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APPLICATION OF OPTIMIZATION METHODS FOR SOLVING INVERSE PHASE-CHANGE PROBLEMS

机译:优化方法在解决逆相变问题中的应用

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Several optimization algorithms in conjunction with a control-volume method (for discretization) and a least-square method (for improving accuracy and stability) have been considered to solve the inverse phase-change problem for the example of the welding process. The results show that quite an accurate solution can be obtained when the sensors are placed near the interface region. The most important feature of the approach is that the liquid-solid interface as well as the temperature distribution within the solid region can be obtained from the temperature data at a number of sensors located in the solid region, without considering heat transfer and fluid flow in a molten zone. The validity of the numerical solution of the inverse problem is checked by comparing the results with direct solution of the problem. The inverse approach to phase-change problems has many potential applications that are of great technological significance. [References: 28]
机译:为了解决焊接过程中的逆相变问题,已经考虑了几种与控制量方法(用于离散化)和最小二乘法(用于提高精度和稳定性)相结合的优化算法。结果表明,当传感器放置在界面区域附近时,可以获得非常准确的解决方案。该方法的最重要特征是,可以从位于固体区域中的多个传感器的温度数据获得液体-固体界面以及固体区域内的温度分布,而无需考虑传热和流体流动。熔融区。通过将结果与问题的直接解进行比较,可以检验反问题的数值解的有效性。解决相变问题的逆方法具有许多潜在的应用,这些技术具有重大的技术意义。 [参考:28]

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