首页> 外文期刊>Journal of Sustainable Mining >CFD Simulations for the Selection of an Appropriate Blade Profile for Improving Energy Efficiency in Axial Flow Mine Ventilation Fans
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CFD Simulations for the Selection of an Appropriate Blade Profile for Improving Energy Efficiency in Axial Flow Mine Ventilation Fans

机译:CFD模拟,用于选择合适的叶片轮廓以提高轴流式矿井通风风扇的能效

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PurposeThis study focuses on one of the key design aspects of mine ventilation fans, i.e. the selection of an appropriate aerofoil blade profile for the fan blades in order to enhance the energy efficiency of axial flow mine ventilation fans, using CFD simulations.MethodsComputational simulations were performed on six selected typical aerofoil sections using CFD code ANSYS Fluent 6.3.26 at angles of attack varying from 0° to 21° at an interval of 3° and at Reynolds numberRe=3×106, and various aerodynamic parameters, viz. coefficients of lift (Cl) and drag (Cd) as a function of angle of attack (α) were determined to assess the efficiency of the aerofoils.ResultsThe study revealed that the angle of attack has a significant effect on the lift and drag coefficients and stall condition occurred at α values of 12° and 15° in most of the aerofoils. Based on the criterion of higher lift to drag ratio (Cl/Cd), a blade profile was chosen as the most efficient one for mine ventilation fans.Practical implicationsThis study forms a basis for selecting appropriate blade profiles for the axial flow fans used for ventilation in mining industry.Originality/valueThe application of an appropriate aerofoil blade profile will impart energy efficiency to the mine ventilation fans and thereby result in energy saving in mine ventilation.
机译:目的本研究着重于矿井通风风机的关键设计方面之一,即使用CFD模拟为通风机叶片选择合适的翼型叶片轮廓,以提高轴流矿井通风机的能源效率。使用CFD代码ANSYS Fluent 6.3.26在六个选定的典型翼型截面上以3°的间隔从0°到21°的迎角变化,并且雷诺数Re = 3×106,以及各种空气动力学参数,即。确定了升力(Cl)和阻力(Cd)与迎角(α)的函数关系,以评估翼型的效率。结果研究表明,迎角对升力和阻力系数以及在大多数翼型中,失速条件发生在12°和15°的α值处。基于较高的升阻比(Cl / Cd)的标准,叶片型被选为矿井通风机效率最高的叶片。实践意义本研究为为通风用轴流风机选择合适的叶片型材奠定了基础原创性/价值适当的翼型叶片轮廓的应用将为矿井通风机提高能效,从而节省矿井通风量。

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