Zobrazeno 1 - 10
of 30
pro vyhledávání: '"W. F. Florez"'
Autor:
W. F. Florez, V. Popov, H.V. Martínez-Tejada, C. A. Bustamante, E. Garcia-Tamayo, J.P. Gaviria-Cardona
Publikováno v:
Engineering Analysis with Boundary Elements. 134:398-411
Electrospinning is a technique used to fabricate fibrillar materials for different applications. Understanding this process allows companies to reduce efforts and to have better control of the variables present in this phenomenon. A mathematical mode
Autor:
D.A. Castro, W. F. Florez, C. A. Bustamante, J. M. Granados, Margarita Portapila, N. Caruso, R. Posada
Publikováno v:
Engineering Analysis with Boundary Elements. 127:75-90
This work presents a numerical study of the influence of different boundary conditions (BC) on the precision of the method of approximate particular solutions (MAPS) with radial basis functions in two dimensions. The state of the art merely mentions
Autor:
W. F. Florez, Leopoldo Eduardo Cárdenas-Barrón, Shib Sankar Sana, Holman Ospina Mateus, Jaime Acevedo Chedid, Katherinne Salas Navarro
Publikováno v:
American Institute Of Mathematical Scienses
REDICUC-Repositorio CUC
Corporación Universidad de la Costa
instacron:Corporación Universidad de la Costa
Journal of Industrial and Management Optimization; 16 (4)July (2020), 1613-1633.
REDICUC-Repositorio CUC
Corporación Universidad de la Costa
instacron:Corporación Universidad de la Costa
Journal of Industrial and Management Optimization; 16 (4)July (2020), 1613-1633.
This paper presents an inventory model for a three-echelon supply chain with multiple products and multiple members considering the demand as an increasing function of the marketing effort. In the proposed inventory model, a collaborative approach is
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b4172393b306c3aab4498dfc85691e4a
https://repositorio.cuc.edu.co/
https://repositorio.cuc.edu.co/
Publikováno v:
Ingeniería y Ciencia; Vol 13 No 26 (2017); 65-89
Repositorio EAFIT
Universidad EAFIT
instacron:Universidad EAFIT
Ingeniería y Ciencia, Vol 13, Iss 26 (2017)
Repositorio EAFIT
Universidad EAFIT
instacron:Universidad EAFIT
Ingeniería y Ciencia, Vol 13, Iss 26 (2017)
The numerical solution of transient stability problems is a key element for electrical power system operation. The classical model for multi-machine systems is defined as a set of non-linear differential equations for the rotor speed and the generato
Publikováno v:
Applied Mathematics and Computation. 390:125484
Natural, forced and mixed convection heat transfer problems are solved by the meshless Method of Approximate Particular Solutions (MAPS). Particular solutions of Poisson and Stokes equations are employed to approximate temperature and velocity, respe
Publikováno v:
International Journal of Computer Mathematics. 94:1515-1541
The unsteady two-dimensional Navier–Stokes system of equations, for viscous incompressible fluids are solved using a global method of approximated particular solutions MAPS in terms of a Stokes formulation, where the velocity and pressure fields ar
Publikováno v:
Computers & Geosciences. 76:151-163
The aim of this paper is to present how to implement a control volume approach improved by Hermite radial basis functions (CV-RBF) for geochemical problems. A multi-step strategy based on Richardson extrapolation is proposed as an alternative to the
Publikováno v:
IndraStra Global.
A numerical study of voids formation in dual-scale fibrous reinforcements is presented. Flow fields in channels (Stokes) and tows (Brinkman) are solved via direct Boundary Element Method and Dual Reciprocity Boundary Element Method, respectively. The
Publikováno v:
Numerical Methods for Partial Differential Equations. 31:777-797
The method of approximate particular solutions (MAPS) is used to solve the two-dimensional Navier–Stokes equations. This method uses particular solutions of a nonhomogeneous Stokes problem, with the multiquadric radial basis function as a nonhomoge
Publikováno v:
Drying Technology. 32:469-475
A model which joins the overall design algorithm of a rotary dryer with the drying kinetics equations derived from experimental data and with a finite segment algorithm is implemented in order to verify the dryer dimensions obtained from a basic sizi