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A CFD-based Approach to Predict Explosion Overpressure: A Comparison to Current Methods

机译:基于CFD的爆炸超压预测方法:与当前方法的比较

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A CFD-based approach has been developed in this work to predict the overpressure produced during an explosion. An adiabatic exothermal reaction allows computing the explosion energy release. To validate the proposed CFD approach, overpressure predictions based on this methodology are compared with results produced with the TNO-based method. It is demonstrated that the physics adopted in our model produces satisfactory predictions in the open area. The CFD simulations were carried out in the ANSYS CFX tool. The source of energy corresponds to the one produced by a stoichiometric proportion in reactants without energy generation. The explosion analysis considered that explosion occurs geometrically as a sequence of control volumes. Thus, the explosion in a volume is assumed to occur when the maximum pressure is achieved in the previous control volume. This way, the explosion is propagated and it is shown that it is equivalent to conventional predicting methods.
机译:在这项工作中开发了一种基于CFD的方法来预测爆炸过程中产生的超压。绝热放热反应可以计算爆炸能量的释放。为了验证提出的CFD方法,将基于该方法的超压预测与基于TNO的方法产生的结果进行了比较。结果表明,我们的模型采用的物理方法在空旷地区产生了令人满意的预测。 CFD模拟是在ANSYS CFX工具中进行的。能量源对应于由化学计量的比例在反应物中产生的能量,没有能量产生。爆炸分析认为爆炸在几何上是控制体积的序列。因此,假定在先前的控制体积中达到最大压力时,就发生了体积爆炸。这样,爆炸传播并显示出它等同于常规的预测方法。

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