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Application of Fuzzy Set Theory to Quantitative Analysis of Correctness of the Mathematical Model Based on the ADI Method during Solidification

机译:模糊集理论在基于ADI的凝固过程数学模型正确性定量分析中的应用

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The explicit finite difference (EFD) method is used to calculate the casting temperature field during the solidification process. Because of its limited time step, the computational efficiency of the EFD method is lower than that of the alternating direction implicit (ADI) method. A model based on the equivalent specific heat method and the ADI method that improves computational efficiency is established. The error of temperature field simulation comes from model simplification, the acceptable hypotheses and calculation errors caused by different time steps, and the different mesh numbers that are involved in the process of numerical simulation. This paper quantitatively analyzes the degree of similarity between simulated and experimental results by the hamming distance (HD). For a thick-walled position, the time step influences the simulation results of the temperature field and the number of casting meshes has little influence on the simulation results of temperature field. For a thin-walled position, the time step has minimal influence on the simulation results of the temperature field and the number of casting meshes has a larger influence on the simulation results of temperature field.
机译:显式有限差分(EFD)方法用于计算凝固过程中的铸造温度场。由于时间步长有限,EFD方法的计算效率低于交替方向隐式(ADI)方法的计算效率。建立了基于当量比热法和提高计算效率的ADI方法的模型。温度场模拟的误差来自模型简化,可接受的假设和由不同的时间步长引起的计算误差,以及数值模拟过程中涉及的不同网格数。本文通过汉明距离(HD)定量分析了模拟结果与实验结果之间的相似程度。对于厚壁位置,时间步长会影响温度场的模拟结果,而浇铸网孔的数量对温度场的模拟结果影响很小。对于薄壁位置,时间步长对温度场的模拟结果影响最小,而浇铸网孔的数量对温度场的模拟结果影响较大。

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