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  • 劉曉輝, 吳愛祥, 王洪江, 焦華喆, 李輝, 嚴慶文. 深井礦山充填滿管輸送理論及應用[J]. 工程科學學報, 2013, 35(9): 1113-1118. DOI: 10.13374/j.issn1001-053x.2013.09.021
    引用本文: 劉曉輝, 吳愛祥, 王洪江, 焦華喆, 李輝, 嚴慶文. 深井礦山充填滿管輸送理論及應用[J]. 工程科學學報, 2013, 35(9): 1113-1118. DOI: 10.13374/j.issn1001-053x.2013.09.021
    LIU Xiao-hui, WU Ai-xiang, WANG Hong-jiang, JIAO Hua-zhe, LI Hui, YAN Qing-wen. Full-flow transport theory and its application in deep mine backfilling[J]. Chinese Journal of Engineering, 2013, 35(9): 1113-1118. DOI: 10.13374/j.issn1001-053x.2013.09.021
    Citation: LIU Xiao-hui, WU Ai-xiang, WANG Hong-jiang, JIAO Hua-zhe, LI Hui, YAN Qing-wen. Full-flow transport theory and its application in deep mine backfilling[J]. Chinese Journal of Engineering, 2013, 35(9): 1113-1118. DOI: 10.13374/j.issn1001-053x.2013.09.021

    深井礦山充填滿管輸送理論及應用

    Full-flow transport theory and its application in deep mine backfilling

    • 摘要: 為了提高深井礦山充填管道的滿管狀態,提出以滿管率作為系統滿管狀態定量描述指標,基于水力學輸送理論推導了滿管率的數學模型,并對其影響因素作了理論分析,明確減小管道直徑及增大系統流量是提高滿管率的最佳途徑.基于管道兩相流理論,建立了管徑、流速以及滿管率關系的數學表達式,為系統最佳輸送參數的選取提供了理論依據.對某深井礦山充填系統進行的局部改造結果顯示:將系統原φ150 mm水平管道替換為φ85 mm管道,同時增大流量至80 m3·h-1,系統滿管率為原來的6倍,有效減輕了管道磨損.

       

      Abstract: In order to improve the full-flow state of backfilling pipelines in deep mines, full-flow ratio was put forward to regard as a quantitative index to describe the full-flow state of the filling system. At the same time a mathematical model of full-flow ratio was deduced based on the hydraulic transmission theory and its influence factors were also analysed in theory by using the mathematical model. It is found that reducing the pipe diameter or increasing the slurry flow velocity is the best way to increase the full-flow ratio. On the basis of the pipe two-phase flow theory, a mathematical expression about the relationship of the pipe diameter, velocity, and full-flow ratio was also established, which provides a theoretical basis of selecting the best conveying parameters for the filling system. A local reform, replacing Ф150 mm pipes with Ф85 mm pipes and increasing the flux to 80 m3·h-1 simultaneously, was carried out in a deep mine filling system. The results show that the full-flow ratio of such system is able to be improved by 6 times and the pipe wearing can be reduced effectively.

       

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