基于CFD-DEM耦合的网式过滤器水沙运动数值模拟
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国家自然科学基金项目(51379024、51769009)和石河子大学高层次人才科研启动资金专项(RCZX201434)


Numerical Simulation of Water and Sediment Movement in Screen FilterBased on Coupled CFD-DEM
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    摘要:

    过滤器内部的水沙运动复杂且多变,初始状态下沙粒分布的不均导致滤芯产生局部堵塞,改变了水流流态并进一步影响后续沙粒运动和分布。本文以CFD-DEM(Computational fluid dynamics, CFD;Discrete element method,DEM)耦合模拟Y型网式过滤器内部流场变化与沙粒运动及分布,直观地反映了滤芯对水流的流动阻力特性与对沙粒运动分布影响。结果表明,过滤器内部存在明显的回流区、旋涡区及滞流区,导致各过滤面流速不均,出口一侧流速大,进口一侧流速小,两者相差39%;随着时间的变化,过滤器内流场变化明显,沙粒堆积依次出现在出口侧下端面、出口侧上端面、进口侧下端面、进口侧上端面上,最终布满整个滤芯;在滤芯的4个过滤面中,出口侧上端面流速大而沙粒堆积最少,进口侧上端面流速小而沙粒堆积最多,由此可见出口侧上端面具有更好的过滤性能,可适当提高该处过水面积,以提高过滤器过滤效率。

    Abstract:

    Water and sediment movement in filter is complex and changeable. In the beginning, local blockage on filter element caused by non-uniform distribution of sediment affects flow distribution which will change tracks of follow-up sediment. Using CFD-DEM(computational fluid dynamics, CFD;discrete element method,DEM) method to simulate flow field and sediment distribution in Y-type screen filter, the resistance characteristics of filter and its influence on the movement and distribution of sediment were directly reflected. Results showed that the obvious backflow, vortex and viscous flow in the whole flow field led the uneven flow rate which was higher in outlet area and lower in inlet area, with a difference of 39%. Filter element was responsible for 90% of the total pressure loss. Flow condition was changed significantly with time, while sediment deposition appeared in the order of outlet under area, outlet upper area, inlet under area, inlet upper area and finally blocked the whole filter element. Among the four face areas in the filter element, sediment deposition was the least in outlet upper area which was at high flow rate while most in inlet upper area which was at low flow rate. So appropriately raising the flow section of outlet upper area with a better performance can improve the filtration efficiency.

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喻黎明,徐洲,杨具瑞,范文波,李娜,龙俊.基于CFD-DEM耦合的网式过滤器水沙运动数值模拟[J].农业机械学报,2018,49(3):303-308. YU Liming, XU Zhou, YANG Jurui, FAN Wenbo, LI Na, LONG Jun. Numerical Simulation of Water and Sediment Movement in Screen FilterBased on Coupled CFD-DEM[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(3):303-308.

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  • 收稿日期:2017-08-31
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  • 在线发布日期: 2018-03-10
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