K
Kumbakonam R. Rajagopal
Researcher at Texas A&M University
Publications - 688
Citations - 25779
Kumbakonam R. Rajagopal is an academic researcher from Texas A&M University. The author has contributed to research in topics: Constitutive equation & Viscoelasticity. The author has an hindex of 77, co-authored 659 publications receiving 23443 citations. Previous affiliations of Kumbakonam R. Rajagopal include Kent State University & University of Wisconsin-Madison.
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Flow of a non-newtonian fluid through axisymmetric pipes of varying cross-sections
TL;DR: In this paper, the flow of a non-Newtonian fluid through an axisymmetric pipe of slowly varying cross-section by means of a perturbation was studied.
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Aggregation of a Class of Large-scale, Interconnected, Nonlinear Dynamical Systems
TL;DR: In this article, the authors consider the issue of the construction of a meaningful average for a collection of nonlinear dynamical systems, which can represent the macroscopic behavior of the collection of systems and allow us to infer the behavior of such systems on an average.
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Development of A CFD 3D Model To Determine The Effect of The Mixing Quality on The CNG-Diesel Engine Performance
TL;DR: In this article, the authors applied CFD approach to investigate the flow behavior of methane and air in a CNG-AIR MIXER to be used for CNGDIESEL DUAL FEED ENGINE.
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Application of a constitutive equation for softening, yield and permanent deformation to finite plane simple shear
TL;DR: In this paper, the authors considered the finite homogenous simple shear deformation of an incompressible material and modeled the response with a constitutive equation that reflects a continuous process of microstructural transformation as the deformation increases beyond a threshold value.
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Flow and Heat Transfer over an Exponential Stretching Sheet under the Effects of a Temperature Gradient Dependent Heat Sink and Thermal Radiation.
TL;DR: In this article, the problem of MHD flow and heat transfer in a Newtonian viscous incompressible fluid over a stretching sheet with temperature gradient dependent heat sink/source and radiation is investigated.