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of 3
pro vyhledávání: '"U. K. Thianesh"'
Autor:
Sanal Kumar VR, Amrith Mariappan, U. K. Thianesh, Ajith Sukumaran, Ashish Kumar, V. K. Vijil Lal, Jerin John, Raunak Sharma, Sanjay Singh
Publikováno v:
Engineering Reports, Vol 6, Iss 1, Pp n/a-n/a (2024)
Abstract Although numerous models of aerial‐robots/drones and planet landers have been demonstrated to fly autonomously in natural and manmade environments for far‐reaching scientific and technological change to help humankind, no drone flowed ye
Externí odkaz:
https://doaj.org/article/8cef8a0485c947548b92b744e108b725
Autor:
VR Sanal Kumar, Ajith Sukumaran, M. Rajesh, M. Rajaram Perumal, K. S. Sumanth Eswar, U. K. Thianesh, Amrith Mariappan, Rahul Pradeep, R Prabhu, K. R. Prasanna Kumar
Publikováno v:
AIAA Propulsion and Energy 2020 Forum.
An altitude compensating nozzle is a class of rocket engine nozzles that are designed to operate with the highest momentum thrust across a wide range of altitudes. Herein, we are proposing a single nozzle with different adjustable area ratios at diff
Autor:
C. Lenin, K Krishnaraj, VR Sanal Kumar, Ajith Sukumaran, Sabarinath Karunakaran, N. A. Abhilash, Dhanalakshmi Krishnamoorthy, Dharni Vasudhevan Venkatesan, Vivek Srinivasan, Sulthan Ariff Rahman Mohamed Rafic, U. K. Thianesh, M. Ajith Kumar, K. S. Sumanth Eswar, Rahul Pradeep, Sandeep Gunasekaran, Kiridharan R, M. Rajaram Perumal, Hema Sai Nagaraju Doddi, A. Saravanan, H. Sujith Kumar, Mohanraj Murugesan, M. Rajesh, Deepak Natarajan, Amrith Mariappan, Vishnu Natarajan, Vignesh Saravanan, M. Saravanan, Roshan Vignesh Baskaran, Nichith Chandrasekaran, Gowtham Balasubramaniam, A. Mohamed Imran Khan, R. Balachandru, Radha Balakrishnan, D. Aswin Ram, Vigneshwaran Sankar, Sathyan Padmanabhan, Vineeshwar S, K. E. Shanjay, Sivabalan Mani, S. Ganesh Shankar, Vignesh Janardhanan, R. Sabarinathan, N. Santhosh Kumar
Publikováno v:
Physics of Fluids. 33:036108
The theoretical discoveries of the Sanal flow choking [V. R. Sanal Kumar et al., “Sanal flow choking: A paradigm shift in computational fluid dynamics code verification and diagnosing detonation and hemorrhage in real‐world fluid‐flow systems,