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新型结构缝式漏斗中颗粒流动的数值研究,以避免颗粒堵塞。

Numerical study of granular flow in a slit funnel with a novel structure to avoid particle clogging.

机构信息

Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS One. 2023 Jun 2;18(6):e0286591. doi: 10.1371/journal.pone.0286591. eCollection 2023.

Abstract

To solve the problem of particle clogging in slit funnels and to obtain a stable discharge flow rate, we proposed a new funnel structure, namely the slit baffle funnel. We conducted a systematic investigation using the discrete element method (DEM) to study the effects of funnel half-angle θ, outlet width W, and baffle height H on flow rate and flow pattern. We found that the proposed structure could effectively avoid particle clogging and guarantee a continuous and stable flow rate with small outlet width. Under the condition of H >3 d, a bigger flow rate was obtained at a smaller funnel half-angle. This new funnel structure could be applied to solve clogging problems associated with granular matter in the slit geometry in mining, agriculture, food, and pharmaceuticals.

摘要

为了解决狭缝漏斗中颗粒堵塞的问题,并获得稳定的出料流量,我们提出了一种新的漏斗结构,即狭缝挡板漏斗。我们使用离散元法(DEM)进行了系统的研究,以研究漏斗半角θ、出口宽度 W 和挡板高度 H 对流量和流动模式的影响。我们发现,所提出的结构可以有效地避免颗粒堵塞,并保证在较小的出口宽度下连续稳定的流量。在 H >3d 的条件下,较小的漏斗半角可以获得更大的流量。这种新的漏斗结构可应用于解决采矿、农业、食品和制药等领域中狭缝几何形状中与颗粒物质相关的堵塞问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/310e/10237442/e45481800207/pone.0286591.g001.jpg

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