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Effect of Front Baffle Inclination Angle and Pressure Drop on Absorption Performance of a Pickup Mouth 被引量:2

Effect of Front Baffle Inclination Angle and Pressure Drop on Absorption Performance of a Pickup Mouth
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摘要 In order to improve the dust absorption performance of the reverse blowing pickup mouth, the gas-solid flow motion properties inside the reverse blowing pickup mouth were simulated by using computational fluid dynamics( CFD) software,Fluent.The results show that both the front baffle inclination angle and the pressure drop across the pickup mouth have significant impacts on dust absorption performance. As the inclination angle is increased,there is an increase in the overall and grade removal efficiency. As the front baffle inclination angle or pressure drop is increased,there is an increase in the overall and grade removal efficiencies.However,pressure drop affects energy consumption. Front baffle inclination angle and pressure drop are optimized. Optimal inclination angle and pressure drop are 105° and 2 300 Pa respectively. Sample machine is made and measured,which further verifies the appropriateness of numerical simulation and practicability of optimum strategy. In order to improve the dust absorption performance of the reverse blowing pickup mouth, the gas-solid flow motion properties inside the reverse blowing pickup mouth were simulated by using computational fluid dynamics( CFD) software,Fluent.The results show that both the front baffle inclination angle and the pressure drop across the pickup mouth have significant impacts on dust absorption performance. As the inclination angle is increased,there is an increase in the overall and grade removal efficiency. As the front baffle inclination angle or pressure drop is increased,there is an increase in the overall and grade removal efficiencies.However,pressure drop affects energy consumption. Front baffle inclination angle and pressure drop are optimized. Optimal inclination angle and pressure drop are 105° and 2 300 Pa respectively. Sample machine is made and measured,which further verifies the appropriateness of numerical simulation and practicability of optimum strategy.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2016年第1期8-12,共5页 东华大学学报(英文版)
基金 National Natural Science Foundation of China(No.51375202)
关键词 reverse blowing pickup mouth optimization design dust absorption performance computational fluid dynamics(CFD) sample machine reverse blowing pickup mouth optimization design dust absorption performance computational fluid dynamics(CFD) sample machine
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