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CFD simulation of water lubricated conical hydrodynamic journal bearings

机译:水润滑锥形流体动压滑动轴承的CFD模拟

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In concern with the environmental impact of lubricating fluids, water-lubricated bearings have been preferred and recommended instead of conventional oil-lubricated bearingsin food and pharmaceutical industries.Conical hydrodynamic journal bearing with having the ability to support the load in radial as well as in axial direction is beneficial to use in rotating machines, i.e. turbine, compressor etc. Performance of the conical hydrodynamic journal bearing depends on many operational parameters such as aspect ratio, semi cone angle, clearance ratio, eccentricity ratio and speed. At present Computational Fluid Dynamics (CFD) models are used as an alternative to experimental methods in research for overcoming the cost and operational difficulties.In this study conical hydrodynamic journal . bearing have been investigated for aspect ratio (λ=0.5, 0.8,1.0), semi cone angles (λ= 0°, 5°, 10°, 20°, 30°), clearance ratio (G=0.001, 0.002) and speed (N = 2000, 5000, 10000 rpm) by using Ansys Fluent software. Fluid film pressure is one of the key operating parameters for describing the operating conditions of hydrodynamic journal bearings. Load carrying capacity, fluid film thickness and stability of bearing is evaluated based on pressure developed in clearance space of hearingwith rotation of journal.lt was found that numerically simulated results of water lubricated conical journal bearing are influenced by the operational parameters of bearing. Present workis useful indesign ofcompact size conical hydrodynamic journal bearingfor combined radial and axial load application to replace two separate bearings i.e. journal and thrust.
机译:考虑到润滑液对环境的影响,在食品和制药行业中,水润滑轴承已被推荐并推荐使用,而不是传统的油润滑轴承。圆锥形流体动压轴颈轴承能够承受径向和轴向载荷方向有利于在旋转机械(例如涡轮机,压缩机等)中使用。圆锥形流体动压轴颈轴承的性能取决于许多运行参数,例如长宽比,半圆锥角,游隙比,偏心率和速度。目前,计算流体动力学(CFD)模型已被用作研究方法的替代方法,以克服成本和操作难题。研究了轴承的长宽比(λ= 0.5,0.8,1.0),半锥角(λ= 0°,5°,10°,20°,30°),游隙比(G = 0.001、0.002)和速度(N = 2000、5000、10000 rpm),请使用Ansys Fluent软件。液膜压力是描述流体动力轴颈轴承工作条件的关键工作参数之一。根据轴颈旋转时在听觉间隙中产生的压力,对轴承的承载能力,液膜厚度和稳定性进行了评估。发现,水润滑圆锥形轴颈轴承的数值模拟结果受轴承运行参数的影响。目前的工作对于紧凑型圆锥形流体动压轴颈轴承的设计很有用,可用于组合径向和轴向载荷,以代替两个单独的轴承,即轴颈和推力。

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