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Titlebook: Design and Modeling of Mechanical Systems - IV; Proceedings of the 8 Nizar Aifaoui,Zouhaier Affi,Fakher Chaari Conference proceedings 2020

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Biological Fouling: Basic Science and Modelsbtained results confirm improvement of the required design criteria of the sewing mechanism in this study. It is also concluded that the optimized mechanism has 35% less needle Jerk and 20% reduction in term of the transmission angle index (TA) than the one for the Juki machine.
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Biological Fouling: Basic Science and Modelsas slightly more important for the case using an (.) inline plastic short-section than that using an (.) one. Furthermore, results evidenced that other factors influencing the surge attenuation rate were related to the short-section dimensions.
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https://doi.org/10.1007/978-1-4302-0158-8of the proposed technique in attenuating excessive high- and low-pressure surges. However, they evidenced that this technique induced excessive period spreading, thus affecting negatively the operational procedures of the hydraulic system. Lastly, this study provided an estimate of the near-optimal values of the short-section diameter and length.
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https://doi.org/10.1007/978-1-4302-0158-8ositive and negative surge magnitude attenuation was slightly more important for the case of a short penstock made of (.) material than that using an (.) material. Ultimately, it was observed that other factors contributing to the attenuation rate depended upon the short-penstock length and diameter.
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The Critical Modeling Modifiersns. The finite-element software ‘‘Abaqus’’ is used to simulate the humidity diffusion through the composite material. The comparison between the experimental and numerical results shows that the model can predict the hygrothermal behavior of the polyester/glass fiber composite.
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Two-way ASP.NET/Flash Communication,od of characteristics (MOC) of specified time intervals along with Nelder-Mead optimization algorithm for the estimation of the flaw parameters (size and location). The numerical obtained results have shown a good agreement with the experimental data for the detection and the location of leaks.
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