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Modeling refractory concrete lining of fluid catalytic cracking units of oil refineries

机译:炼油厂流体催化裂解装置造型耐火混凝土衬砌

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This work presents a numerical modeling procedure to simulate the refractory concrete lining in fluid catalytic cracking units of oil refineries. The model includes the simulation of the anchors that reinforce the contact between the refractory concrete and the steel casing. For this purpose, the constitutive relations of an interface finite element are set to values that represent the homogenized behavior of the anchored interface. The parameters of this constitutive relation can be obtained by experimental tests. The model includes also multi-surface plasticity, in order to represent the behavior of the refractory concrete lining Since the complexity of real case applications leads to high computational costs, the models presented here were implemented in a high-performance parallelized finite element platform. A case study representing a riser similar to the ones used by the refinery industry demonstrates the potential of the model.
机译:该工作提出了一种数值建模程序,用于模拟炼油厂流体催化裂化单元中的耐火混凝土衬里。 该模型包括锚固锚,该锚固件加强耐火混凝土和钢壳体之间的接触。 为此目的,接口有限元的本构关系被设置为表示锚定接口的均质行为的值。 该本构体关系的参数可以通过实验测试获得。 该模型还包括多表面可塑性,以表示耐火混凝土衬里的行为,因为实例应用的复杂性导致高计算成本,这里呈现的模型在高性能并行有限元平台中实现。 代表炼油厂业使用类似于炼油厂业使用的案例研究表明了模型的潜力。

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