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新型固定式消防水炮结构设计及其水射流性能研究(英文) 被引量:3
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作者 胡国良 龙铭 陈伟刚 《机床与液压》 北大核心 2013年第12期15-22,61,共9页
为了改善消防水炮的水射流性能,提高其消防灭火效率,设计了一种新型固定式消防水炮,并对其流道能量损失及炮头水流出口速度进行了水力学理论计算。采用Fluent流场仿真软件对炮身内部流体流态进行了仿真分析,得到较好的炮身形状及结构;... 为了改善消防水炮的水射流性能,提高其消防灭火效率,设计了一种新型固定式消防水炮,并对其流道能量损失及炮头水流出口速度进行了水力学理论计算。采用Fluent流场仿真软件对炮身内部流体流态进行了仿真分析,得到较好的炮身形状及结构;对消防水炮炮头喷嘴射流性能进行了仿真分析,比较了直流射流和喷雾射流这两种射流方式的效果;最后进行了初步的现场射流实验。仿真结果和实验测试表明:所设计的新型固定式消防水炮能满足实际消防作战使用要求,相关结论可为其它规格和类型的消防水炮设计提供参考依据。 展开更多
关键词 消防水炮 喷嘴 结构设计 水射流性能 流场仿真
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Impingement capability of high-pressure submerged water jet: Numerical prediction and experimental verification 被引量:3
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作者 刘海霞 邵启明 +1 位作者 康灿 龚辰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3712-3721,共10页
At jet pressures ranging from 80 to 120 MPa, submerged water jets are investigated by numerical simulation and experiment. Numerical simulation enables a systematic analysis of major flow parameters such as jet veloci... At jet pressures ranging from 80 to 120 MPa, submerged water jets are investigated by numerical simulation and experiment. Numerical simulation enables a systematic analysis of major flow parameters such as jet velocity, turbulent kinetic energy as well as void fraction of cavitation. Experiments facilitate an objective assessment of surface morphology, micro hardness and surface roughness of the impinged samples. A comparison is implemented between submerged and non-submerged water jets. The results show that submerged water jet is characterized by low velocity magnitudes relative to non-submerged water jet at the same jet pressure. Shear effect serves as a key factor underlying the inception of cavitation in submerged water jet stream. Predicted annular shape of cavity zone is substantiated by local height distributions associated with experimentally obtained footprints. As jet pressure increases, joint contribution of jet kinetic energy and cavitation is demonstrated. While for non-submerged water jet, impingement force stems exclusively from flow velocity. 展开更多
关键词 submerged water jet CAVITATION shear effect impingement test micro hardness surface morphology
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Performance of recycling abrasives in rock cutting by abrasive water jet 被引量:2
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作者 Gokhan Aydin 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1055-1061,共7页
Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and t... Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and the rock particles. The recycling abrasive particles were then dried and sieved for determination of their disintegration behaviors. Before each cutting with recycling abrasives, the abrasive particles less than 106 ?m were screened out. It is revealed that a considerable amount of used abrasives can be effectively reused in the rock cutting. The reusabilities of abrasives are determined as 81.77%, 57.50%, 34.37% and 17.72% after the first, second, third and fourth cuttings, respectively. Additionally, it is determined that recycling must be restricted three times due to the excessive disintegration of abrasives with further recycling. Moreover, it is concluded that cutting depth, kerf width and surface roughness decreases with recycling. No clear trend is found between the kerf taper angle and recycling. Particle size distribution is determined as an important parameter for improving the cutting performance of recycling abrasives. 展开更多
关键词 abrasive water jet rock abrasive recycling
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