Items where Author is "Kulkarni, DS"
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Number of items: 8.
Pradeep, Shetty and Subrahmanya, MB and Kulkarni, DS and Rajani, BN (2011) CFD simulation of flow past MAV wings. In: Symposium on Applied Aerodynamics and Design of Aerospace Vehicle (SAROD 2011), November 16-18, 2011, Bangalore, India.
Majumdar, Sekhar and Rajani, BN and Kulkarni, DS and Subrahmanya, MB (2010) Numerical simulation of incompressible turbulent flow using linear eddy viscosity-based turbulence models. Defence Science Journal, 60 (6). pp. 614-627. ISSN 0011-748X
Thulasi Durai, D and Viswamurthy , SR and Byji, Varughese and Dayananda, GN and Subrahmanya, MB and Kulkarni, DS and Rajani, BN and Mathur, JS (2009) Optimized construction of a composite MAV wing using CFD analysis. In: Symposium on Applied Aerodynamics and Design of Aerospace Vehicle (SAROD 2009), 10-12 December 2009, Bangalore.
Mathur, JS and Rajani, BN and Kulkarni, DS and Subrahmanya, MB (2009) Computational Fluid Dynamics Applications to MAVs. In: MAV Workshop- Challenges and Presferred Outcomes, 13 November 2008, National Aerospace Laboratories.
Kulkarni, DS and Raghavendra, B and Rajani, BN and Majumdar, S (2008) Performance analysis of eddy-viscosity based turbulence models for attached and separated flows. In: Proceedings of the 12th Asian Congress of Fluid Mechanics, 18-21 Aug 2008, Daejeon, Korea.
Kulkarni, DS and Sarkar, S and Rajani, BN and Majumdar, S (2007) Prediction of airfoil characteristics for a wide range of angle of attack using low REk- and v2-f turbulence models. In: 7th Asian Computational Fluid Dynamics Conference (ACFD7), 26-30 Nov 2007, Bangalore, India.
Kulkarni, DS and Sarkar, S and Majumdar, S (2007) Prediction of airfoil characteristics for a wide range of angle of attack using different turbulence models. In: Proceedings of the Indo-Australian workshop on CFD Approach on Fluid Flow, Heat and Mass Transfer and Symposium on CFD applications in Multidisciplinary Areas (IAWS-CFD 2007), 12-14 Apr 2007, Roorkee, India.
Kulkarni, DS and Majumdar, Sekhar (2005) Navier stokes solution for two dimensional laminar convective heat transfer problems. Technical Report. National Aerospace Laboratories, Bangalore, India.