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CFD study of filtration process in moulded filters within a vacuum pump

机译:CFD研究真空泵内模制过滤器的过滤过程

摘要

Air/Oil filtration through filters is commonly utilised in the vacuum industry where oil lubricated pumps are used across a number of different applications such as food and packaging, industrial, pharmaceutical, R&D, forming and drying. The air/oil filters are crucial in the reduction of exhaust emissions, which, when suspended as fine particulate matter can cause great harm to the environment, climate, equipment life and public health. However, the behaviour of flow through the filters is not fully understood and much of the design and development work is based on historical know-how and experimental studies.udComputational Fluid Dynamics (CFD) is a powerful tool to understand the flow characteristics and droplet trajectory through the filters which is challenging through experimental techniques. In this study, a CFD model is developed by using the commercial ANSYS FLUENT code. Oil droplets from the pump entering the filter are treated as a discrete phase. Euler-Lagrangian frame is used to characterise the multiphase flow, K-Ɛ as a turbulence model, Rosin-Rammler distribution of oil droplets, User Defined Functions (UDF) are written for droplet injection, distribution and deposition. Various methodologies and tests were developed to obtain the required data to feed into the model and validate the data predicted by the computational model. The obtained computational data agrees well with the experimental data.
机译:通过过滤器进行空气/机油过滤通常用于真空行业,在该行业中,机油润滑泵用于许多不同的应用,例如食品和包装,工业,制药,研发,成型和干燥。空气/机油滤清器对于减少废气排放至关重要,当废气中的细颗粒物悬浮时,会严重危害环境,气候,设备寿命和公共健康。但是,尚未完全了解通过过滤器的流动特性,并且许多设计和开发工作都是基于历史知识和实验研究。 ud计算流体动力学(CFD)是了解流动特性和液滴的强大工具。通过滤波器的轨迹,这对实验技术来说是具有挑战性的。在这项研究中,使用商业化的ANSYS FLUENT代码开发了CFD模型。来自泵的进入过滤器的油滴被视为离散相。使用Euler-Lagrangian框架来表征多相流,将K-Ɛ作为湍流模型,将Rosin-Rammler液滴分布,编写用户定义函数(UDF)进行液滴注入,分布和沉积。开发了各种方法和测试来获得所需的数据以馈入模型并验证计算模型预测的数据。获得的计算数据与实验数据吻合良好。

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