• Volume 35 Issue 5
    Jul.  2021
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    WANG Hong-jiang, WANG Yong, WU Ai-xiang, ZHOU Bo, YANG Peng, YU Shao-feng, PENG Nai-bing. Dynamic compaction and static compaction mechanism of fine unclassified tailings[J]. Chinese Journal of Engineering, 2013, 35(5): 566-571. doi: 10.13374/j.issn1001-053x.2013.05.004
    Citation: WANG Hong-jiang, WANG Yong, WU Ai-xiang, ZHOU Bo, YANG Peng, YU Shao-feng, PENG Nai-bing. Dynamic compaction and static compaction mechanism of fine unclassified tailings[J]. Chinese Journal of Engineering, 2013, 35(5): 566-571. doi: 10.13374/j.issn1001-053x.2013.05.004

    Dynamic compaction and static compaction mechanism of fine unclassified tailings

    doi: 10.13374/j.issn1001-053x.2013.05.004
    • Received Date: 2011-12-18
    • Compassion experiments of tailings were carried out with a self-made deep cone model, and the compaction effects were investigated under the conditions of dynamic compaction and static compaction. When the rotational speed is 0.05 to 0.80 r·min-1, the limit mass fraction of tailings is in the range of 67.41% to 70.73%; under the same conditions, it is only 55.82% for static compaction. Dynamic compaction has a higher compaction because excess water can move up through the water-guiding rod, but static compaction mainly relies on the gravity. The extrusion process of tailings can be simulated by theoretical extrusion models:the static compaction behavior corresponds to a simple spatial structure, while a cone structure for the dynamic compaction behavior. The theoretical value of unit sedimentation height calculated by the two kinds of models is 29.32%, and the test result is 28.81%, 0.51% lower than the theoretical value.

       

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