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Influence of core box vents distribution on flow dynamics of core shooting process based on experiment and numerical simulation

机译:基于实验和数值模拟的岩心箱通风孔分布对射芯过程流动动力学的影响

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Core shooting process plays a decisive role in the quality of sand cores, and core box vents distribution is one of the most important factor determining the effectiveness of core shooting process. In this paper, the influence of core box vents distribution on the flow dynamics of core shooting process was investigated based on in situ experimental observations with transparent core box, high-speed camera and pressure measuring system. Attention was focused on the variation of both the flow behavior of sand and pressure curves due to different vents distribution. Taking both kinetic and frictional stress into account, a kinetic-frictional constitutive model was established to describe the internal momentum transfer in the solid phase. Two-fluid model (TFM) simulation was then performed and good agreement was achieved between the experimental and simulated results on both the flow behavior of sand and the pressure curves. It was found that vents distribution has direct effect on the pressure difference of different locations in the core box, which determines the buoyancy force exerting on the sand particles and significantly influences the filling process of core sand.
机译:射芯过程对砂芯的质量起着决定性的作用,岩心箱孔的分布是决定射芯过程有效性的最重要因素之一。本文基于透明芯盒,高速摄像头和压力测量系统的现场实验观察,研究了芯盒孔口分布对射芯过程流动动力学的影响。由于通风口分布的不同,注意力集中在沙子流动特性和压力曲线的变化上。同时考虑了动应力和摩擦应力,建立了一个动摩擦本构模型来描述固相内部的动量传递。然后进行了双流体模型(TFM)的模拟,并且在实验结果和模拟结果之间在砂的流动特性和压力曲线上都取得了很好的一致性。研究发现,孔口分布对芯箱内不同位置的压差有直接影响,决定了作用在砂粒上的浮力,并显着影响芯砂的填充过程。

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