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A NEW METHODOLOGY FOR EROSION PREDICTION USING EULERIAN-EULERIAN CFD MODELS

机译:使用EULERIAN-EULERIAN CFD模型进行侵蚀预测的新方法

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The erosion of a surface caused by the impact of solid particles dragged by a fluid is a serious concern in the oil&gas industry. At present, the erosion prediction is performed using algebraic erosion models which express the volume of eroded material per impact as a function of the mass of the abrasive particles as well as of fluid dynamic parameters (such as the impact velocity and the impact angle of the eroding particle) and properties of the materials involved in the process. The fluid dynamic parameters are, in turn, evaluated using Eulerian-Lagrangian CFD models which interpret the fluid phase as a continuous mean and follow the trajectories of all the particles. However, the huge computational burden makes it difficult, or even precludes, to adopt this approach in many flows of engineering interest. An innovative methodology is proposed for estimating the parameters required as input by the erosion models using computationally cheaper Eulerian-Eulerian CFD models which solve for the average properties of the ensamble of particles. The good results obtained when predicting the erosion caused the by impingement of an abrasive jet against a surface make the application of this methodology to more complex flows very promising.
机译:由流体拖曳的固体颗粒的冲击所引起的表面腐蚀是石油和天然气工业中的一个严重问题。目前,腐蚀预测是使用代数腐蚀模型执行的,该模型将每次冲击的腐蚀材料的体积表示为磨料颗粒质量以及流体动力学参数(例如冲击速度和冲击角)的函数。腐蚀颗粒)和过程中所涉及材料的特性。依次使用欧拉-拉格朗日CFD模型评估流体动力学参数,该模型将流体相解释为连续均值并遵循所有粒子的轨迹。但是,巨大的计算负担使得在许多工程兴趣流中很难甚至无法采用这种方法。提出了一种创新的方法,用于使用计算较便宜的Eulerian-Eulerian CFD模型估算侵蚀模型所需的参数,该模型可求解粒子堆积的平均性质。当预测由磨料射流撞击表面而引起的腐蚀时,获得的良好结果使得将这种方法应用于更复杂的流动非常有希望。

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