Modeling of Cracked Beams by the Experimental Design Method

Abstract The understanding of phenomena, no matter their nature is based on the experimental results found. In the most cases, this requires an important number of tests in order to put a reliable and useful observation served into solving the technical problems subsequently. This paper is based on...

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Main Authors: M. Serier, N. Benamara, A. Megueni, K. Refassi
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000901641&lng=en&tlng=en
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author M. Serier
N. Benamara
A. Megueni
K. Refassi
author_facet M. Serier
N. Benamara
A. Megueni
K. Refassi
author_sort M. Serier
collection DOAJ
description Abstract The understanding of phenomena, no matter their nature is based on the experimental results found. In the most cases, this requires an important number of tests in order to put a reliable and useful observation served into solving the technical problems subsequently. This paper is based on independent and variables combination resulting from experimentation in a mathematical formulation. Indeed, mathematical modeling gives us the advantage to optimize and predict the right choices without passing each case by the experiment. In this work we plan to apply the experimental design method on the experimental results found by (Deokar, A, 2011), concerning the effect of the size and position of a crack on the measured frequency of a beam console, and validating the mathematical model to predict other frequencies
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spelling doaj.art-a6fe159e88d6432dba217ade638b46d52022-12-22T00:12:16ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-78251291641165210.1590/1679-78251403S1679-78252015000901641Modeling of Cracked Beams by the Experimental Design MethodM. SerierN. BenamaraA. MegueniK. RefassiAbstract The understanding of phenomena, no matter their nature is based on the experimental results found. In the most cases, this requires an important number of tests in order to put a reliable and useful observation served into solving the technical problems subsequently. This paper is based on independent and variables combination resulting from experimentation in a mathematical formulation. Indeed, mathematical modeling gives us the advantage to optimize and predict the right choices without passing each case by the experiment. In this work we plan to apply the experimental design method on the experimental results found by (Deokar, A, 2011), concerning the effect of the size and position of a crack on the measured frequency of a beam console, and validating the mathematical model to predict other frequencieshttp://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000901641&lng=en&tlng=enParametersexperimental design methodmodelingfrequencycrack
spellingShingle M. Serier
N. Benamara
A. Megueni
K. Refassi
Modeling of Cracked Beams by the Experimental Design Method
Latin American Journal of Solids and Structures
Parameters
experimental design method
modeling
frequency
crack
title Modeling of Cracked Beams by the Experimental Design Method
title_full Modeling of Cracked Beams by the Experimental Design Method
title_fullStr Modeling of Cracked Beams by the Experimental Design Method
title_full_unstemmed Modeling of Cracked Beams by the Experimental Design Method
title_short Modeling of Cracked Beams by the Experimental Design Method
title_sort modeling of cracked beams by the experimental design method
topic Parameters
experimental design method
modeling
frequency
crack
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000901641&lng=en&tlng=en
work_keys_str_mv AT mserier modelingofcrackedbeamsbytheexperimentaldesignmethod
AT nbenamara modelingofcrackedbeamsbytheexperimentaldesignmethod
AT amegueni modelingofcrackedbeamsbytheexperimentaldesignmethod
AT krefassi modelingofcrackedbeamsbytheexperimentaldesignmethod