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Relevance of Free Jet Model for Soil Erosion by Impinging Jets

机译:射流对土壤侵蚀的自由射流模型的相关性

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The surface erosion of soil samples caused by an impinging jet can be analyzed using the jet erosion test (JET), a standard experimental test to characterize the erosion resistance of soils. This paper specifically addresses the flow characteristics of a laminar impinging jet over the irregular surface of granular beds to discuss the pertinence and relevance of commonly used empirical estimations based on a self-similar model of a free jet. The JET is here investigated at the microscale with a coupled fluid-particle flow numerical model featuring the lattice Boltzmann method (LBM) for the fluid phase combined with the discrete element method (DEM) for the mechanical behavior of the solid particles. The hydrodynamics of a laminar plane free jet are confronted with the results from a parametric study of jet impingement, both on solid smooth and fixed granular surfaces, that take into account variations in particle size, distance from jet origin, and jet Reynolds number. The flow characteristics at the bed surface are here quantified, including the maximal values in tangential velocity and wall shear stress, which can be regarded as the major cause of particle detachments under hydrodynamic solicitation. It is shown that the maximal velocity at the impinged surface can be described by the free jet self-similar model, provided that a simple empirical coefficient is introduced. Further, an expression is proposed for the maximal shear stress in laminar conditions, including a Blasius-like friction coefficient that is inversely proportional to the square root of the jet Reynolds number. To conclude, finally, the JET erosion of different cohesionless granular samples is analyzed, confirming that the threshold condition at the onset of granular motion is consistent with the Shields diagram and in close agreement with previous experimental results.
机译:可以使用射流侵蚀试验(JET)来分析由撞击射流引起的土壤样品的表面侵蚀,该试验是表征土壤抗侵蚀性的标准实验测试。本文专门讨论了层状冲击射流在颗粒床不规则表面上的流动特性,以讨论基于自由射流的自相似模型的常用经验估算的相关性和相关性。本文在微观尺度上对JET进行了研究,并采用了耦合流体-颗粒流数值模型,该模型具有用于流体相的格子Boltzmann方法(LBM)和用于固体颗粒力学性能的离散元素方法(DEM)。层流平面自由射流的流体力学与固体固体和固定颗粒表面上射流冲击的参数研究结果相面对,该研究考虑了颗粒大小,与射流起源的距离以及射流雷诺数的变化。在此,对床表面的流动特性进行了量化,包括切向速度和壁切应力的最大值,这可以认为是流体动力作用下颗粒脱离的主要原因。结果表明,只要引入一个简单的经验系数,就可以用自由射流自相似模型描述撞击表面的最大速度。此外,提出了层流条件下最大剪切应力的表达式,其中包括与射流雷诺数的平方根成反比的Blasius型摩擦系数。总而言之,最后,对不同无粘性颗粒样品的JET侵蚀进行了分析,确认颗粒运动开始时的阈值条件与Shields图一致,并且与先前的实验结果非常吻合。

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