Developing a computational model of axial oil flow from a porous rough hole Prin. Dr. Pragna A. Vadher, Dr. Gunamani B. Deheri, Dr. Sanjeev Kumar and Rakesh M. Patel
A. Principal, Government Science College, Idar, Gujarat, India.
B. Associate Professor (Retired), Department of Mathematics, Sardar Patel University, Vallabh Vidyanagar, Gujarat, India.
C. Professor& Head, Department of Mathematics, DBOU, Agra University, Agra, Uttar Pradesh, India.
D. Department of Mathematics, Gujarat Arts & Science College, Ahmedabad, Gujarat, India.
Abstract
- This study aims to present a new computational model for assessing how roughness affects axial flow emerging from a hole.
- Christensen and Tonder^s stochastic averaging model has been employed to develop a mathematical calculation that captures the impact of roughness.
- A closed-form solution for axial flow, including different physical parameters has been obtained.
- Tabular results suggest that the effect of roughness with deformable surface is higher.
- Additionally, it is observed that the eccentricity ratio plays a crucial role in improving bearing system.
Keywords: Film thickness, Axial flow, Deformable roughness, Pressure distribution