To investigate a new type of steam pulsed acoustic dust cleaning device
the geometrical model of the three-dimensional flow path is established
and the domain is meshed according to the complexity of the geometric model. The flow characteristics of the fluid in the device with different opening degrees and the effects of opening and velocity on the pressure drop of the flow channel are investigated via the numerical simulation of the flow path in the cleaning device by Fluent software. The results show that the pressure drop in the runner is mainly used to overcome the pressure loss caused by throttling. As the opening increases from 20% to 100%
the most severe pressure distribution in the slit area is gradually moved from the junction of upper and lower slit to the junction of the annular cavity and the upper slit; the flow in the annular cavity changes from symmetrical at both sides and having two narrow vortices
to the counterclockwise flow in most region and a small part clockwise
and only one smaller scale of vortex exists. As the slit opening increases
the total pressure drop in the flow field decreases
and the greater opening
the smaller change in total pressure drop. The inlet flow velocity exerts less influence on the total pressure drop of the flow field. For a smaller pressure drop and a better flow stability
it is suggested that the device ought to operate at medium and large opening to reduce energy loss.
YANG Ningwu. Application of rotary flute sonic soot blowers in ash deposition of boiler furnace arch [J]. Energy and Energy Conservation, 2012(12): 107-109.
刘佳. 声波清灰技术声场数值分析与仿真研究[D]. 沈阳: 东北大学, 2014: 1-8.
MIREK P. Field testing of acoustic cleaning system working in G670 MWTH CFB boiler [J]. Chemical and Process Engineering, 2016, 34(2): 283-291.
NOR S M Y, BANDAR B, YOUSEF A, et al. Physical and chemical effects of acoustic cavitation in selected ultrasonic cleaning applications [J]. Ultrasonics Sonochemistry, 2016, 29(1): 568-576.
AN Liansuo, LIU Mingyuan, WU Guohong. Study on numerical simulation of sound field on tubes array for sonic soot cleaning [J]. Thermal Power Generation, 2009, 38(10): 25-28.
CHEN Yiping, YU Pengfeng, ZHOU Zimin, et al. Study on ash fouling of boiler furnace arch and its countermeasures in coal fired power plant [J]. Electric Power, 2011, 44(2): 46-48.
滕百慧. 简述声波清灰的原理及发展前景 [J]. 科技创新与应用, 2016(13): 68.
TENG Baihui. The principle and development prospect of acoustic cleaning [J]. Technology Innovation and Application, 2016(13): 68.
ZENG Rong, YU Changkai, FENG Jiyong. Retrofit of acoustic ash-cleaning in 600 MW unit power plant's economizers [J]. Power System Engineering, 2010, 26(2): 39-40.
YU Jingmei, MENG Fandan, LIU Panpan et al. Analysis on off-design flow field in high-pressure combined valve of a 600 MW steam turbine [J]. Journal of Chinese Society of Power Engineering, 2014, 34(11): 862-866.
ZENG Lifei, LIU Guanwei, MAO Jingru et al. Numerical simulation for the effect of the control valve vibration on the flow field [J]. Proceeding of the CSEE, 2015, 35(8): 1977-1982.
Numerical Simulation of the Flow Characteristics of a Flue Gas Damper
Study of the Mechanism of Electrostatic Accumulation and Current Density Distribution Characteristics During Liquid Hydrogen Pipeline Transportation
Numerical Simulation of Space Charge Distribution Characteristics of Polyimide Materials under X-Ray Irradiation
Numerical Simulation Study on Geothermal Extraction Characteristics of Supercritical CO2 in Heterogeneous Fractures
Action Mechanism of Heat Transfer between the Working Medium and the Impeller on Aerodynamic Performance and Flow Characteristics of Radial Inflow Turbines with Supercritical Carbon Dioxide
Related Author
樊桦
吴东垠
SUN Wenhao
LIU Hongbao
WANG Lei
QING Ziyou
LI Zhuolun
MA Yuan
Related Institution
School of Energy and Power Engineering, Xi’an Jiaotong University
School of Energy and Power Engineering,Xi’an Jiaotong University
Aerospace System Engineering Shanghai
School of Electrical Engineering,Xi’an Jiaotong University