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Uncertainty Quantification In Laminated Composites A Metamodel Based Approach Adhikari

  • SKU: BELL-9955036
Uncertainty Quantification In Laminated Composites A Metamodel Based Approach Adhikari
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Uncertainty Quantification In Laminated Composites A Metamodel Based Approach Adhikari instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 25.31 MB
Pages: 366
Author: Adhikari, Sondipon; Dey, Sudip; Mukhopadhyay, Tanmoy
ISBN: 9781315155593, 9781351651646, 9781498784450, 9781498784467, 1315155591, 1351651641, 1498784453, 1498784461
Language: English
Year: 2019

Product desciption

Uncertainty Quantification In Laminated Composites A Metamodel Based Approach Adhikari by Adhikari, Sondipon; Dey, Sudip; Mukhopadhyay, Tanmoy 9781315155593, 9781351651646, 9781498784450, 9781498784467, 1315155591, 1351651641, 1498784453, 1498784461 instant download after payment.

Uncertainty quantification in composite materials and structures has gained immense attention from the research community over the last few decades. This book presents efficient uncertainty quantification schemes following meta-model-based approaches for stochasticity in material and geometric parameters of laminated composite structures. Several meta-models have been studied for this purpose and comparative results are presented for different static and dynamic responses. In addition, results for sensitivity analyses are presented to provide a complete understanding of the relative importance of different material and geometric parameters in global responses of the structure. 
Abstract: Uncertainty quantification in composite materials and structures has gained immense attention from the research community over the last few decades. This book presents efficient uncertainty quantification schemes following meta-model-based approaches for stochasticity in material and geometric parameters of laminated composite structures. Several meta-models have been studied for this purpose and comparative results are presented for different static and dynamic responses. In addition, results for sensitivity analyses are presented to provide a complete understanding of the relative importance of different material and geometric parameters in global responses of the structure

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