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pro vyhledávání: '"P. Jagad"'
Autor:
van der Aalst, Wil M. P., Adriansyah, Arya, Karla Alves de Medeiros, Ana, Arcieri, Franco, Baier, Thomas, Blickle, Tobias, P. Jagadeesh Chandra Bose, R., van den Brand, Peter, Brandtjen, Ronald, C. A. M. Buijs, Joos, Burattin, Andrea, Carmona, Josep, Castellanos, Malú, Claes, Jan, Cook, Jonathan, Costantini, Nicola, Curbera, Francisco, Damiani, Ernesto, de Leoni, Massimiliano, Delias, Pavlos, F. van Dongen, Boudewijn, Dumas, Marlon, Dustdar, Schahram, Fahland, Dirk, R. Ferreira, Diogo, Gaaloul, Walid, van Geffen, Frank, Goel, Sukriti, Günther, Christian W., Guzzo, Antonella, Harmon, Paul, H. M. ter Hofstede, Arthur, Hoogland, John, Espen Ingvaldsen, Jon, Kato, Koki, Kuhn, Rudolf, Kumar, Akhil, La Rosa, Marcello, Maria Maggi, Fabrizio, Malerba, Donato, Mans, Ronny S., Manuel, Alberto, McCreesh, Martin, Mello, Paola, Mendling, Jan, Montali, Marco, R. Motahari Nezhad, Hamid, zur Muehlen, Michael, Munoz-Gama, Jorge, Pontieri, Luigi, Ribeiro, Joel, Rozinat, Anne, Seguel Pérez, Hugo, Seguel Pérez, Ricardo, Sepúlveda, Marcos, Sinur, Jim, Soffer, Pnina, Song, Minseok, Sperduti, Alessandro, Stilo, Giovanni, Stoel, Casper, D. Swenson, Keith, Talamo, Maurizio, Tan, Wei, Turner, Chris, Vanthienen, Jan, Varvaressos, George, Verbeek, Eric, Verdonk, Marc, Vigo, Roberto, Wang, Jianmin, Weber, Barbara, Weidlich, Matthias, Weijters, Ton, Wen, Lijie, Westergaard, Michael, Thandar Wynn, Moe
Process mining techniques are able to extract knowledge from event logs commonly available in today's information systems. These techniques provide new means to discover, monitor, and improve processes in a variety of application domains. There are t
Externí odkaz:
http://epub.wu.ac.at/5252/1/vanderAalst_etal_2011_BPM_Process%2DMining%2DManifesto.pdf
The simulation of fluid flow problems, specifically incompressible flows governed by the Navier-Stokes equations (NSE), holds fundamental significance in a range of scientific and engineering applications. Traditional numerical methods employed for s
Externí odkaz:
http://arxiv.org/abs/2409.04731
The present work develops, verifies, and benchmarks a hybrid discrete exterior calculus and finite difference (DEC-FD) method for density-stratified thermal convection in spherical shells. Discrete exterior calculus (DEC) is notable for its coordinat
Externí odkaz:
http://arxiv.org/abs/2311.06802
Publikováno v:
Cogent Arts & Humanities, Vol 11, Iss 1 (2024)
This research has a significant contribution to the understanding of changes in the oral literary practices of the Dayak Kanayatn and their impact on their social identity. A qualitative research method was employed to collect data through the interp
Externí odkaz:
https://doaj.org/article/353d6eb870684a709dc99708dfb3ecf2
We present a new hybrid discrete exterior calculus (DEC) and finite difference (FD) method to simulate fully three-dimensional Boussinesq convection in spherical shells subject to internal heating and basal heating, relevant in the planetary and stel
Externí odkaz:
http://arxiv.org/abs/2210.00861
We present a discrete exterior calculus (DEC) based discretization scheme for incompressible two-phase flows. Our physically-compatible exterior calculus discretization of single phase flow is extended to simulate immiscible two-phase flows with disc
Externí odkaz:
http://arxiv.org/abs/2203.13070
Autor:
Jagad, Pankaj, Samtaney, Ravi
We investigate incompressible, inviscid vorticity dynamics on a rotating unit sphere using a Discrete Exterior Calculus (DEC) scheme. For a prescribed initial vorticity distribution, we vary the rate of rotation of the sphere from zero (non-rotating
Externí odkaz:
http://arxiv.org/abs/2108.09583
A conservative primitive variable discrete exterior calculus (DEC) discretization of the Navier-Stokes equations is performed. An existing DEC method (Mohamed, M. S., Hirani, A. N., Samtaney, R. (2016). Discrete exterior calculus discretization of in
Externí odkaz:
http://arxiv.org/abs/2010.15520
Akademický článek
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We investigate the dynamics of flows past a stationary circular cylinder embedded on spherical and cylindrical surfaces at a fixed Reynolds number of 100. For flows on surfaces, it is convenient to express the Navier-Stokes equations in exterior calc
Externí odkaz:
http://arxiv.org/abs/1810.10829