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Section 3 develops a linear programming model to predict material flows and value added in 2030.
On the other hand, a microstructure simulation can be used to predict material properties of the textile.
Numerical simulations are an important tool to predict material behaviour and optimize the mechanical properties.
A simplified analysis model is also proposed to predict material flow and fracture during forming.
These results will help predict material and nutrient fluxes between intertidal and subtidal landscapes.
In ribs, it is difficult to predict material flow, fibre distribution, fibre orientation and so on.
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The utility of this approach, however, depends on the accuracy of the resulting predicted material properties.
The predicted material properties for common materials are successfully matched with experimental data.
High strain-rate properties of materials are needed for predicting material behavior in extreme environments.
Overall, the agreement between predicted material properties and experimental data in the literature is very satisfactory.
The comparative analysis gives an acceptable error, indicating applicability of such simulation model studies in predicting material characteristics in advance.
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