Particles Separation of Hydrocyclone Based on CFD Simulation

2014 ◽  
Vol 535 ◽  
pp. 495-499
Author(s):  
Jing Song ◽  
Wei He ◽  
Zhe Kun Li ◽  
Wen Li Shi

Analyzed the research status of hydrocyclone separation. By using CFD software, the important parameters of velocity and pressure in the hydrocyclone are analyzed and contrasted. Through simulation, it can accurately reflect the internal flow field, and can be used to predict the hydrocyclone separation performance. The results of flow field simulation will help to finish structure design of hydrocyclone and to provide the basis for the optimization design of hydrocyclone.

Author(s):  
Konghua Yang ◽  
Chunbao Liu ◽  
Qingtao Wu ◽  
Xuesong Li

It is important to suppress cavitation phenomenon for lower vibration and noise, which can be realized by structure optimization to reduce cavitation bubbles of flow field. Nonetheless, performance factors in hydrodynamic retarder are usually conflicted when conducting a structure design, it is hard to simultaneously restrain cavitation and improve the retarding performance. In our study, a combination of comprehensive CFD simulation and multi-objective optimization is developed to improve the retarding torque ([Formula: see text]), lessen the volume of Retarder ([Formula: see text]) and reduce the volume of bubbles ([Formula: see text]) in the internal flow field. First, the elaborate CFD simulation calculation, included a refined hexahedral mesh and the stress-blended eddy simulation (SBES), is proposed to investigate the unsteady flow field considering the cavitation, and its accuracy is validated by experimental data. Then, the RSM (Respond Surface Method) approximation model is constructed by combination of DOE (Design of Method) and CFD methods. The NSGA-II (Non-Dominated Sorting Genetic Algorithm) is selected as multi-objective optimization algorithm, and the weight and scale factor of each sub objective are specified. The optimization results, verified by theoretical calculation, show that [Formula: see text] is increased by 22%–24%, [Formula: see text] is reduced by 32%–45% and [Formula: see text] is reduced by 1%. Furthermore, the comparison of the vortex distributions before and after optimization demonstrates that the optimization improves the flow field impact and pressure loss in the retarder and reduces the number of bubbles resulting in the increasing vortex. Additionally, parameters’ effect on the cavitation and the braking performance are analyzed to efficiently achieve the best comprehensive performance of the retarder design. The newly-developed optimization method, which can understand the optimization principle and guide a balance between the cavitation and the retarding performance improvement, will reduce huge trial cost and time cost in the manufacture.


2014 ◽  
Vol 509 ◽  
pp. 129-134 ◽  
Author(s):  
Zhi Lin Liu

In this paper, the study on 3D modeling and flow field simulation of Urea-SCR system which installed on the tested diesel engine. After the research of Urea-SCR reaction theory and the time scale of each physical and chemical reaction process, the numerical model of SCR system was established. Through the analysis of the factors such as velocity, temperature and pressure of flow field at characteristic operating points, verifying the reliability of the model, which has important guiding significance to the structure design of Urea-SCR system.


Applied laser ◽  
2013 ◽  
Vol 33 (6) ◽  
pp. 639-645
Author(s):  
伊鹏 Yi Peng ◽  
杨光辉 Yang Guanghui ◽  
范常峰 Fan Changfeng ◽  
谢江浩 Xie Jianghao

Applied laser ◽  
2013 ◽  
Vol 33 (6) ◽  
pp. 639-645
Author(s):  
伊鹏 Yi Peng ◽  
杨光辉 Yang Guanghui ◽  
范常峰 Fan Changfeng ◽  
谢江浩 Xie Jianghao

2013 ◽  
Vol 397-400 ◽  
pp. 189-192
Author(s):  
Xiao Rong Wang ◽  
Wei Hua Li, ◽  
Bao Jun Pan ◽  
Shi Jie Su ◽  
Chao Gao ◽  
...  

The energy saving is the important principle of the future development of our country, reasonable and efficient use of resources in the industrial production has become increasingly concerned topic. This paper studies the industrial dryers in the washing system, through the analysis of flow field simulation, points out the existing dryers in the working process of the structure is unreasonable, inadequate energy utilization, etc. Based on flow field simulation, the internal structure optimization design of the dryer, the optimized flow field structure is more reasonable, dryer air in the dryer average velocity increased, thus improve the drying efficiency and energy saving.


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