论文标题
解决逆向不稳定的传热问题的新方法,即估计连续铸造模具中边界热通量
Novel Methodologies for Solving the Inverse Unsteady Heat Transfer Problem of Estimating the Boundary Heat Flux in Continuous Casting Molds
论文作者
论文摘要
在这项工作中,我们研究了连续铸造模具中瞬态霉菌热通量的估计,因为霉菌板中的一些热电偶测量值。从数学上讲,我们可以将这个问题视为对域内部内部观测的诺伊曼边界条件的估计。我们在确定性的逆问题设置中对其进行表达。引入工业问题后,我们提出了模具热模型和相关假设。然后,我们根据温度测量值的顺序性,在确定性反问题设置中制定边界热通量估计问题。我们考虑了反问题的不同表述。对于每个人,我们开发了利用热通量的空间参数化和模型模型线性的新型直接方法。我们构建了这些方法,要将这些方法分为一个计算昂贵的离线阶段,该阶段可以在过程启动之前计算,并在铸造过程中执行更便宜的在线阶段。总而言之,我们在两个基准情况下测试了所提出的方法的性能。
In this work, we investigate the estimation of the transient mold-slab heat flux in continuous casting molds given some thermocouples measurements in the mold plates. Mathematically, we can see this problem as the estimation of a Neumann boundary condition given pointwise state observations in the interior of the domain. We formulate it in a deterministic inverse problem setting. After introducing the industrial problem, we present the mold thermal model and related assumptions. Then, we formulate the boundary heat flux estimation problem in a deterministic inverse problem setting using a sequential approach according to the sequentiality of the temperature measurements. We consider different formulations of the inverse problem. For each one, we develop novel direct methodologies exploiting a space parameterization of the heat flux and the linearity of the mold model. We construct these methods to be divided into a computationally expensive offline phase that can be computed before the process starts, and a cheaper online phase to be performed during the casting process. To conclude, we test the performance of the proposed methods in two benchmark cases.