NIST UNIVERSITY
Institute Park, Berhampur, Odisha-761008, India

Aswini Kumar Khuntia

Dr. Aswini Kumar Khuntia

Senior Assistant Professor

Mechanical Engineering (SCHOOL OF ENGINEERING)

aswinikhuntia@nist.edu
9778497812
CORE - 202

Education

M.Tech in Mechanical System Design
IGIT, Sarang
2011-07-01
B.Tech in Mechanical Engg.
Berhampur University.
2001
PhD in Mechanical Engineering
IIT/ISM Dhanbad
2022-08-25

Work Experience

Assistant Professor
GIIT, Berhampur
01/12/2008 - 29/02/2012

Research Interests

  • Investigate and model heat transfer and fluid flow behavior in advanced cooling technologies using CFD and experimental data. Develop and apply machine learning based hybrid models to predict system performance and optimize thermal–fluid parameters.

Publications

  1. A.K.Khuntia, B.B.Choudhury and B.B.Biswal “An optimized task allocation for multi robot systems using soft computing techniques” National Conference on Computing and Communication Systems (NCCCS), IEEE, 1-6, 2012
  2. A.K.Khuntia, B.B.Choudhury, B.B.Biswal and K.Dash “A Heuristics Based Multi-Robot Task Allocation”, International Conference on Recent advanced in Intelligent Computational Systems, IEEE, 407-410, 2011
  3. K.Dash, B.B.Choudhury, A.K.Khuntia and B.B.Biswal “A Neural Network Based Inverse Kinematic Problem”, International Conference on Recent advanced in Intelligent Computational Systems, IEEE, 471-476, 2011
  4. S.Nayak, B.B.Choudhury and A.K. Khuntia “Selection Methodologies for Industrial Robots”, National Conference on Emerging Trend and its Application in Engineering, 211-215, 2011
  5. A.K. Khuntia, B.B.Choudhury and B.B.Biswal “A Multi-Robot Task Scheduling and Allocation Problem” National Conference on Emerging Trend and its Application in Engineering, 261-266, 2011
  6. G.S.Mahapatro, B.B.Choudhury, A.K. Khuntia and S.Kata “Methodologies for Robotic Inverse Kinematics problem” National Conference on Emerging Trend and its Application in Engineering, 325-329, 2011
  7. A Numerical Investigation of Effect of Shape of Orifice on the Heat Transfer Characteristics of a Synthetic Jet, pp 183–194, 2021
  8. Influence of Geometric and Operating Parameters on the Heat Transfer Enhancement of Synthetic Jet, pp 171–181, 2021
  9. TWO-PHASE FLOW MEASUREMENT THROUGH AN ORIFICE METER WITH REGRESSION ANALYSIS
  10. Determination of pressure drop through a circular orifice for two-phase flow with machine learning technique, Flow Measurement and Instrumentation, Volume 94, December 2023, 102478
  11. Analysis of a flow through a crescent orifice by using machine learning, AIP Conf. Proc. 3325, 050019 (2025)
  12. Characterization of flow phenomena in two-stage orifice systems, Flow Measurement and Instrumentation, Volume 107, January 2026, 103065