Zobrazeno 1 - 10
of 45
pro vyhledávání: '"V. M. Krushnarao Kotteda"'
Publikováno v:
Geosciences, Vol 9, Iss 1, p 29 (2019)
Efficient and accurate poroelasticity models are critical in modeling geophysical problems such as oil exploration, gas-hydrate detection, and hydrogeology. We propose an efficient operator splitting method for Biot’s model of linear poroelasticity
Externí odkaz:
https://doaj.org/article/c55e2a8753784b03812b5cbfd7806250
Publikováno v:
Powder Technology. 394:191-206
Thermal radiation is a dominant mode of heat transfer in combustion/gasification, packed/circulating bed reactors, and energy storage/conversion devices. In hydrocarbon fuel combustion, the high absorption and emission of product gases like CO2 and H
Autor:
Brandon Paez, Arturo Rodriguez, V. M. Krushnarao Kotteda, Ashesh Chattopadhyay, Jose Terrazas, Rafael Baez, Vinod Kumar
Publikováno v:
Volume 2: Multiphase Flow (MFTC); Computational Fluid Dynamics (CFDTC); Micro and Nano Fluid Dynamics (MNFDTC).
A combustion jet based on Sandia National Laboratories’ D Flame experiment will be studied computationally and validated by current available physical experimental results. In which the chemical reaction of methane-based fuel will be modeled. In wh
Autor:
Daniel Villanueva, Brandon Paez, Arturo Rodriguez, Ashesh Chattopadhyay, V. M. Krushnarao Kotteda, Rafael Baez, Jose Perez, Jose Terrazas, Vinod Kumar
Publikováno v:
Volume 2: Multiphase Flow (MFTC); Computational Fluid Dynamics (CFDTC); Micro and Nano Fluid Dynamics (MNFDTC).
Physics Informed Neural Networks (PINNs) provide a way to apply deep learning to train a network using data and governing differential equations that control the physical behavior of a system. In this text, we propose using the PINNs framework to sol
Autor:
Abdiel Cruz, Arturo Rodriguez, V. M. Krushnarao Kotteda, Brandon Paez, Daniel Villanueva, Clinton Chijioke, Jose Terrazas, Vinod Kumar
Publikováno v:
Volume 1: Fluid Applications and Systems (FASTC); Fluid Measurement and Instrumentation (FMITC); Fluid Mechanics (FMTC).
The aerodynamics of airfoils has been extensively studied at high Reynolds numbers, where approximations of variables such as drag, and lift can easily be obtained based on computational fluid dynamics or panel methods. Advancement in aeronautical te
Autor:
Demy Rodriguez, Leslie Trevizo, Arturo Rodriguez, Julio Aguilar, Clinton Chijioke, Brandon Paez, Rafael Baez, V. M. Krushnarao Kotteda, Vinod Kumar
Publikováno v:
Volume 1: Fluid Applications and Systems (FASTC); Fluid Measurement and Instrumentation (FMITC); Fluid Mechanics (FMTC).
COVID-19 pandemic has forced students to learn about advanced scientific concepts, such as Fluid Mechanics and Modeling and Simulations, in a completely virtual setting. Such advanced concepts have traditionally been taught in face-to-face settings p
Autor:
Alan Rascon, Nazmul Hossain, V. M. Krushnarao Kotteda, Christopher Harris, Herbert Janssen, Ellen Dudrey, Vinod Kumar, Amit Lopes
Publikováno v:
Volume 1: Fluid Applications and Systems (FASTC); Fluid Measurement and Instrumentation (FMITC); Fluid Mechanics (FMTC).
Deep vein thrombosis (DVT) is a silent killer, with millions of fatalities worldwide and a higher rate occurring during the COVID 19 pandemic. DVT frequently starts as a thrombus in a venous valve pocket, typically in a person’s leg, with minimal-t
Autor:
Clinton Chijioke, Arturo Rodriguez, Andres Enriquez, Vinod Kumar, Vivek Tandon, Jose Terrazas, Daniel Villanueva, V. M. Krushnarao Kotteda
Publikováno v:
Volume 1: Fluid Applications and Systems (FASTC); Fluid Measurement and Instrumentation (FMITC); Fluid Mechanics (FMTC).
Fluid structure interaction (FSI) problems are becoming highly complex as it has wide range of applications, which assists to model many real-world problems. The finite volume method (FVM) enforces conservation of the governing physics over the desig
Autor:
Nicholas Dudu, Arturo Rodriguez, V. M. Krushnarao Kotteda, Jose Terrazas, Daniel Villanueva, Clinton Chijioke, Rafael Baez, Brandon Paez, Vinod Kumar
Publikováno v:
Volume 2: Multiphase Flow (MFTC); Computational Fluid Dynamics (CFDTC); Micro and Nano Fluid Dynamics (MNFDTC).
Laminar flow has been characterized for its smooth and linear behavior concerning its flow. When a non-linearity is introduced, the flow becomes turbulent. Visually it is possible to distinguish between laminar and turbulent flow by identifying areas
Publikováno v:
Metallurgical and Materials Transactions B. 52:922-930
In considering the dynamic wetting of liquid metal infusion into a packed bed, the effect of the contact angle on the penetrating rate and distance was analyzed by examining the momentum balance of the liquid within a capillary, as well as reactive a