With the gradual depletion of available ore at shallow depth,deep mines have been widely operated around the world and therefore need a longer distance to transport the backfill to the underground stope.In this case,t...With the gradual depletion of available ore at shallow depth,deep mines have been widely operated around the world and therefore need a longer distance to transport the backfill to the underground stope.In this case,the determination of pressure drop is more important in the pipeline transportation system design.As the pilot loop systems require a large amount of capital and manual investment,even its results are reliable,there is an urgent need to find an alternative simple and cost-saving method to determine the pressure drop.Hence,laboratory L-pipe and a pilot-loop tests were employed to study the flow properties of cemented paste backfill cured at various solid and binder content.The results indicate that the L-pipe test presented a similar trend to the loop test,but the L-pipe was characterized by higher pressure drop values for various solid and cement contents.As cement content increased beyond 0%,the paste in the L-pipe showed a slighter difference in pressure drop evolution compared to the paste in the loop-pipe.These results suggest that the simple L-pipe is a workable substitute for semi-industrial loop tests and can provide guidance for designing practical CPB pipeline systems in deep mines.展开更多
基金Project(51904055)supported by the National Natural Science Foundation of ChinaProject(N2001010)supported by the Fundamental Research Funds for the Central Universities of China。
文摘With the gradual depletion of available ore at shallow depth,deep mines have been widely operated around the world and therefore need a longer distance to transport the backfill to the underground stope.In this case,the determination of pressure drop is more important in the pipeline transportation system design.As the pilot loop systems require a large amount of capital and manual investment,even its results are reliable,there is an urgent need to find an alternative simple and cost-saving method to determine the pressure drop.Hence,laboratory L-pipe and a pilot-loop tests were employed to study the flow properties of cemented paste backfill cured at various solid and binder content.The results indicate that the L-pipe test presented a similar trend to the loop test,but the L-pipe was characterized by higher pressure drop values for various solid and cement contents.As cement content increased beyond 0%,the paste in the L-pipe showed a slighter difference in pressure drop evolution compared to the paste in the loop-pipe.These results suggest that the simple L-pipe is a workable substitute for semi-industrial loop tests and can provide guidance for designing practical CPB pipeline systems in deep mines.
文摘随着高温超导等低温技术的快速发展,脉动热管作为一种高效换热元件在液氮温区的应用逐渐受到关注。对于较长距离和冷热两端不共面的应用背景,本文利用计算流体力学(computational fluid dynamics,CFD)对脉动热管元件建立三维数值模型,并用流体体积(volume of fluid,VOF)方法模拟气液两相流。首先对绝热段长度分别为22mm、50mm和100mm的脉动热管在液氮温区的热性能进行对比研究,结果表明蒸发段和冷凝段长度不变,增加绝热段长度时,其表现出更高的热传导能力,同时潜热传热量也会增大。此外,针对绝热段长度为50mm脉动热管,分析了三种尺寸L形结构的运行特性,发现仅蒸发段水平放置,以及绝热段1/2与蒸发段一起水平放置时可成功启动;但蒸发段和绝热段全部水平放置时,管内始终处于下气上液分布状态,从而未能启动。研究结果为脉动热管在复杂环境中的应用提供了参考。