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7篇 您的检索式:作者名="Anindya Chatterjee"
    题名 作者 年代 出处 被引量
1Motions of a rimless spoked wheel: a simple 3d system with impacts 显示文摘Michael J Coleman Anindya Chatterjee Andy Ruina 1997Dynamics and Stability of Systems (S0268-1110)1997,12,3:1
2An introduction to the proper orthogonal decomposition 显示文摘ANINDYA Chatterjee 2000Current Science2000,78,7:1
3Self-interrupted regenerative metal cutting in turning显示文摘Pankaj Wahi Anindya Chatterjee 2007International Journal of Non-Linear Mechanics2007,,2:1
4The simplest walking model:stability,complexity,and scaling显示文摘Mariano Garcia Anindya Chatterjee Andy Ruina 1998Journal of Biomechanical Engineering1998,120,:1
5CYP2E1-dependent and leptin-mediated hepatic CD57 expression on CD8<ce:hsp sp='0.10'/>+ T cells aid progression of environment-linked nonalcoholic steatohepatitis显示文摘Ratanesh Kumar Seth Suvarthi Das Ashutosh Kumar Anindya Chanda Maria B. Kadiiska Gregory Michelotti Jose Manautou Anna Mae Diehl Saurabh Chatterjee 2014Toxicology and Applied Pharmacology2014,,1:1
6The short-time impulse response of euler-bemoulli beams显示文摘Anindya Chatterjee 2004ASME Journal of Applied Mechanics2004,71,3:1
7Numerical analysis of non-isothermal viscous jet with peripheral heat transfer显示文摘A fluid jet ejected from micron size nozzle is a commonly occurring phenomenon in biomedical engineering,printing technology and micro-fluidic applications.Disintegration of a jet into drops occurs due to disturbances induced by external sources.This work explores the various sources of perturbation and their effect on jet disintegration through numerical simulation of a two-dimensional non-isothermal model.The mathematical approach uses a novel technique to combine analytical solutions for the energy balance equation in the radial direction to solve the complete two dimensional problem.The two dimensional energy balance equation is simultaneously solved together with the axi-symmetric Navier–Stokes equations using the slender-jet approximation to predict jet velocity.The energy balance takes into account of peripheral heat transfer to the environment through analytical expressions derived from radial approximations.The model helps in understanding the factors in dynamic temperature variations that eventually render the jet unstable.The distinguishing aspect of this work is the analysis of the effect of a periodic thermal perturbation applied at any point in the domain of a progressive jet,a situation typically encountered in thermal inkjet printers and not considered previously.Results presented for non-isothermal jets which are both stationary and moving illustrate the effect of jet velocity in propagation of perturbation and subsequent drop formation.The major contribution of this numerical study is that it provides an insight on novel ways of controlling droplet formation in bubble jet printers.This study demonstrates that thermal disturbance propagating from periodic heating can be manipulated to shape the droplets and control their breakage point along the jet.Sulagna Chatterjee Trisha Sen Anindya Mitra 2016International Journal of Modeling, Simulation, and Scientific Computing2016,7,3:0
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