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Cavitating Flow in a 3D Globe Valve

机译:在3D地球阀中的空化流动

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The efficiency of control valves operating with liquids is highly conditioned by the occurrence of cavitation when they undergo large pressure drops. For severe service control valves, the subsequent modification of their performance can be crucial for the safety of an installation. In this work, the solver interPhaseChange-Foam, implemented in OF v2.3, is used to characterize the flow in a globe valve, with the objective to evaluate its capability in solving cavitating flows in complex 3D geometries. An Homogeneous Equilibrium approach is adopted, and phase change is modeled using the Schnerr and Sauer cavitation model. Confrontation with experimental data is carried out in order to validate the numerical results. It is found that the solver predicts correctly the location of vapor cavities, but tends to underestimate their extension. The flow rate is correctly calculated, but in strong cavitating regimes, it is affected by the underprediction of vapor cavities. The force acting on the stem is found to be more sensitive to the computation parameters.
机译:用液体操作的控制阀的效率是通过在大压降时的发生时的高度调节。对于严苛的服务控制阀,随后的其性能修改可能对安装安全至关重要。在这项工作中,在V2.3中实施的求解器互相泡沫用于表征全球阀中的流动,其目的是评估其在复杂的3D几何形状中的空化流动中的能力。采用均匀的平衡方法,并使用Schnerr和Sauer空化模型进行建模相变。进行与实验数据的对抗以验证数值结果。结果发现,求解器正确地预测了蒸气腔的位置,但倾向于低估它们的延伸。流量正确地计算,但在强的空化方案中,它受到蒸气腔的欠压的影响。发现作用在杆上的力对计算参数更敏感。

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