Computer Vision Pattern Recognition

Advances in Engineering Software by Clifford

By Clifford

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We first present a brief overview of the kinematics, the conservative and constitutive laws related to large deformation inelasticity. Then we present the design and the numerical implementation of some aspects developed with an emphasis on the object-oriented programming adopted. Finally, the efficiency and accuracy of the program are investigated through some benchmark tests. q 2002 Elsevier Science Ltd. All rights reserved. Keywords: Nonlinear finite-element; Explicit integration; Large deformations; Plasticity; Impact; Cþþ ; Object-oriented programming 1.

However, this method seems to be very ef®cient in this case. In Fig. 5, a diagram presents the structure of the program and the way it solves the equation. 4. 0. The main purpose of creating a software program was at the beginning to be able to de®ne the model described and to modify it without too many complications. The software is unique in the sense of the existing software does not consider the effort of tortuous ¯ow path of a ®bre mat during the mat formation. It is particularly so when the furnish contains a heterogeneous mixture of short and long ®bres, ®nes and ®llers.

This language has a grammar presenting analogies with Cþ þ . The most important points are summarized here after: † fully free-form language supporting classic features such as comments, files inclusion through #include commands † supports for various computations between reals or vectors, arithmetic, trigonometric, increments or variables comparisons † includes tests (if, then and else) and loops (for and while) † i/o functionalities such as cout, fopen, fclose or , , † many other useful features (we refer to the DynELA user manual [18]).

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