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Inverse design of glass forming process simulation using an optimization technique and distributed computing

机译:使用优化技术和分布式计算的玻璃成型过程仿真逆设计

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In this paper, an inverse problem of heat transfer in the glass forming process is studied to determine a number of unknown heat transfer coefficients. An analysis program for transient heat conduction is developed to simulate the forming and cooling processes. The analysis involves the contact and separation of glass and molds and it is repeated until the process reaches a periodic state. Temperature measurements are taken at several available times and spatial positions of glass and molds during the forming operation. Heat removal by the cooling water from the plunger is also recorded. An optimization problem is formulated to determine the heat transfer coefficients that minimize the difference between the measured data and the analysis results. Significant time savings are achieved in computing finite difference-based sensitivity during the optimization by employing a distributed computing techniques over a cluster of computers. The analysis results of the optimum heat transfer coefficients are found to agree well with the measured data.
机译:本文研究了玻璃成形过程中的传热问题,以确定许多未知的传热系数。开发了用于瞬态热传导的分析程序,以模拟成形和冷却过程。该分析涉及玻璃与模具的接触和分离,并重复进行直到过程达到周期性状态为止。在成型操作过程中,在玻璃和模具的几个可用时间和空间位置进行温度测量。还记录了冷却水从柱塞排出的热量。制定了一个优化问题来确定将测量数据与分析结果之间的差异最小化的传热系数。通过在计算机集群上采用分布式计算技术,在优化过程中计算基于有限差分的灵敏度可节省大量时间。最佳传热系数的分析结果与实测数据吻合良好。

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