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Response surface strategies in constructing statistical bubble flow models for the development of a novel bubble column simulation approach

机译:响应面策略在构建统计气泡流模型中用于开发新型气泡塔模拟方法

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Bubble columns represent a substantial contribution to chemical industrial equipment and due to their complex hydrodynamics are difficult and computationally expensive to simulate. A model of the flow structure around a single bubble is required for the development of a computationally efficient alterna tive model. The flow structure data obtained from CFD is highly non-linear, which lends itself to a Design and Analysis of Computer Experiments (DACE) approach. The situation differs from conventional DACE applications since high resolution data is summarized, which allows different sampling criteria, corre lation functions and optimization criteria to be evaluated in an assessable manner. A modified powered exponential correlation function is introduced, which in conjunction with a gradient based space-filling design resulted in an averaged 8 times smaller mean squared error compared to other correlation design combinations. Furthermore, sequentially fitting the data is shown to produce the best overall fits, when used in combination with space-filling designs.
机译:鼓泡塔代表了对化学工业设备的重大贡献,并且由于其复杂的流体动力学,因此难以模拟且计算量巨大。开发计算效率高的替代模型需要围绕单个气泡的流动结构模型。从CFD获得的流动结构数据是高度非线性的,这有助于进行计算机实验的设计和分析(DACE)方法。这种情况与常规DACE应用程序不同,因为汇总了高分辨率数据,从而可以以可评估的方式评估不同的采样标准,相关函数和优化标准。引入了改进的幂指数相关函数,该函数与基于梯度的空间填充设计相结合,与其他相关设计组合相比,平均均方误差小8倍。此外,当与空间填充设计结合使用时,显示出按顺序拟合的数据可以产生最佳的总体拟合。

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