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NUMERICAL SOLUTION OF THE PRESSING DEVICES SHAPE OPTIMIZATION PROBLEM IN THE GLASS INDUSTRY

机译:玻璃行业中压力设备形状优化问题的数值解

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In this contribution, we present the problem of shape optimization of the plunger cooling which comes from the forming process in the glass industry. We look for a shape of the inner surface of the insulation barrier located in the plunger cavity so as to achieve a constant predetermined temperature on the outward surface of the plunger. A rotationally symmetric system, composed of the mould, the glass piece, the plunger, the insulation barrier and the plunger cavity, is considered. The state problem is given as a multiphysics problem where solidifying molten glass is cooled from the inside by water flowing through the plunger cavity and from the outside by the environment surrounding the mould.The cost functional is defined as the squared Lr2 norm of the difference between a prescribed constant and the temperature on the outward boundary of the plunger. The temperature distribution is controlled by changing the insulation barrier wall thickness.The numerical results of the optimization to the required target temperature 800 ?C of the outward plunger surface together with the distribution of temperatures along the interface between the plunger and the glass piece before, during and after the optimization process are presented.
机译:在此贡献中,我们提出了来自玻璃行业成型过程的柱塞冷却的形状优化问题。我们寻找位于柱塞腔中的绝缘屏障的内表面的形状,以便在柱塞的外表面上获得恒定的预定温度。考虑了一个由模具,玻璃块,柱塞,绝缘屏障和柱塞腔组成的旋转对称系统。状态问题是由多物理场问题引起的,其中凝固的熔融玻璃由流过柱塞腔的水从内部冷却,由模具周围的环境从外部冷却。成本函数定义为Lr2方差的平方规定的常数和柱塞向外边界上的温度。通过改变绝缘壁的壁厚来控制温度分布。优化后的数值结果为向外柱塞表面所需的目标温度800°C,以及沿柱塞和玻璃碎片之间的界面之前的温度分布,介绍了优化过程中和优化后的过程。

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