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Numerical simulation of the performance of a snow fence with airfoil snow plates by FVM

机译:基于FVM的机翼防雪板挡雪板性能的数值模拟。

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The aim of this work is to analyze the efficiency of a snow fence with airfoil snow plates to avoid the snowdrift formation, to improve visibility and to prevent blowing snow disasters on highways and railways. In order to attain this objective, it is necessary to solve particle transport equations along with the turbulent fluid flow equations since there are two phases: solid phase (snow particles) and fluid phase (air). In the first place, the turbulent flow is modelled by solving the Reynolds-averaged Navier-Stokes (RANS) equations for incompressible viscous flows through the finite volume method (RIM) and then, once the flow velocity field has been determined, representative particles are tracked using the Lagrangian approach. Within the particle transport models, we have used a particle transport model termed as Lagrangian particle tracking model, where particulates are tracked through the flow in a Lagrangian way. The full particulate phase is modelled by just a sample of about 15,000 individual particles. The tracking is carried out by forming a set of ordinary differential equations in time for each particle, consisting of equations for position and velocity. These equations are then integrated using a simple integration method to calculate the behaviour of the particles as they traverse the flow domain. Finally, the conclusions of this work are exposed.
机译:这项工作的目的是分析带有翼型防雪板的防雪栅的效率,从而避免积雪的形成,提高能见度并防止高速公路和铁路上吹雪灾害。为了实现该目的,由于存在两个相:固相(雪颗粒)和流体相(空气),因此必须将颗粒传输方程与湍流方程一起求解。首先,通过有限体积法(RIM)求解不可压缩粘性流的雷诺平均Navier-Stokes(RANS)方程来对湍流建模,然后,一旦确定了流速场,就可以对具有代表性的粒子进行求解。使用拉格朗日方法进行跟踪。在粒子传输模型中,我们使用了称为拉格朗日粒子跟踪模型的粒子传输模型,该模型以拉格朗日方式跟踪流中的粒子。仅约15,000个单个颗粒的样本即可对整个颗粒相进行建模。通过及时为每个粒子形成一组常微分方程来进行跟踪,该方程由位置和速度方程组成。然后,使用简单的积分方法对这些方程式进行积分,以计算粒子在流过流动域时的行为。最后,揭露了这项工作的结论。

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