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锻工炉分管导流二次风新工艺的应用
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作者 于浩 《铁道劳动安全卫生与环保》 1990年第2期23-24,共2页
一、设计原理及参数 1.设计原理采用砖砌炉膛结构的中小型锻工炉,一般应用底次一次风燃烧工艺。因燃烧状态不良,导致冒黑烟且排烟中含尘量高。对这类锻工炉,如果配置消烟除尘装置,往往会选用设备大、投资费用多,处理效果较难保证。分管... 一、设计原理及参数 1.设计原理采用砖砌炉膛结构的中小型锻工炉,一般应用底次一次风燃烧工艺。因燃烧状态不良,导致冒黑烟且排烟中含尘量高。对这类锻工炉,如果配置消烟除尘装置,往往会选用设备大、投资费用多,处理效果较难保证。分管导流二次风新工艺的原理。 展开更多
关键词 锻工炉 分管导流 二次风 工艺
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Flow-induced Noise and Vibration Analysis of a Piping Elbow with/without a Guide Vane 被引量:4
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作者 Tao Zhang Yong'ou Zhang +1 位作者 Huajiang Ouyang Tao Guo 《Journal of Marine Science and Application》 2014年第4期394-401,共8页
The effect of a guide vane installed at the elbow on flow-induced noise and vibration is investigated in the range of Reynolds numbers from 1.70×10^5 to 6.81×10^5, and the position of guide vane is determine... The effect of a guide vane installed at the elbow on flow-induced noise and vibration is investigated in the range of Reynolds numbers from 1.70×10^5 to 6.81×10^5, and the position of guide vane is determined by publications. The turbulent flow in the piping elbow is simulated with large eddy simulation (LES). Following this, a hybrid method of combining LES and Lighthill's acoustic analogy theory is used to simulate the hydrodynamic noise and sound sources are solved as volume sources in code Actran. In addition, the flow-induced vibration of the piping elbow is investigated based on a fluid-structure interaction (FSI) code. The LES results indicate that the range of vortex zone in the elbow without the guide vane is larger than the case with the guide vane, and the guide vane is effective in reducing flow-induced noise and vibration in the 90° piping elbow at different Reynolds numbers. 展开更多
关键词 flow-induced noise flow-induced vibration piping elbow guide vane large eddy simulation fluid structure interaction Actran
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Effects of Tangential Velocity Distribution on Flow Stability in a Draft Tube 被引量:2
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作者 DOU Huashu NIU Lin CAO Shuliang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第5期446-453,共8页
Numerical simulations of the flow in the draft tube of a Francis turbine are carried out in order to elucidate the effects of tangential velocity on flow stability.Influence of the location of the maximum tangential v... Numerical simulations of the flow in the draft tube of a Francis turbine are carried out in order to elucidate the effects of tangential velocity on flow stability.Influence of the location of the maximum tangential velocity is explored considering the equality of the total energy at the inlet of the draft tube.It is found that the amplitude of the pressure fluctuation decreases when the location of the maximum of the tangential velocity moves from the centre to the wall on the cross section.Thus,the stability of the flow in the draft tube increases with the moving of the location of the maximum tangential velocity.However,the relative hydraulic loss increases and the recovery coefficient of the draft tube decreases slightly. 展开更多
关键词 draft tube vortex characteristics numerical prediction velocity distribution
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