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Effect of the inlet duct angle on the performance of cyclone separators

机译:入口导管角对旋风分离器分离器性能的影响

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This study analyzed the effect of the angle of the inlet duct bend on the separation efficiency and pressure drop in cyclone separators. The design of the inlet to the cyclone chamber is a significant parameter that has been analyzed to date only in a few research studies. Following the literature review of this subject, 20 bend angles (10 in the vertical plane and 10 in the horizontal plane) were proposed and analyzed by means of the computational fluid dynamics code Fluent V18.2. As a closure model to the Reynolds-averaged Navier-Stokes equation, the Reynolds stress model was used, as it solves the transport equations for Reynold's stresses and the dissipation rate - this model is capable of accounting highly curved streamlines prevailing inside the cyclone separators. The discrete phase model with one-way coupling was used, in which the trajectory of solid particles was calculated based on Lagrangian formulation. Conclusive results indicate that the bend angle (in both planes) marginally affects the collection efficiency (the maximum difference being 3.1%), whereas its effect on Eu is highly significant (the difference being 5700%) - all the comparisons were made with respect to the base variant at 0 degrees angle.
机译:该研究分析了入口管道弯曲角度对旋风分离器分离器中的分离效率和压降的影响。入口到旋风室的入口设计是仅在几个研究研究中进行了分析的重要参数。在该拍摄对象的文献回顾之后,提出了通过计算流体动力学代码流畅的V18.2提出并分析了20个弯曲角度(在水平平面中的垂直平面和10中的10)。作为雷诺平均的捕获模型的封闭模型,使用雷诺应力模型,因为它解决了雷诺的应力和耗散速率的传输方程 - 该模型能够考虑旋风分离器内部的高度弯曲的流线。使用具有单向耦合的离散相模型,其中基于拉格朗日配方计算固体颗粒的轨迹。结论性结果表明,弯曲角度(两个平面)略微影响收集效率(最大差异为3.1%),而其对欧盟的影响非常重要(差异为5700%) - 所有的比较都是关于基本变型在0度角。

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