure drop in multiphase flow. Modeling and Simulation in Engineering, 2012, 1–8. https://doi.org/ 10.1155/2012/125405
[8]. Satish, G., & Yuvaraj, M. A. (2019). Flow behavior on elbow with various geometries of nozzle. i-manager's Journal on Mechanical Engineering, 9(2), 43–51.
[9]. Warghat, S. T., Bhadange, P. J., Watane, M. J. (2019). CFD analysis of fluid flow through elbow to optimize the design of elbow. International Journal for Scientific Research & Development, 7(2), 601 – 605.
If you have access to this article please login to view the article or kindly login to purchase the article

Purchase Instant Access

Single Article

North Americas,UK,
Middle East,Europe
India Rest of world
USD EUR INR USD-ROW
Pdf 35 35 200 20
Online 35 35 200 15
Pdf & Online 35 35 400 25

Options for accessing this content:
  • If you would like institutional access to this content, please recommend the title to your librarian.
    Library Recommendation Form
  • If you already have i-manager's user account: Login above and proceed to purchase the article.
  • New Users: Please register, then proceed to purchase the article.