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4篇 您的检索式:作者名="Qu Qingdong"
    题名 作者 年代 出处 被引量
1Constrained large-eddy simulation and detached eddy simulation of flow past a commercial aircraft at 14 degrees angle of attack显示文摘With the development of computational power and numerical algorithms,computational fluid dynamics(CFD) has become an important strategy for the design of aircraft,which significantly reduces the reliance on wind-tunnel and flight tests.In this paper,we conducted a numerical investigation on the flow past a full commercial aircraft at Mach number 0.2 and 14 degrees angle of attack by means of Reynolds-averaged Navier-Stokes(RANS),detached-eddy simulation(DES) and our newly developed constrained large-eddy simulation(CLES).The objective of this paper is to study the capability of these models in simulating turbulent flows.To our knowledge,this is the first large-eddy simulation method for full commercial aircraft simulation.The results show that the CLES can predict the mean statistical quantities well,qualitatively consistent with traditional methods,and can capture more small-scale structures near the surface of the aircraft with massive separations.Our study demonstrates that CLES is a promising alternative for simulating real engineering turbulent flows.CHEN ShiYi CHEN YingChun XIA ZhenHua QU Kun SHI YiPeng XIAO ZuoLi LIU QiuHong CAI QingDong LIU Feng LEE Cunbiao ZHANG RiKui CAI JinSheng 2013Science China(Physics,Mechanics & Astronomy)2013,56,2:14
2基于关键层运动的邻近层卸压瓦斯抽采优化设计方法显示文摘瓦斯抽采巷(孔)的合理布置是实现邻近层卸压瓦斯精准抽采的基本前提。在深入分析覆岩关键层运动对邻近层瓦斯卸压运移控制机制的基础上,提出了基于关键层运动的邻近层卸压瓦斯抽采优化设计新方法。研究结果表明:邻近层卸压瓦斯抽采巷(孔)的合理布置层位为垮落带边界至导气裂隙带最大发育高度之间的空间范围,导气裂隙带最大发育高度可按基于关键层位置的导水裂隙带高度预计方法来确定;邻近层卸压瓦斯抽采巷(孔)的合理层面位置为导气裂隙带内的“O”形圈裂隙区中部,“O”形圈裂隙区宽度可按其与煤层采高、覆岩关键层结构及采深的函数关系式进行预计。该方法在阳泉矿区邻近层卸压瓦斯实践中得到了应用和验证,邻近层卸压瓦斯抽采率稳定在92%,能较好地指导煤层群开采条件下煤与瓦斯共采实践。胡国忠 许家林 秦伟 QU Qingdong 彭小亚 李康 2021煤炭科学技术2021,49,5:10
3Mining-induced strata stress changes, fractures and gas flow dynamics in multi-seam longwall mining显示文摘Hua Guo Liang Yuan Baotang Shen Qingdong Qu Junhua Xue 2012International Journal of Rock Mechanics and Mining Sciences2012,,:1
4CFD simulations for longwall gas drainage design optimisation显示文摘Computational fluid dynamics(CFD) simulation is an effective approach to develop and optimise gas drainage design for underground longwall coal mining. As part of the project supported by the Australian Government Coal Mining Abatement Technology Support Package(CMATSP), threedimensional CFD simulations were conducted to test and optimise a conceptual design which proposes using horizontal boreholes to replace vertical boreholes at an underground coal mine in Australia.Drainage performance between a vertical borehole and a horizontal borehole was first carried out to compare their capacity and effectiveness. Then a series of cases with different horizontal borehole designs were simulated to optimise borehole configuration parameters such as location, diameter, and number of boreholes. The study shows that the horizontal borehole is able to create low pressure sinks that protect the workings from goaf gas ingresses by changing goaf gas flow directions, and that it has the advantage to continuously maintain such low pressure sinks near the tailgate as the longwall advances. An example of optimising horizontal borehole locations in the longwall lateral direction is also given in this paper.Qin Johnny Qu Qingdong Guo Hua 2017International Journal of Mining Science and Technology2017,27,5:0
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