Literatura académica sobre el tema "Specified homogenization"

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Artículos de revistas sobre el tema "Specified homogenization"

1

Galise, Giulio, Cyril Imbert, and Régis Monneau. "A junction condition by specified homogenization and application to traffic lights." Analysis & PDE 8, no. 8 (2015): 1891–929. http://dx.doi.org/10.2140/apde.2015.8.1891.

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Kalidindi, Surya R., J. Houskamp, G. Proust, and H. Duvvuru. "Microstructure Sensitive Design with First Order Homogenization Theories and Finite Element Codes." Materials Science Forum 495-497 (September 2005): 23–30. http://dx.doi.org/10.4028/www.scientific.net/msf.495-497.23.

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A mathematical framework called Microstructure Sensitive Design (MSD) has been developed recently to solve inverse problems of materials design, where the goal is to identify the class of microstructures that are predicted to satisfy a set of designer specified objectives and constraints [1]. This paper demonstrates the application of the MSD framework to a specific case study involving mechanical design. Processing solutions to obtain one of the elements of the desired class of textures are also explored within the same framework.
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3

Forcadel, Nicolas, Wilfredo Salazar, and Mamdouh Zaydan. "Specified homogenization of a discrete traffic model leading to an effective junction condition." Communications on Pure & Applied Analysis 17, no. 5 (2018): 2173–206. http://dx.doi.org/10.3934/cpaa.2018104.

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Veg, Lukáš, Jan Kaska, Martin Skalický, and Roman Pechánek. "A Complex Study of Stator Tooth-Coil Winding Thermal Models for PM Synchronous Motors Used in Electric Vehicle Applications." Energies 14, no. 9 (2021): 2395. http://dx.doi.org/10.3390/en14092395.

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The operational reliability and high efficiency of modern electrical machines depend on the ability to transfer heat in the construction parts of the machine. Therefore, many authors study various thermal models and work on the development of effective heat dissipation. New insights and methods lead to improved techniques for the thermal design of electrical machines. This paper presents an experimentally validated thermal model of a permanent magnet synchronous motor (PMSM) with an improved slot winding model. It also deals with various approaches to homogenization and equivalent material pro
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5

Zhang, Yan, Mi Xiao, Hao Li, and Liang Gao. "Topology optimization of material microstructures using energy-based homogenization method under specified initial material layout." Journal of Mechanical Science and Technology 33, no. 2 (2019): 677–93. http://dx.doi.org/10.1007/s12206-019-0123-6.

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6

Bunt, A. M., J. Hermans, M. C. Boon, et al. "Evaluation of the extent of lymphadenectomy in a randomized trial of Western- versus Japanese-type surgery in gastric cancer." Journal of Clinical Oncology 12, no. 2 (1994): 417–22. http://dx.doi.org/10.1200/jco.1994.12.2.417.

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PURPOSE In the context of a prospective, randomized trial of gastric cancer treatment, comparing Western surgical resection with limited lymphadenectomy (R1) versus Japanese surgical resection with extended lymphadenectomy (R2), we analyzed adherence to the specified surgical-pathologic guidelines. PATIENTS AND METHODS Following evaluation of 389 patients, we quantified noncompliance (ie, performance of less dissection than specified) and contamination (ie, performance of more extensive dissection than specified). Of 389 patients, pathologic data permitted identification of 237 eligible patien
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7

KRONE, ROBERT. "NUMERICAL ALGORITHMS FOR DUAL BASES OF POSITIVE-DIMENSIONAL IDEALS." Journal of Algebra and Its Applications 12, no. 06 (2013): 1350018. http://dx.doi.org/10.1142/s0219498813500187.

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An ideal of a local polynomial ring can be described by calculating a standard basis with respect to a local monomial ordering. However the usual standard basis algorithms are not numerically stable. A numerically stable approach to describing the ideal is by finding the space of dual functionals that annihilate it, which reduces the problem to one of linear algebra. There are several known algorithms for finding the truncated dual up to any specified degree, which is useful for describing zero-dimensional ideals. We present a stopping criterion for positive-dimensional cases based on homogeni
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8

Salazar, Wilfredo. "Numerical specified homogenization of a discrete model with a local perturbation and application to traffic flow." ANZIAM Journal 59 (May 15, 2018): 50. http://dx.doi.org/10.21914/anziamj.v59i0.11559.

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9

Grandjean, H., N. Jacques, and S. Zaleski. "Shock propagation in liquids containing bubbly clusters: a continuum approach." Journal of Fluid Mechanics 701 (May 10, 2012): 304–32. http://dx.doi.org/10.1017/jfm.2012.159.

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AbstractThe present work investigates the influence of bubble clustering on the propagation of shock waves in bubbly liquids. A continuum model is developed to describe the macroscopic response of a bubbly liquid with a cluster structure, using a two-step homogenization technique. The proposed methodology allows us to simulate shock wave propagation over long distances with a small computation time and to study the effect of bubble clustering on the shock structure. It is shown that the typical length of the shock profile is related to the global response of the clusters instead of the single-
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10

Buscaglia, Gustavo C., Ionel Ciuperca, and Mohammed Jai. "The Effect of Periodic Textures on the Static Characteristics of Thrust Bearings." Journal of Tribology 127, no. 4 (2005): 899–902. http://dx.doi.org/10.1115/1.2033896.

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Given a bearing of some specified macroscopic shape, what is the effect of texturing its surfaces uniformly? Experimental and numerical investigations on this question have recently been pursued, which we complement here with a mathematical analysis based on a seemingly novel combination of homogenization techniques and perturbation analysis. The flow is assumed governed by the Reynolds equation, with cavitation effects disregarded, and the texture length is assumed much smaller than the bearing’s length. The results, which hold true for small-amplitude periodic textures and in the limit of va
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