Research on Structural Design of Coal Crusher House in Thermal Power Plant

Authors

  • Junhu Wang Powerchina Guizhou Electric Power Engineering Co.,Ltd., Guiyang, 550000, China

DOI:

https://doi.org/10.30564/jaeser.v3i2.2103

Abstract

This paper takes the specific characteristics of pulverized coal room in thermal power plant as the starting pointfirstly, this paper analyzes the process layout and structure selection, and then the structural design and vibration design requirements of coal crusher house are introduced in this paper. Finally, based on the engineering example, a new structure form of vibration isolation design is creatively proposed, which provides a new design idea for the practical engineering design

Keywords:

Coal-fired power plant ,Coal crusher house,Vibration calculation,Vibration isolation design

References

[1] V. Solovyova, D. Solovyov,I. Stepanova. Concretes with Unique Properties for Special Building Structures[J]. Materials science forum, 2019, 945: 64-69.

[2] Zhiqin Liu, Guoliang Bai. Study on Seismic Performance of Unit Thermal Power Main Plant Steel-Concrete Structure for 1000 MW in High Intensive Seismic Region[J]. Research journal of applied science,engineering and technology, 2014, 7(1): 23-29.

[3] Jin Cheng, Yixiong Feng,, Zhicliang Lin, Zhenyu Liu, Jianrong Tan. Anti-vibration optimization of the key components in a turbo-generator based on heterogeneous axiomatic design[J]. Journal of Cleaner Production, 2017, 141(JAN.10): 1467-1477.

[4] Engle, Travis J.. A floor slab damper and isolation hybrid system optimized for seismic vibration control[D]. Colorado State University, 2014.

[5] Engle, Travis, Mahmoud, Hussam, Chulahwat, Akshat.Hybrid Tuned Mass Damper and Isolation Floor Slab System Optimized for Vibration Control[J]. Journal of Earthquake Engineering, 2015, 19(7-8): 1197-1221.

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How to Cite

Wang, J. (2020). Research on Structural Design of Coal Crusher House in Thermal Power Plant. Journal of Architectural Environment & Structural Engineering Research, 3(2), 14–17. https://doi.org/10.30564/jaeser.v3i2.2103

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Article Type

Article