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Analysis of One-Way and Two-Way FSI Approaches to Characterise the Flow Regime and the Mechanical Behaviour during Closing Manoeuvring Operation of a Butterfly Valve

机译:蝶阀关闭操纵过程中单向和双向FSI方法分析以表征流态和机械性能

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Butterfly valves are widely used industrial piping components as on-off and flow controlling devices. The main challenge in the design process of this type of valves is the correct dimensioning to ensure proper mechanical performance as well as to minimise flow losses that affect the efficiency of the system. Butterfly valves are typically dimensioned in a closed position based on mechanical approaches considering uniform hydrostatic pressure, whereas the flow losses are analysed by means of CFD simulations. The main limitation of these approaches is that they do not consider either the influence of the dynamics of the manoeuvring stage or coupled phenomena. Recent works have included the influence of the flow on the mechanical behaviour for different opening angles by means of one-way FSI approach. However, these works consider steady-state flow for the selected angles, not capturing the effect of the transient flow evolution during the manoeuvring stage. Two-way FSI modelling approach could allow overcoming such limitations providing more accurate results. Nevertheless, the use of this technique is limited due to the increase in the computational cost. In the present work, the applicability of FSI one-way and two-way approaches is evaluated for the analysis of butterfly valves, showing that not considering fluid-structure coupling involves not capturing the most critical situation for the valve disc.
机译:蝶阀广泛用作开关和流量控制装置的工业管道组件。这类阀门的设计过程中的主要挑战是正确的尺寸设计,以确保适当的机械性能并最小化影响系统效率的流量损失。考虑到均匀的静水压力,通常根据机械方法在关闭位置确定蝶阀的尺寸,而通过CFD模拟分析流量损失。这些方法的主要局限性在于它们既不考虑机动阶段动力学的影响也不考虑耦合现象。最近的工作包括通过单向FSI方法对不同开度角的流动对机械性能的影响。但是,这些工作考虑了选定角度的稳态流动,没有捕获机动阶段瞬态流动演变的影响。双向FSI建模方法可以克服这些限制,从而提供更准确的结果。然而,由于计算成本的增加,限制了该技术的使用。在目前的工作中,评估了FSI单向和双向方法在蝶形阀分析中的适用性,表明不考虑流体-结构耦合就不会捕获阀盘的最关键情况。

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