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首页> 外文期刊>Journal of Thermal Engineering >Numerical Investigations on Flow Characteristics of Sand-Water Slurry Through Horizontal P?pel?ne Us?ng Computat?onal Flu?d Dynamics
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Numerical Investigations on Flow Characteristics of Sand-Water Slurry Through Horizontal P?pel?ne Us?ng Computat?onal Flu?d Dynamics

机译:通过水平p?keys的砂水浆流特性的数值研究?Ne US?Ng Computat?泛滥流感?D动态

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The study presents the numerical computational fluid dynamics (CFD) analysis of sand-water slurry flow with different sand particle sizes viz. 90μm, 125μm, 150μm, 200μm and 270μm having specific gravity of 2.65 through a 103 mm diameter, 5.5 m long horizontal pipeline for a high flow velocity of 5.4 m/s at various solid volumetric concentrations viz. 10%, 20%, 30%, 36% and 40%. Granular version of Eulerian two-phase model with dispersed particles along with RNG –epsilon approach has been utilized. Non-uniform structured mesh with a refinement near the wall boundary has been selected for discretizing the computational flow domain while NavierStokes governing equations are solved in FLUENT 14.0. The effects of the size of sand particles and solid volumetric concentrations on territorial concentration distributions, particle flow velocity and pressure drops have been studied and analyzed. Generalized mathematical correlation has been developed from the simulated results for calculating the consequences of the size of solid particles and solid volumetric concentration on pressure drop analytically. The simulated outcomes of pressure drop are validated with the experimental results. These outcomes will be very helpful in the setup of an experimental model for sand/water slurry flow pipelines in many industries viz. mining, construction, power generation etc.
机译:该研究提出了用不同的砂粒子尺寸VIZ对砂水浆液流动的数值计算流体动力学(CFD)分析。 90μm,125μm,150μm,200μm和270μm,具有2.65直径的比重,直径为5.5米的卧式管线,用于各种固体体积浓度的高流速为5.4 m / s。 10%,20%,30%,36%和40%。已经利用了具有分散颗粒的欧拉两相模型的粒度,以及RNG -Epsilon方法。已经选择了具有靠近墙边界附近的细化的非均匀结构网格,用于将计算流域分离,而导航方程在流利的14.0中求解。研究并分析了砂颗粒尺寸和固体体积浓度对地域浓度分布,颗粒流速和压降的影响。从模拟结果开发了广义的数学相关性,用于计算实体颗粒尺寸和固体体积浓度对压降分析的实体体积浓度的后果。通过实验结果验证了压降的模拟结果。这些结果将在许多行业Qiz中的沙/水泥浆流水管道的实验模型设置。采矿,建筑,发电等

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