The centrifugal compressor has been widely used in low power gas turbine, supercharger and industrial turbine compressors. Due to its outstanding advantages of simple process, compact structure and wide working range, it is more advantageous in some aspects such as small flow range than counterparts. However, the design of important components of centrifugal compressor requires lots of design experience and consideration. Because of the deepening research of the industrial centrifugal compressor, some excellent design optimization methods and experiences are obtained from researchers. In order to enable designers to get the preliminary design parameters and to develop a compressor with better performance better and faster, this paper addresses the main design optimization methods and design experiences of the components of the industrial centrifugal compressor. The detailed design considerations and design process for centrifugal compressor can reduce the design cycle time without scarifying performance for the new design. The purpose of this paper is to provide some design considerations and experiences of the centrifugal compressor for researchers. According to the centrifugal compressor design optimization process, purposed considerations in this paper are useful for compressor preliminary parameters selections. The optimizations and design considerations in this paper provide a detailed reference document for future centrifugal compressor developments.
Published in |
International Journal of Fluid Mechanics & Thermal Sciences (Volume 6, Issue 2)
This article belongs to the Special Issue Fluid Mechanics & Thermal Sciences in Turbomachines |
DOI | 10.11648/j.ijfmts.20200602.13 |
Page(s) | 61-69 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
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Copyright © The Author(s), 2020. Published by Science Publishing Group |
Centrifugal Compressor, Design Optimization Methods, Design Considerations and Experiences
[1] | Xu, Cheng, et al. "The Development of an Integrally Geared Centrifugal Compressor." International Journal of Fluid Mechanics & Thermal Sciences 5.1 (2019): 1. |
[2] | Bonaiuti, Duccio, et al. "Analysis and optimization of transonic centrifugal compressor impellers using the design of experiments technique." J. Turbomach. 128.4 (2006): 786-797. |
[3] | Kim, S., J. Park, and J. Baek. "A numerical study of the effects of blade angle distribution on the performance and loss generation of centrifugal compressor impellers." Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 226.2 (2012): 208-217. |
[4] | Chen Jie, "Research on Transonic Mciro Compressor Design Method.". Diss. Nanjing University of Aeronautics and Astronautics, 2010. (in Chinese). |
[5] | Wang Jianhua. "Design of flow path of blade wheel based on b-spline curve. " Journal of Yangtze University (Nat Sci Edit). 04: 10-11+113-116. (in Chinese). |
[6] | Wang Jianhua. "Design of flow path based on rational Bezier curve of centrifugal pump blade." Coal Mine Mechinery. 10 (2010): 29-31. (in Chinese). |
[7] | Xu, C., and R. S. Amano. "Meridional considerations of the centrifugal compressor development." International Journal of Rotating Machinery 2012 (2012). |
[8] | Oana, Mineyasu, et al. "Approach to high performance transonic centrifugal compressor." 38th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit. 2002. |
[9] | Goel, Tushar, et al. "Improving the hydrodynamic performance of diffuser vanes via shape optimization." Computers & fluids 37.6 (2008): 705-723. |
[10] | Gunadal, S. M., and M. Govardhan. "Improvement in stable operating range of a centrifugal compressor with leaned diffuser vanes." Journal of Mechanical Science and Technology 33.11 (2019): 5261-5269. |
[11] | Xie Rong, et al. "Study on the Performance of Staggered Cascade Diffuser in Centrifugal Compressor." Gas Turbine Technology. 23.2 (2010): 48-52. (in Chinese). |
[12] | Galerkin, Yu B., A. F. Rekstin, and O. A. Solovyeva. "Vaneless diffuser of the centrifugal compressor stage design method." AIP Conference Proceedings. Vol. 2141. No. 1. AIP Publishing LLC, 2019. |
[13] | Dou Huashu. "Design Principle of Radial Vaneless Diffuser with Non-Parallel Wall." Fluid Mechinery. 3 (1990): 15-19. (in chinese) |
[14] | Wu Huanbo, et al. "Study on the Performance of Non-Parallel Wall Vaneless Diffuser." Chinese Journal of Applied Mechanics. 02 (1988): 67-76+132-133. (in Chinese). |
[15] | Jaatinenvarri, Ahti, et al. "Investigation of the Stage Performance and Flow Fields in a Centrifugal Compressor with a Vaneless Diffuser." International Journal of Rotating Machinery (2014): 1-10. |
[16] | Dong Surong, et al. " Influence of Structural Parameters of Volute on Performance of Centrifugal Compressor " Automotive Engineering. 00.010 (2015): 41-43. (in Chinese). |
[17] | Xu, Cheng, and Michael Muller. "Development and Design of a Centrifugal Compressor Volute." International Journal of Rotating Machinery 2005. 3 (2005): 190-196. |
[18] | Xu, C. and R. S. Amano. "Eliminating Static Pressure Distortion by a Large Cut Back Tongue Volute." ASME Turbo Expo 2006: Power for Land, Sea, and Air 2006. |
[19] | Liu Yangwei. "Numerical investigation of impeller-diffuser interaction in a centrifugal compressor." Journal of Aerospace Power. 024.012 (2009): 2695-2702. (in Chinese). |
[20] | Anish, S., and N. Sitaram. "Computational study of radial gap effect between impeller and diffuser on the unsteadiness of vaned diffuser in a centrifugal compressor." Journal of Mechanical Science and Technology 31.11 (2017): 5291-5298. |
[21] | BONCINELLI., et al. "Impeller-diffuser interaction in centrifugal compressors: Numerical analysis of radiver test case." Journal of Propulsion & Power 23.6 (2012): 1304-1312. |
[22] | Steglich, T., et al. "Improved Diffuser/Volute Combinations for centrifugal Compressors." Journal of Turbomachinery 130.1 (2008). |
APA Style
Dingkun Liang, Hanqian Yang, Cheng Xu, Yandan Jiang, Zhongwei Yi. (2020). The Recent Progresses in Industrial Centrifugal Compressor Designs. International Journal of Fluid Mechanics & Thermal Sciences, 6(2), 61-69. https://doi.org/10.11648/j.ijfmts.20200602.13
ACS Style
Dingkun Liang; Hanqian Yang; Cheng Xu; Yandan Jiang; Zhongwei Yi. The Recent Progresses in Industrial Centrifugal Compressor Designs. Int. J. Fluid Mech. Therm. Sci. 2020, 6(2), 61-69. doi: 10.11648/j.ijfmts.20200602.13
AMA Style
Dingkun Liang, Hanqian Yang, Cheng Xu, Yandan Jiang, Zhongwei Yi. The Recent Progresses in Industrial Centrifugal Compressor Designs. Int J Fluid Mech Therm Sci. 2020;6(2):61-69. doi: 10.11648/j.ijfmts.20200602.13
@article{10.11648/j.ijfmts.20200602.13, author = {Dingkun Liang and Hanqian Yang and Cheng Xu and Yandan Jiang and Zhongwei Yi}, title = {The Recent Progresses in Industrial Centrifugal Compressor Designs}, journal = {International Journal of Fluid Mechanics & Thermal Sciences}, volume = {6}, number = {2}, pages = {61-69}, doi = {10.11648/j.ijfmts.20200602.13}, url = {https://doi.org/10.11648/j.ijfmts.20200602.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijfmts.20200602.13}, abstract = {The centrifugal compressor has been widely used in low power gas turbine, supercharger and industrial turbine compressors. Due to its outstanding advantages of simple process, compact structure and wide working range, it is more advantageous in some aspects such as small flow range than counterparts. However, the design of important components of centrifugal compressor requires lots of design experience and consideration. Because of the deepening research of the industrial centrifugal compressor, some excellent design optimization methods and experiences are obtained from researchers. In order to enable designers to get the preliminary design parameters and to develop a compressor with better performance better and faster, this paper addresses the main design optimization methods and design experiences of the components of the industrial centrifugal compressor. The detailed design considerations and design process for centrifugal compressor can reduce the design cycle time without scarifying performance for the new design. The purpose of this paper is to provide some design considerations and experiences of the centrifugal compressor for researchers. According to the centrifugal compressor design optimization process, purposed considerations in this paper are useful for compressor preliminary parameters selections. The optimizations and design considerations in this paper provide a detailed reference document for future centrifugal compressor developments.}, year = {2020} }
TY - JOUR T1 - The Recent Progresses in Industrial Centrifugal Compressor Designs AU - Dingkun Liang AU - Hanqian Yang AU - Cheng Xu AU - Yandan Jiang AU - Zhongwei Yi Y1 - 2020/06/28 PY - 2020 N1 - https://doi.org/10.11648/j.ijfmts.20200602.13 DO - 10.11648/j.ijfmts.20200602.13 T2 - International Journal of Fluid Mechanics & Thermal Sciences JF - International Journal of Fluid Mechanics & Thermal Sciences JO - International Journal of Fluid Mechanics & Thermal Sciences SP - 61 EP - 69 PB - Science Publishing Group SN - 2469-8113 UR - https://doi.org/10.11648/j.ijfmts.20200602.13 AB - The centrifugal compressor has been widely used in low power gas turbine, supercharger and industrial turbine compressors. Due to its outstanding advantages of simple process, compact structure and wide working range, it is more advantageous in some aspects such as small flow range than counterparts. However, the design of important components of centrifugal compressor requires lots of design experience and consideration. Because of the deepening research of the industrial centrifugal compressor, some excellent design optimization methods and experiences are obtained from researchers. In order to enable designers to get the preliminary design parameters and to develop a compressor with better performance better and faster, this paper addresses the main design optimization methods and design experiences of the components of the industrial centrifugal compressor. The detailed design considerations and design process for centrifugal compressor can reduce the design cycle time without scarifying performance for the new design. The purpose of this paper is to provide some design considerations and experiences of the centrifugal compressor for researchers. According to the centrifugal compressor design optimization process, purposed considerations in this paper are useful for compressor preliminary parameters selections. The optimizations and design considerations in this paper provide a detailed reference document for future centrifugal compressor developments. VL - 6 IS - 2 ER -