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首页> 外文期刊>Journal of loss prevention in the process industries >Explosion pressure prediction via polynomial mathematical correlation based on advanced CFD Modelling
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Explosion pressure prediction via polynomial mathematical correlation based on advanced CFD Modelling

机译:基于高级CFD建模的多项式数学相关性爆炸压力预测

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Computational Fluid Dynamics CFD can be used as a powerful tool supporting engineers throughout the steps of the design. The combination of CFD with response surface methodology can play an important role in such cases. During the conceptual engineering design phase, a quick response is always a matter of urgency. During this phase even a sketch of the geometrical model is rare. Therefore, the utilisation of typical response surface developed for congested and confined environment rather than CFD can be an important tool to help the decision making process, when the geometrical model is not available, provided that similarities can be considered when taking into account the characteristic of the geometry in which the response surface was developed. The present work investigates how three different types of response surfaces behave when predicting overpressure in accidental scenarios based on CFD input. First order, partial second order and complete second order polynomial expressions are investigated. The predicted results are compared with CFD findings for a classical offshore experiment conducted by British Gas on behalf of Mobil and good agreement is observed for higher order response surfaces. The higher order response surface calculations are also compared with CFD calculations for a typical offshore module and good agreement is also observed.
机译:计算流体动力学CFD可以用作功能强大的工具,在整个设计步骤中为工程师提供支持。在这种情况下,CFD与响应面方法的结合可以发挥重要作用。在概念工程设计阶段,快速响应始终是当务之急。在此阶段,甚至很少有几何模型的草图。因此,在几何模型不可用的情况下,利用为拥挤和密闭环境开发的典型响应曲面而不是CFD可以是帮助决策过程的重要工具,前提是在考虑到模型的特性时可以考虑相似性。响应面所形成的几何形状。本工作调查了基于CFD输入预测意外情况下的超压时三种不同类型的响应面的行为。研究了一阶,偏二阶和完全二阶多项式表达式。将预测结果与英国天然气公司代表美孚公司进行的经典海上实验的CFD结果进行了比较,观察到较高阶响应面的一致性。还将高阶响应面计算与典型海上模块的CFD计算进行了比较,并观察到了良好的一致性。

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