有限元分析方法通过应用微观结构演变的编码实现了预测、仿真锻造过程中晶粒的演变过程。
The microstructure evolution models were implemented into the finite-element code, which allowed the prediction of distributions of grain size in the volume of the forging.
采用自组织计数传播网络(CPN)作为框架,结合改进的模糊控制算法,实现对发酵过程的模糊神经元控制。
The count propagation network (CPN) was taken as framework, combining an improved fuzzy control algorithm, to realize the fuzzy-neural control of fermentation process.
使用VBA创建了经典的“生命游戏”的元胞自动机模型的实现,作为该组件创建动态过程模型的应用实例。
The classical "life game" of cellular automaton is implemented under VBA environment as an application example of DynamicGC.
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